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Published in: The International Journal of Cardiovascular Imaging 1/2012

Open Access 01-01-2012 | Review

MR fluoroscopy in vascular and cardiac interventions (review)

Authors: Maythem Saeed, Steve W. Hetts, Joey English, Mark Wilson

Published in: The International Journal of Cardiovascular Imaging | Issue 1/2012

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Abstract

Vascular and cardiac disease remains a leading cause of morbidity and mortality in developed and emerging countries. Vascular and cardiac interventions require extensive fluoroscopic guidance to navigate endovascular catheters. X-ray fluoroscopy is considered the current modality for real time imaging. It provides excellent spatial and temporal resolution, but is limited by exposure of patients and staff to ionizing radiation, poor soft tissue characterization and lack of quantitative physiologic information. MR fluoroscopy has been introduced with substantial progress during the last decade. Clinical and experimental studies performed under MR fluoroscopy have indicated the suitability of this modality for: delivery of ASD closure, aortic valves, and endovascular stents (aortic, carotid, iliac, renal arteries, inferior vena cava). It aids in performing ablation, creation of hepatic shunts and local delivery of therapies. Development of more MR compatible equipment and devices will widen the applications of MR-guided procedures. At post-intervention, MR imaging aids in assessing the efficacy of therapies, success of interventions. It also provides information on vascular flow and cardiac morphology, function, perfusion and viability. MR fluoroscopy has the potential to form the basis for minimally invasive image–guided surgeries that offer improved patient management and cost effectiveness.
Literature
1.
go back to reference Saybasili H, Faranesh AZ, Saikus CE, Ozturk C, Lederman RJ, Guttman MA (2010) Interventional MRI using multiple 3D angiography roadmaps with real-time imaging. J Magn Reson Imaging 31(4):1015–1019PubMedCrossRef Saybasili H, Faranesh AZ, Saikus CE, Ozturk C, Lederman RJ, Guttman MA (2010) Interventional MRI using multiple 3D angiography roadmaps with real-time imaging. J Magn Reson Imaging 31(4):1015–1019PubMedCrossRef
2.
go back to reference de Silva R, Gutierrez LF, Raval AN, McVeigh ER, Ozturk C, Lederman RJ (2006) X-ray fused with magnetic resonance imaging (XFM) to target endomyocardial injections: validation in a swine model of myocardial infarction. Circulation 114(22):2342–2350PubMedCrossRef de Silva R, Gutierrez LF, Raval AN, McVeigh ER, Ozturk C, Lederman RJ (2006) X-ray fused with magnetic resonance imaging (XFM) to target endomyocardial injections: validation in a swine model of myocardial infarction. Circulation 114(22):2342–2350PubMedCrossRef
3.
go back to reference Adam G, Bucker A, Nolte-Ernsting C, Tacke J, Gunther RW (1999) Interventional MR imaging: percutaneous abdominal and skeletal biopsies and drainages of the abdomen. Eur Radiol 9(8):1471–1478PubMedCrossRef Adam G, Bucker A, Nolte-Ernsting C, Tacke J, Gunther RW (1999) Interventional MR imaging: percutaneous abdominal and skeletal biopsies and drainages of the abdomen. Eur Radiol 9(8):1471–1478PubMedCrossRef
4.
go back to reference Hall WA, Martin AJ, Liu H, Nussbaum ES, Maxwell RE, Truwit CL (1999) Brain biopsy using high-field strength interventional magnetic resonance imaging. Neurosurgery 44(4):807–813 (discussion 813–804) Hall WA, Martin AJ, Liu H, Nussbaum ES, Maxwell RE, Truwit CL (1999) Brain biopsy using high-field strength interventional magnetic resonance imaging. Neurosurgery 44(4):807–813 (discussion 813–804)
5.
go back to reference Heywang-Kobrunner SH, Heinig A, Pickuth D, Alberich T, Spielmann RP (2000) Interventional MRI of the breast: lesion localisation and biopsy. Eur Radiol 10(1):36–45PubMedCrossRef Heywang-Kobrunner SH, Heinig A, Pickuth D, Alberich T, Spielmann RP (2000) Interventional MRI of the breast: lesion localisation and biopsy. Eur Radiol 10(1):36–45PubMedCrossRef
6.
go back to reference Mueller PR, Stark DD, Simeone JF, Saini S, Butch RJ, Edelman RR, Wittenberg J, Ferrucci JT Jr (1986) MR-guided aspiration biopsy: needle design and clinical trials. Radiology 161(3):605–609PubMed Mueller PR, Stark DD, Simeone JF, Saini S, Butch RJ, Edelman RR, Wittenberg J, Ferrucci JT Jr (1986) MR-guided aspiration biopsy: needle design and clinical trials. Radiology 161(3):605–609PubMed
7.
go back to reference Steiner P, Erhart P, Heske N, Dumoulin CL, von Schulthess GK, Debatin JF (1997) Active biplanar MR tracking for biopsies in humans. AJR Am J Roentgenol 169(3):735–738PubMed Steiner P, Erhart P, Heske N, Dumoulin CL, von Schulthess GK, Debatin JF (1997) Active biplanar MR tracking for biopsies in humans. AJR Am J Roentgenol 169(3):735–738PubMed
8.
go back to reference D’Amico A, Cormack R, Kumar S, Tempany CM (2000) Real-time magnetic resonance imaging-guided brachytherapy in the treatment of selected patients with clinically localized prostate cancer. J Endourol 14(4):367–370PubMedCrossRef D’Amico A, Cormack R, Kumar S, Tempany CM (2000) Real-time magnetic resonance imaging-guided brachytherapy in the treatment of selected patients with clinically localized prostate cancer. J Endourol 14(4):367–370PubMedCrossRef
9.
go back to reference Popowski Y, Hiltbrand E, Joliat D, Rouzaud M (2000) Open magnetic resonance imaging using titanium-zirconium needles: improved accuracy for interstitial brachytherapy implants? Int J Radiat Oncol Biol Phys 47(3):759–765PubMedCrossRef Popowski Y, Hiltbrand E, Joliat D, Rouzaud M (2000) Open magnetic resonance imaging using titanium-zirconium needles: improved accuracy for interstitial brachytherapy implants? Int J Radiat Oncol Biol Phys 47(3):759–765PubMedCrossRef
10.
go back to reference Cline HE, Hynynen K, Hardy CJ, Watkins RD, Schenck JF, Jolesz FA (1994) MR temperature mapping of focused ultrasound surgery. Magn Reson Med 31(6):628–636PubMedCrossRef Cline HE, Hynynen K, Hardy CJ, Watkins RD, Schenck JF, Jolesz FA (1994) MR temperature mapping of focused ultrasound surgery. Magn Reson Med 31(6):628–636PubMedCrossRef
11.
go back to reference Cline HE, Hynynen K, Watkins RD, Adams WJ, Schenck JF, Ettinger RH, Freund WR, Vetro JP, Jolesz FA (1995) Focused US system for MR imaging-guided tumor ablation. Radiology 194(3):731–737PubMed Cline HE, Hynynen K, Watkins RD, Adams WJ, Schenck JF, Ettinger RH, Freund WR, Vetro JP, Jolesz FA (1995) Focused US system for MR imaging-guided tumor ablation. Radiology 194(3):731–737PubMed
12.
go back to reference Hynynen K, Freund WR, Cline HE, Chung AH, Watkins RD, Vetro JP, Jolesz FA (1996) A clinical, noninvasive, MR imaging-monitored ultrasound surgery method. Radiographics 16(1):185–195PubMed Hynynen K, Freund WR, Cline HE, Chung AH, Watkins RD, Vetro JP, Jolesz FA (1996) A clinical, noninvasive, MR imaging-monitored ultrasound surgery method. Radiographics 16(1):185–195PubMed
13.
go back to reference Schenck JF (1996) The role of magnetic susceptibility in magnetic resonance imaging: MRI magnetic compatibility of the first and second kinds. Med Phys 23(6):815–850PubMedCrossRef Schenck JF (1996) The role of magnetic susceptibility in magnetic resonance imaging: MRI magnetic compatibility of the first and second kinds. Med Phys 23(6):815–850PubMedCrossRef
14.
go back to reference Chung YC, Duerk JL, Shankaranarayanan A, Hampke M, Merkle EM, Lewin JS (1999) Temperature measurement using echo-shifted FLASH at low field for interventional MRI. J Magn Reson Imaging 9(1):138–145PubMedCrossRef Chung YC, Duerk JL, Shankaranarayanan A, Hampke M, Merkle EM, Lewin JS (1999) Temperature measurement using echo-shifted FLASH at low field for interventional MRI. J Magn Reson Imaging 9(1):138–145PubMedCrossRef
15.
go back to reference Heisterkamp J, Matheijssen NA, van Hillegersberg R, van Vaals JJ, Lameris JS, Stoker J, Jzermans JN (1999) Accuracy of MR phase mapping for temperature monitoring during interstitial laser coagulation (ILC) in the liver at rest and simulated respiration. Magn Reson Med 41(5):919–925PubMedCrossRef Heisterkamp J, Matheijssen NA, van Hillegersberg R, van Vaals JJ, Lameris JS, Stoker J, Jzermans JN (1999) Accuracy of MR phase mapping for temperature monitoring during interstitial laser coagulation (ILC) in the liver at rest and simulated respiration. Magn Reson Med 41(5):919–925PubMedCrossRef
16.
go back to reference Kuroda K, Mulkern RV, Oshio K, Panych LP, Nakai T, Moriya T, Okuda S, Hynynen K, Jolesz FA (2000) Temperature mapping using the water proton chemical shift: self-referenced method with echo-planar spectroscopic imaging. Magn Reson Med 43(2):220–225PubMedCrossRef Kuroda K, Mulkern RV, Oshio K, Panych LP, Nakai T, Moriya T, Okuda S, Hynynen K, Jolesz FA (2000) Temperature mapping using the water proton chemical shift: self-referenced method with echo-planar spectroscopic imaging. Magn Reson Med 43(2):220–225PubMedCrossRef
17.
go back to reference Patel KC, Duerk JL, Zhang Q, Chung YC, Williams M, Kaczynski K, Wendt M, Lewin JS (1998) Methods for providing probe position and temperature information on MR images during interventional procedures. IEEE Trans Med Imaging 17(5):794–802PubMedCrossRef Patel KC, Duerk JL, Zhang Q, Chung YC, Williams M, Kaczynski K, Wendt M, Lewin JS (1998) Methods for providing probe position and temperature information on MR images during interventional procedures. IEEE Trans Med Imaging 17(5):794–802PubMedCrossRef
18.
go back to reference Gunther RW, Bucker A, Adam G (1999) Interventional magnetic resonance: realistic prospect or wishful thinking? Cardiovasc Intervent Radiol 22(3):187–195PubMedCrossRef Gunther RW, Bucker A, Adam G (1999) Interventional magnetic resonance: realistic prospect or wishful thinking? Cardiovasc Intervent Radiol 22(3):187–195PubMedCrossRef
19.
go back to reference Lewin JS, Metzger A, Selman WR (2000) Intraoperative magnetic resonance image guidance in neurosurgery. J Magn Reson Imaging 12(4):512–524PubMedCrossRef Lewin JS, Metzger A, Selman WR (2000) Intraoperative magnetic resonance image guidance in neurosurgery. J Magn Reson Imaging 12(4):512–524PubMedCrossRef
20.
go back to reference Saeed M, Martin A, Jacquier A, Bucknor M, Saloner D, Do L, Ursell P, Su H, Kan YW, Higgins CB (2008) Permanent coronary artery occlusion: cardiovascular MR imaging is platform for percutaneous transendocardial delivery and assessment of gene therapy in canine model. Radiology 249(2):560–571PubMedCrossRef Saeed M, Martin A, Jacquier A, Bucknor M, Saloner D, Do L, Ursell P, Su H, Kan YW, Higgins CB (2008) Permanent coronary artery occlusion: cardiovascular MR imaging is platform for percutaneous transendocardial delivery and assessment of gene therapy in canine model. Radiology 249(2):560–571PubMedCrossRef
22.
go back to reference Hsu L, Fried MP, Jolesz FA (1998) MR-guided endoscopic sinus surgery. AJNR Am J Neuroradiol 19(7):1235–1240PubMed Hsu L, Fried MP, Jolesz FA (1998) MR-guided endoscopic sinus surgery. AJNR Am J Neuroradiol 19(7):1235–1240PubMed
23.
go back to reference Atalar E, Kraitchman DL, Carkhuff B, Lesho J, Ocali O, Solaiyappan M, Guttman MA, Charles HK Jr (1998) Catheter-tracking FOV MR fluoroscopy. Magn Reson Med 40(6):865–872PubMedCrossRef Atalar E, Kraitchman DL, Carkhuff B, Lesho J, Ocali O, Solaiyappan M, Guttman MA, Charles HK Jr (1998) Catheter-tracking FOV MR fluoroscopy. Magn Reson Med 40(6):865–872PubMedCrossRef
24.
go back to reference Bakker CJ, Hoogeveen RM, Hurtak WF, van Vaals JJ, Viergever MA, Mali WP (1997) MR-guided endovascular interventions: susceptibility-based catheter and near-real-time imaging technique. Radiology 202(1):273–276PubMed Bakker CJ, Hoogeveen RM, Hurtak WF, van Vaals JJ, Viergever MA, Mali WP (1997) MR-guided endovascular interventions: susceptibility-based catheter and near-real-time imaging technique. Radiology 202(1):273–276PubMed
25.
go back to reference Bakker CJ, Hoogeveen RM, Weber J, van Vaals JJ, Viergever MA, Mali WP (1996) Visualization of dedicated catheters using fast scanning techniques with potential for MR-guided vascular interventions. Magn Reson Med 36(6):816–820PubMedCrossRef Bakker CJ, Hoogeveen RM, Weber J, van Vaals JJ, Viergever MA, Mali WP (1996) Visualization of dedicated catheters using fast scanning techniques with potential for MR-guided vascular interventions. Magn Reson Med 36(6):816–820PubMedCrossRef
26.
go back to reference Bakker CJ, Smits HF, Bos C, van der Weide R, Zuiderveld KJ, van Vaals JJ, Hurtak WF, Viergever MA, Mali WP (1998) MR-guided balloon angioplasty: in vitro demonstration of the potential of MRI for guiding, monitoring, and evaluating endovascular interventions. J Magn Reson Imaging 8(1):245–250PubMedCrossRef Bakker CJ, Smits HF, Bos C, van der Weide R, Zuiderveld KJ, van Vaals JJ, Hurtak WF, Viergever MA, Mali WP (1998) MR-guided balloon angioplasty: in vitro demonstration of the potential of MRI for guiding, monitoring, and evaluating endovascular interventions. J Magn Reson Imaging 8(1):245–250PubMedCrossRef
27.
go back to reference Glowinski A, Adam G, Bucker A, Neuerburg J, van Vaals JJ, Gunther RW (1997) Catheter visualization using locally induced, actively controlled field inhomogeneities. Magn Reson Med 38(2):253–258PubMedCrossRef Glowinski A, Adam G, Bucker A, Neuerburg J, van Vaals JJ, Gunther RW (1997) Catheter visualization using locally induced, actively controlled field inhomogeneities. Magn Reson Med 38(2):253–258PubMedCrossRef
28.
go back to reference Ladd ME, Zimmermann GG, McKinnon GC, von Schulthess GK, Dumoulin CL, Darrow RD, Hofmann E, Debatin JF (1998) Visualization of vascular guidewires using MR tracking. J Magn Reson Imaging 8(1):251–253PubMedCrossRef Ladd ME, Zimmermann GG, McKinnon GC, von Schulthess GK, Dumoulin CL, Darrow RD, Hofmann E, Debatin JF (1998) Visualization of vascular guidewires using MR tracking. J Magn Reson Imaging 8(1):251–253PubMedCrossRef
29.
go back to reference Leung DA, Debatin JF, Wildermuth S, McKinnon GC, Holtz D, Dumoulin CL, Darrow RD, Hofmann E, von Schulthess GK (1995) Intravascular MR tracking catheter: preliminary experimental evaluation. AJR Am J Roentgenol 164(5):1265–1270PubMed Leung DA, Debatin JF, Wildermuth S, McKinnon GC, Holtz D, Dumoulin CL, Darrow RD, Hofmann E, von Schulthess GK (1995) Intravascular MR tracking catheter: preliminary experimental evaluation. AJR Am J Roentgenol 164(5):1265–1270PubMed
30.
go back to reference Smits HF, Bos C, van der Weide R, Bakker CJ (1998) Endovascular interventional MR: balloon angioplasty in a hemodialysis access flow phantom [corrected]. J Vasc Interv Radiol 9(5):840–845PubMedCrossRef Smits HF, Bos C, van der Weide R, Bakker CJ (1998) Endovascular interventional MR: balloon angioplasty in a hemodialysis access flow phantom [corrected]. J Vasc Interv Radiol 9(5):840–845PubMedCrossRef
31.
go back to reference Smits HF, Bos C, van der Weide R, Bakker CJ (1999) Interventional MR: vascular applications. Eur Radiol 9(8):1488–1495PubMedCrossRef Smits HF, Bos C, van der Weide R, Bakker CJ (1999) Interventional MR: vascular applications. Eur Radiol 9(8):1488–1495PubMedCrossRef
32.
go back to reference Unal O, Korosec FR, Frayne R, Strother CM, Mistretta CA (1998) A rapid 2D time-resolved variable-rate k-space sampling MR technique for passive catheter tracking during endovascular procedures. Magn Reson Med 40(3):356–362PubMedCrossRef Unal O, Korosec FR, Frayne R, Strother CM, Mistretta CA (1998) A rapid 2D time-resolved variable-rate k-space sampling MR technique for passive catheter tracking during endovascular procedures. Magn Reson Med 40(3):356–362PubMedCrossRef
33.
go back to reference van der Weide R, Zuiderveld KJ, Bakker CJ, Hoogenboom T, van Vaals JJ, Viergever MA (1998) Image guidance of endovascular interventions on a clinical MR scanner. IEEE Trans Med Imaging 17(5):779–785PubMedCrossRef van der Weide R, Zuiderveld KJ, Bakker CJ, Hoogenboom T, van Vaals JJ, Viergever MA (1998) Image guidance of endovascular interventions on a clinical MR scanner. IEEE Trans Med Imaging 17(5):779–785PubMedCrossRef
34.
go back to reference Wendt M, Wacker FK (2000) Visualization, tracking, and navigation of instruments for magnetic resonance imaging-guided endovascular procedures. Top Magn Reson Imaging 11(3):163–172PubMedCrossRef Wendt M, Wacker FK (2000) Visualization, tracking, and navigation of instruments for magnetic resonance imaging-guided endovascular procedures. Top Magn Reson Imaging 11(3):163–172PubMedCrossRef
35.
go back to reference Hall WA, Liu H, Martin AJ, Pozza CH, Maxwell RE, Truwit CL (2000) Safety, efficacy, and functionality of high-field strength interventional magnetic resonance imaging for neurosurgery. Neurosurgery 46(3):632–641 (discussion 641–632) Hall WA, Liu H, Martin AJ, Pozza CH, Maxwell RE, Truwit CL (2000) Safety, efficacy, and functionality of high-field strength interventional magnetic resonance imaging for neurosurgery. Neurosurgery 46(3):632–641 (discussion 641–632)
36.
go back to reference Martin AJ, Hall WA, Liu H, Pozza CH, Michel E, Casey SO, Maxwell RE, Truwit CL (2000) Brain tumor resection: intraoperative monitoring with high-field-strength MR imaging-initial results. Radiology 215(1):221–228PubMed Martin AJ, Hall WA, Liu H, Pozza CH, Michel E, Casey SO, Maxwell RE, Truwit CL (2000) Brain tumor resection: intraoperative monitoring with high-field-strength MR imaging-initial results. Radiology 215(1):221–228PubMed
37.
go back to reference Samset E, Hirschberg H (1999) Neuronavigation in intraoperative MRI. Comput Aided Surg 4(4):200–207PubMedCrossRef Samset E, Hirschberg H (1999) Neuronavigation in intraoperative MRI. Comput Aided Surg 4(4):200–207PubMedCrossRef
38.
go back to reference Schwartz RB, Hsu L, Wong TZ, Kacher DF, Zamani AA, Black PM, Alexander E III, Stieg PE, Moriarty TM, Martin CA, Kikinis R, Jolesz FA (1999) Intraoperative MR imaging guidance for intracranial neurosurgery: experience with the first 200 cases. Radiology 211(2):477–488PubMed Schwartz RB, Hsu L, Wong TZ, Kacher DF, Zamani AA, Black PM, Alexander E III, Stieg PE, Moriarty TM, Martin CA, Kikinis R, Jolesz FA (1999) Intraoperative MR imaging guidance for intracranial neurosurgery: experience with the first 200 cases. Radiology 211(2):477–488PubMed
39.
go back to reference Strother CM, Unal O, Frayne R, Turk A, Omary R, Korosec FR, Mistretta CA (2000) Endovascular treatment of experimental canine aneurysms: feasibility with MR imaging guidance. Radiology 215(2):516–519PubMed Strother CM, Unal O, Frayne R, Turk A, Omary R, Korosec FR, Mistretta CA (2000) Endovascular treatment of experimental canine aneurysms: feasibility with MR imaging guidance. Radiology 215(2):516–519PubMed
40.
go back to reference Zhang Q, Wendt M, Aschoff AJ, Zheng L, Lewin JS, Duerk JL (2000) Active MR guidance of interventional devices with target-navigation. Magn Reson Med 44(1):56–65PubMedCrossRef Zhang Q, Wendt M, Aschoff AJ, Zheng L, Lewin JS, Duerk JL (2000) Active MR guidance of interventional devices with target-navigation. Magn Reson Med 44(1):56–65PubMedCrossRef
41.
go back to reference Lakhan SE, Kaplan A, Laird C, Leiter Y (2009) The interventionalism of medicine: interventional radiology, cardiology, and neuroradiology. Int Arch Med 2(1):27PubMedCrossRef Lakhan SE, Kaplan A, Laird C, Leiter Y (2009) The interventionalism of medicine: interventional radiology, cardiology, and neuroradiology. Int Arch Med 2(1):27PubMedCrossRef
42.
go back to reference Athanasoulis CA (2001) Vascular radiology: looking into the past to learn about the future. Radiology 218(2):317–322PubMed Athanasoulis CA (2001) Vascular radiology: looking into the past to learn about the future. Radiology 218(2):317–322PubMed
43.
go back to reference Sousa JE, Costa MA, Tuzcu EM, Yadav JS, Ellis S (2005) New frontiers in interventional cardiology. Circulation 111(5):671–681PubMedCrossRef Sousa JE, Costa MA, Tuzcu EM, Yadav JS, Ellis S (2005) New frontiers in interventional cardiology. Circulation 111(5):671–681PubMedCrossRef
44.
45.
go back to reference Saeed M, Henk CB, Weber O, Martin A, Wilson M, Shunk K, Saloner D, Higgins CB (2006) Delivery and assessment of endovascular stents to repair aortic coarctation using MR and X-ray imaging. J Magn Reson Imaging 24(2):371–378PubMedCrossRef Saeed M, Henk CB, Weber O, Martin A, Wilson M, Shunk K, Saloner D, Higgins CB (2006) Delivery and assessment of endovascular stents to repair aortic coarctation using MR and X-ray imaging. J Magn Reson Imaging 24(2):371–378PubMedCrossRef
46.
go back to reference Modan B, Keinan L, Blumstein T, Sadetzki S (2000) Cancer following cardiac catheterization in childhood. Int J Epidemiol 29(3):424–428PubMedCrossRef Modan B, Keinan L, Blumstein T, Sadetzki S (2000) Cancer following cardiac catheterization in childhood. Int J Epidemiol 29(3):424–428PubMedCrossRef
47.
go back to reference Frush DP (2004) Review of radiation issues for computed tomography. Semin Ultrasound CT MR 25(1):17–24PubMedCrossRef Frush DP (2004) Review of radiation issues for computed tomography. Semin Ultrasound CT MR 25(1):17–24PubMedCrossRef
48.
go back to reference Prasad KN, Cole WC, Hasse GM (2004) Health risks of low dose ionizing radiation in humans: a review. Exp Biol Med (Maywood) 229(5):378–382 Prasad KN, Cole WC, Hasse GM (2004) Health risks of low dose ionizing radiation in humans: a review. Exp Biol Med (Maywood) 229(5):378–382
49.
go back to reference Berrington de Gonzalez A, Darby S (2004) Risk of cancer from diagnostic X-rays: estimates for the UK and 14 other countries. Lancet 363(9406):345–351PubMedCrossRef Berrington de Gonzalez A, Darby S (2004) Risk of cancer from diagnostic X-rays: estimates for the UK and 14 other countries. Lancet 363(9406):345–351PubMedCrossRef
50.
go back to reference Brenner D, Elliston C, Hall E, Berdon W (2001) Estimated risks of radiation-induced fatal cancer from pediatric CT. AJR Am J Roentgenol 176(2):289–296PubMed Brenner D, Elliston C, Hall E, Berdon W (2001) Estimated risks of radiation-induced fatal cancer from pediatric CT. AJR Am J Roentgenol 176(2):289–296PubMed
51.
go back to reference Hushek SG, Martin AJ, Steckner M, Bosak E, Debbins J, Kucharzyk W (2008) MR systems for MRI-guided interventions. J Magn Reson Imaging 27(2):253–266PubMedCrossRef Hushek SG, Martin AJ, Steckner M, Bosak E, Debbins J, Kucharzyk W (2008) MR systems for MRI-guided interventions. J Magn Reson Imaging 27(2):253–266PubMedCrossRef
52.
go back to reference Wacker FK, Hillenbrand C, Elgort DR, Zhang S, Duerk JL, Lewin JS (2005) MR imaging-guided percutaneous angioplasty and stent placement in a swine model comparison of open- and closed-bore scanners. Acad Radiol 12(9):1085–1088PubMedCrossRef Wacker FK, Hillenbrand C, Elgort DR, Zhang S, Duerk JL, Lewin JS (2005) MR imaging-guided percutaneous angioplasty and stent placement in a swine model comparison of open- and closed-bore scanners. Acad Radiol 12(9):1085–1088PubMedCrossRef
53.
go back to reference Weber OM, Schalla S, Martin AJ, Saeed M, Lee R, Shunk KA, Moore P, Higgins CB (2003) Interventional cardiac magnetic resonance imaging. Semin Roentgenol 38(4):352–357PubMedCrossRef Weber OM, Schalla S, Martin AJ, Saeed M, Lee R, Shunk KA, Moore P, Higgins CB (2003) Interventional cardiac magnetic resonance imaging. Semin Roentgenol 38(4):352–357PubMedCrossRef
54.
go back to reference Martin AJ, Weber OM, Saeed M, Roberts TP (2003) Steady-state imaging for visualization of endovascular interventions. Magn Reson Med 50(2):434–438PubMedCrossRef Martin AJ, Weber OM, Saeed M, Roberts TP (2003) Steady-state imaging for visualization of endovascular interventions. Magn Reson Med 50(2):434–438PubMedCrossRef
55.
go back to reference Muthurangu V, Taylor A, Andriantsimiavona R, Hegde S, Miquel ME, Tulloh R, Baker E, Hill DL, Razavi RS (2004) Novel method of quantifying pulmonary vascular resistance by use of simultaneous invasive pressure monitoring and phase-contrast magnetic resonance flow. Circulation 110(7):826–834PubMedCrossRef Muthurangu V, Taylor A, Andriantsimiavona R, Hegde S, Miquel ME, Tulloh R, Baker E, Hill DL, Razavi RS (2004) Novel method of quantifying pulmonary vascular resistance by use of simultaneous invasive pressure monitoring and phase-contrast magnetic resonance flow. Circulation 110(7):826–834PubMedCrossRef
56.
go back to reference Klemm T, Duda S, Machann J, Seekamp-Rahn K, Schnieder L, Claussen CD, Schick F (2000) MR imaging in the presence of vascular stents: a systematic assessment of artifacts for various stent orientations, sequence types, and field strengths. J Magn Reson Imaging 12(4):606–615PubMedCrossRef Klemm T, Duda S, Machann J, Seekamp-Rahn K, Schnieder L, Claussen CD, Schick F (2000) MR imaging in the presence of vascular stents: a systematic assessment of artifacts for various stent orientations, sequence types, and field strengths. J Magn Reson Imaging 12(4):606–615PubMedCrossRef
57.
go back to reference Kuehne T, Saeed M, Higgins CB, Gleason K, Krombach GA, Weber OM, Martin AJ, Turner D, Teitel D, Moore P (2003) Endovascular stents in pulmonary valve and artery in swine: feasibility study of MR imaging-guided deployment and postinterventional assessment. Radiology 226(2):475–481PubMedCrossRef Kuehne T, Saeed M, Higgins CB, Gleason K, Krombach GA, Weber OM, Martin AJ, Turner D, Teitel D, Moore P (2003) Endovascular stents in pulmonary valve and artery in swine: feasibility study of MR imaging-guided deployment and postinterventional assessment. Radiology 226(2):475–481PubMedCrossRef
58.
go back to reference Kuehne T, Saeed M, Moore P, Gleason K, Reddy G, Teitel D, Higgins CB (2002) Influence of blood-pool contrast media on MR imaging and flow measurements in the presence of pulmonary arterial stents in swine. Radiology 223(2):439–445PubMedCrossRef Kuehne T, Saeed M, Moore P, Gleason K, Reddy G, Teitel D, Higgins CB (2002) Influence of blood-pool contrast media on MR imaging and flow measurements in the presence of pulmonary arterial stents in swine. Radiology 223(2):439–445PubMedCrossRef
59.
go back to reference Buecker A, Spuentrup E, Ruebben A, Mahnken A, Nguyen TH, Kinzel S, Gunther RW (2004) New metallic MR stents for artifact-free coronary MR angiography: feasibility study in a swine model. Invest Radiol 39(5):250–253PubMedCrossRef Buecker A, Spuentrup E, Ruebben A, Mahnken A, Nguyen TH, Kinzel S, Gunther RW (2004) New metallic MR stents for artifact-free coronary MR angiography: feasibility study in a swine model. Invest Radiol 39(5):250–253PubMedCrossRef
60.
go back to reference Konings MK, Bartels LW, Smits HF, Bakker CJ (2000) Heating around intravascular guidewires by resonating RF waves. J Magn Reson Imaging 12(1):79–85PubMedCrossRef Konings MK, Bartels LW, Smits HF, Bakker CJ (2000) Heating around intravascular guidewires by resonating RF waves. J Magn Reson Imaging 12(1):79–85PubMedCrossRef
61.
go back to reference Nitz WR, Oppelt A, Renz W, Manke C, Lenhart M, Link J (2001) On the heating of linear conductive structures as guide wires and catheters in interventional MRI. J Magn Reson Imaging 13(1):105–114PubMedCrossRef Nitz WR, Oppelt A, Renz W, Manke C, Lenhart M, Link J (2001) On the heating of linear conductive structures as guide wires and catheters in interventional MRI. J Magn Reson Imaging 13(1):105–114PubMedCrossRef
62.
go back to reference Mekle R, Hofmann E, Scheffler K, Bilecen D (2006) A polymer-based MR-compatible guidewire: a study to explore new prospects for interventional peripheral magnetic resonance angiography (ipMRA). J Magn Reson Imaging 23(2):145–155PubMedCrossRef Mekle R, Hofmann E, Scheffler K, Bilecen D (2006) A polymer-based MR-compatible guidewire: a study to explore new prospects for interventional peripheral magnetic resonance angiography (ipMRA). J Magn Reson Imaging 23(2):145–155PubMedCrossRef
63.
go back to reference Mekle R, Zenge MO, Ladd ME, Quick HH, Hofmann E, Scheffler K, Bilecen D (2009) Initial in vivo studies with a polymer-based MR-compatible guide wire. J Vasc Interv Radiol 20(10):1384–1389PubMedCrossRef Mekle R, Zenge MO, Ladd ME, Quick HH, Hofmann E, Scheffler K, Bilecen D (2009) Initial in vivo studies with a polymer-based MR-compatible guide wire. J Vasc Interv Radiol 20(10):1384–1389PubMedCrossRef
64.
go back to reference Krueger S, Schmitz S, Weiss S, Wirtz D, Linssen M, Schade H, Kraemer N, Spuentrup E, Krombach G, Buecker A (2008) An MR guidewire based on micropultruded fiber-reinforced material. Magn Reson Med 60(5):1190–1196PubMedCrossRef Krueger S, Schmitz S, Weiss S, Wirtz D, Linssen M, Schade H, Kraemer N, Spuentrup E, Krombach G, Buecker A (2008) An MR guidewire based on micropultruded fiber-reinforced material. Magn Reson Med 60(5):1190–1196PubMedCrossRef
65.
go back to reference Karmarkar PV, Kraitchman DL, Izbudak I, Hofmann LV, Amado LC, Fritzges D, Young R, Pittenger M, Bulte JW, Atalar E (2004) MR-trackable intramyocardial injection catheter. Magn Reson Med 51(6):1163–1172PubMedCrossRef Karmarkar PV, Kraitchman DL, Izbudak I, Hofmann LV, Amado LC, Fritzges D, Young R, Pittenger M, Bulte JW, Atalar E (2004) MR-trackable intramyocardial injection catheter. Magn Reson Med 51(6):1163–1172PubMedCrossRef
66.
go back to reference Saeed M, Lee R, Martin A, Weber O, Krombach GA, Schalla S, Lee M, Saloner D, Higgins CB (2004) Transendocardial delivery of extracellular myocardial markers by using combination X-ray/MR fluoroscopic guidance: feasibility study in dogs. Radiology 231(3):689–696PubMedCrossRef Saeed M, Lee R, Martin A, Weber O, Krombach GA, Schalla S, Lee M, Saloner D, Higgins CB (2004) Transendocardial delivery of extracellular myocardial markers by using combination X-ray/MR fluoroscopic guidance: feasibility study in dogs. Radiology 231(3):689–696PubMedCrossRef
67.
go back to reference Yang X, Atalar E, Li D, Serfaty JM, Wang D, Kumar A, Cheng L (2001) Magnetic resonance imaging permits in vivo monitoring of catheter-based vascular gene delivery. Circulation 104(14):1588–1590PubMedCrossRef Yang X, Atalar E, Li D, Serfaty JM, Wang D, Kumar A, Cheng L (2001) Magnetic resonance imaging permits in vivo monitoring of catheter-based vascular gene delivery. Circulation 104(14):1588–1590PubMedCrossRef
68.
go back to reference Maes RM, Lewin JS, Duerk JL, Wacker FK (2005) Combined use of the intravascular blood-pool agent, gadomer, and carbon dioxide: a novel type of double-contrast magnetic resonance angiography (MRA). J Magn Reson Imaging 21(5):645–649PubMedCrossRef Maes RM, Lewin JS, Duerk JL, Wacker FK (2005) Combined use of the intravascular blood-pool agent, gadomer, and carbon dioxide: a novel type of double-contrast magnetic resonance angiography (MRA). J Magn Reson Imaging 21(5):645–649PubMedCrossRef
69.
go back to reference Manke C, Nitz WR, Lenhart M, Volk M, Geissler A, Djavidani B, Strotzer M, Kasprzak P, Feuerbach S, Link J (2000) Stent angioplasty of pelvic artery stenosis with MRI control: initial clinical results. Rofo 172(1):92–97PubMedCrossRef Manke C, Nitz WR, Lenhart M, Volk M, Geissler A, Djavidani B, Strotzer M, Kasprzak P, Feuerbach S, Link J (2000) Stent angioplasty of pelvic artery stenosis with MRI control: initial clinical results. Rofo 172(1):92–97PubMedCrossRef
70.
go back to reference Razavi R, Hill DL, Keevil SF, Miquel ME, Muthurangu V, Hegde S, Rhode K, Barnett M, van Vaals J, Hawkes DJ, Baker E (2003) Cardiac catheterisation guided by MRI in children and adults with congenital heart disease. Lancet 362(9399):1877–1882PubMedCrossRef Razavi R, Hill DL, Keevil SF, Miquel ME, Muthurangu V, Hegde S, Rhode K, Barnett M, van Vaals J, Hawkes DJ, Baker E (2003) Cardiac catheterisation guided by MRI in children and adults with congenital heart disease. Lancet 362(9399):1877–1882PubMedCrossRef
71.
go back to reference Flask C, Elgort D, Wong E, Shankaranarayanan A, Lewin J, Wendt M, Duerk JL (2001) A method for fast 3D tracking using tuned fiducial markers and a limited projection reconstruction FISP (LPR-FISP) sequence. J Magn Reson Imaging 14(5):617–627PubMedCrossRef Flask C, Elgort D, Wong E, Shankaranarayanan A, Lewin J, Wendt M, Duerk JL (2001) A method for fast 3D tracking using tuned fiducial markers and a limited projection reconstruction FISP (LPR-FISP) sequence. J Magn Reson Imaging 14(5):617–627PubMedCrossRef
72.
go back to reference Wacker FK, Hillenbrand CM, Duerk JL, Lewin JS (2005) MR-guided endovascular interventions: device visualization, tracking, navigation, clinical applications, and safety aspects. Magn Reson Imaging Clin N Am 13(3):431–439PubMedCrossRef Wacker FK, Hillenbrand CM, Duerk JL, Lewin JS (2005) MR-guided endovascular interventions: device visualization, tracking, navigation, clinical applications, and safety aspects. Magn Reson Imaging Clin N Am 13(3):431–439PubMedCrossRef
73.
go back to reference Saeed M, Martin AJ, Lee RJ, Weber O, Revel D, Saloner D, Higgins CB (2006) MR guidance of targeted injections into border and core of scarred myocardium in pigs. Radiology 240(2):419–426PubMedCrossRef Saeed M, Martin AJ, Lee RJ, Weber O, Revel D, Saloner D, Higgins CB (2006) MR guidance of targeted injections into border and core of scarred myocardium in pigs. Radiology 240(2):419–426PubMedCrossRef
74.
go back to reference Bock M, Volz S, Zuhlsdorff S, Umathum R, Fink C, Hallscheidt P, Semmler W (2004) MR-guided intravascular procedures: real-time parameter control and automated slice positioning with active tracking coils. J Magn Reson Imaging 19(5):580–589PubMedCrossRef Bock M, Volz S, Zuhlsdorff S, Umathum R, Fink C, Hallscheidt P, Semmler W (2004) MR-guided intravascular procedures: real-time parameter control and automated slice positioning with active tracking coils. J Magn Reson Imaging 19(5):580–589PubMedCrossRef
75.
go back to reference Quick HH, Kuehl H, Kaiser G, Bosk S, Debatin JF, Ladd ME (2002) Inductively coupled stent antennas in MRI. Magn Reson Med 48(5):781–790PubMedCrossRef Quick HH, Kuehl H, Kaiser G, Bosk S, Debatin JF, Ladd ME (2002) Inductively coupled stent antennas in MRI. Magn Reson Med 48(5):781–790PubMedCrossRef
76.
go back to reference Hillenbrand CM, Jesberger JA, Wong EY, Zhang S, Chang DT, Wacker FK, Lewin JS, Duerk JL (2006) Toward rapid high resolution in vivo intravascular MRI: evaluation of vessel wall conspicuity in a porcine model using multiple imaging protocols. J Magn Reson Imaging 23(2):135–144PubMedCrossRef Hillenbrand CM, Jesberger JA, Wong EY, Zhang S, Chang DT, Wacker FK, Lewin JS, Duerk JL (2006) Toward rapid high resolution in vivo intravascular MRI: evaluation of vessel wall conspicuity in a porcine model using multiple imaging protocols. J Magn Reson Imaging 23(2):135–144PubMedCrossRef
77.
go back to reference Park SM, Kamondetdacha R, Nyenhuis JA (2007) Calculation of MRI-induced heating of an implanted medical lead wire with an electric field transfer function. J Magn Reson Imaging 26(5):1278–1285PubMedCrossRef Park SM, Kamondetdacha R, Nyenhuis JA (2007) Calculation of MRI-induced heating of an implanted medical lead wire with an electric field transfer function. J Magn Reson Imaging 26(5):1278–1285PubMedCrossRef
78.
go back to reference Kocaturk O, Saikus CE, Guttman MA, Faranesh AZ, Ratnayaka K, Ozturk C, McVeigh ER, Lederman RJ (2009) Whole shaft visibility and mechanical performance for active MR catheters using copper-nitinol braided polymer tubes. J Cardiovasc Magn Reson 11(1):29PubMedCrossRef Kocaturk O, Saikus CE, Guttman MA, Faranesh AZ, Ratnayaka K, Ozturk C, McVeigh ER, Lederman RJ (2009) Whole shaft visibility and mechanical performance for active MR catheters using copper-nitinol braided polymer tubes. J Cardiovasc Magn Reson 11(1):29PubMedCrossRef
79.
go back to reference Rezai AR, Baker KB, Tkach JA, Phillips M, Hrdlicka G, Sharan AD, Nyenhuis J, Ruggieri P, Shellock FG, Henderson J (2005) Is magnetic resonance imaging safe for patients with neurostimulation systems used for deep brain stimulation? Neurosurgery 57(5):1056–1062 (discussion 1056–1062) Rezai AR, Baker KB, Tkach JA, Phillips M, Hrdlicka G, Sharan AD, Nyenhuis J, Ruggieri P, Shellock FG, Henderson J (2005) Is magnetic resonance imaging safe for patients with neurostimulation systems used for deep brain stimulation? Neurosurgery 57(5):1056–1062 (discussion 1056–1062)
80.
go back to reference Nazarian S, Roguin A, Zviman MM, Lardo AC, Dickfeld TL, Calkins H, Weiss RG, Berger RD, Bluemke DA, Halperin HR (2006) Clinical utility and safety of a protocol for noncardiac and cardiac magnetic resonance imaging of patients with permanent pacemakers and implantable-cardioverter defibrillators at 1.5 tesla. Circulation 114(12):1277–1284PubMedCrossRef Nazarian S, Roguin A, Zviman MM, Lardo AC, Dickfeld TL, Calkins H, Weiss RG, Berger RD, Bluemke DA, Halperin HR (2006) Clinical utility and safety of a protocol for noncardiac and cardiac magnetic resonance imaging of patients with permanent pacemakers and implantable-cardioverter defibrillators at 1.5 tesla. Circulation 114(12):1277–1284PubMedCrossRef
81.
go back to reference Sommer T, Naehle CP, Yang A, Zeijlemaker V, Hackenbroch M, Schmiedel A, Meyer C, Strach K, Skowasch D, Vahlhaus C, Litt H, Schild H (2006) Strategy for safe performance of extrathoracic magnetic resonance imaging at 1.5 tesla in the presence of cardiac pacemakers in non-pacemaker-dependent patients: a prospective study with 115 examinations. Circulation 114(12):1285–1292PubMedCrossRef Sommer T, Naehle CP, Yang A, Zeijlemaker V, Hackenbroch M, Schmiedel A, Meyer C, Strach K, Skowasch D, Vahlhaus C, Litt H, Schild H (2006) Strategy for safe performance of extrathoracic magnetic resonance imaging at 1.5 tesla in the presence of cardiac pacemakers in non-pacemaker-dependent patients: a prospective study with 115 examinations. Circulation 114(12):1285–1292PubMedCrossRef
82.
go back to reference Roguin A, Zviman MM, Meininger GR, Rodrigues ER, Dickfeld TM, Bluemke DA, Lardo A, Berger RD, Calkins H, Halperin HR (2004) Modern pacemaker and implantable cardioverter/defibrillator systems can be magnetic resonance imaging safe: in vitro and in vivo assessment of safety and function at 1.5 T. Circulation 110(5):475–482PubMedCrossRef Roguin A, Zviman MM, Meininger GR, Rodrigues ER, Dickfeld TM, Bluemke DA, Lardo A, Berger RD, Calkins H, Halperin HR (2004) Modern pacemaker and implantable cardioverter/defibrillator systems can be magnetic resonance imaging safe: in vitro and in vivo assessment of safety and function at 1.5 T. Circulation 110(5):475–482PubMedCrossRef
83.
go back to reference Roberts TP, Hassenzahl WV, Hetts SW, Arenson RL (2002) Remote control of catheter tip deflection: an opportunity for interventional MRI. Magn Reson Med 48(6):1091–1095PubMedCrossRef Roberts TP, Hassenzahl WV, Hetts SW, Arenson RL (2002) Remote control of catheter tip deflection: an opportunity for interventional MRI. Magn Reson Med 48(6):1091–1095PubMedCrossRef
84.
go back to reference Settecase F, Sussman MS, Wilson MW, Hetts S, Arenson RL, Malba V, Bernhardt AF, Kucharczyk W, Roberts TP (2007) Magnetically-assisted remote control (MARC) steering of endovascular catheters for interventional MRI: a model for deflection and design implications. Med Phys 34(8):3135–3142PubMedCrossRef Settecase F, Sussman MS, Wilson MW, Hetts S, Arenson RL, Malba V, Bernhardt AF, Kucharczyk W, Roberts TP (2007) Magnetically-assisted remote control (MARC) steering of endovascular catheters for interventional MRI: a model for deflection and design implications. Med Phys 34(8):3135–3142PubMedCrossRef
85.
go back to reference Demas V, Herberg JL, Malba V, Bernhardt A, Evans L, Harvey C, Chinn SC, Maxwell RS, Reimer J (2007) Portable, low-cost NMR with laser-lathe lithography produced microcoils. J Magn Reson 189(1):121–129PubMedCrossRef Demas V, Herberg JL, Malba V, Bernhardt A, Evans L, Harvey C, Chinn SC, Maxwell RS, Reimer J (2007) Portable, low-cost NMR with laser-lathe lithography produced microcoils. J Magn Reson 189(1):121–129PubMedCrossRef
86.
go back to reference Settecase F, Hetts SW, Martin AJ, Roberts TP, Bernhardt AF, Evans L, Malba V, Saeed M, Arenson RL, Kucharzyk W, Wilson MW (2011) RF heating of MRI-assisted catheter steering coils for interventional MRI. Acad Radiol. doi: 10.1016/j.acra.2010.09.012 Settecase F, Hetts SW, Martin AJ, Roberts TP, Bernhardt AF, Evans L, Malba V, Saeed M, Arenson RL, Kucharzyk W, Wilson MW (2011) RF heating of MRI-assisted catheter steering coils for interventional MRI. Acad Radiol. doi: 10.​1016/​j.​acra.​2010.​09.​012
87.
go back to reference Bernhardt A, Wilson MW, Settecase F, Evans L, Malba V, Martin AJ, Saeed M, Roberts TP, Arenson RL, Hetts SW (2011) Steerable catheter microcoils for interventional MRI: reducing resistive heating. Acad Radiol. doi: 10.1016/j.acra.2010.09.010 Bernhardt A, Wilson MW, Settecase F, Evans L, Malba V, Martin AJ, Saeed M, Roberts TP, Arenson RL, Hetts SW (2011) Steerable catheter microcoils for interventional MRI: reducing resistive heating. Acad Radiol. doi: 10.​1016/​j.​acra.​2010.​09.​010
88.
89.
go back to reference Osman NF, Kerwin WS, McVeigh ER, Prince JL (1999) Cardiac motion tracking using CINE harmonic phase (HARP) magnetic resonance imaging. Magn Reson Med 42(6):1048–1060PubMedCrossRef Osman NF, Kerwin WS, McVeigh ER, Prince JL (1999) Cardiac motion tracking using CINE harmonic phase (HARP) magnetic resonance imaging. Magn Reson Med 42(6):1048–1060PubMedCrossRef
90.
go back to reference Jacquier A, Higgins CB, Martin AJ, Do L, Saloner D, Saeed M (2007) Injection of adeno-associated viral vector encoding vascular endothelial growth factor gene in infarcted swine myocardium: MR measurements of left ventricular function and strain. Radiology 245(1):196–205PubMedCrossRef Jacquier A, Higgins CB, Martin AJ, Do L, Saloner D, Saeed M (2007) Injection of adeno-associated viral vector encoding vascular endothelial growth factor gene in infarcted swine myocardium: MR measurements of left ventricular function and strain. Radiology 245(1):196–205PubMedCrossRef
91.
go back to reference Aime S, Barge A, Cabella C, Crich SG, Gianolio E (2004) Targeting cells with MR imaging probes based on paramagnetic Gd(III) chelates. Curr Pharm Biotechnol 5(6):509–518PubMedCrossRef Aime S, Barge A, Cabella C, Crich SG, Gianolio E (2004) Targeting cells with MR imaging probes based on paramagnetic Gd(III) chelates. Curr Pharm Biotechnol 5(6):509–518PubMedCrossRef
92.
go back to reference Biancone L, Crich SG, Cantaluppi V, Romanazzi GM, Russo S, Scalabrino E, Esposito G, Figliolini F, Beltramo S, Perin PC, Segoloni GP, Aime S, Camussi G (2006) Magnetic resonance imaging of gadolinium-labeled pancreatic islets for experimental transplantation. NMR Biomed Biancone L, Crich SG, Cantaluppi V, Romanazzi GM, Russo S, Scalabrino E, Esposito G, Figliolini F, Beltramo S, Perin PC, Segoloni GP, Aime S, Camussi G (2006) Magnetic resonance imaging of gadolinium-labeled pancreatic islets for experimental transplantation. NMR Biomed
93.
go back to reference Omary RA, Green JD, Fang WS, Viohl I, Finn JP, Li D (2003) Use of internal coils for independent and direct MR imaging-guided endovascular device tracking. J Vasc Interv Radiol 14(2 Pt 1):247–254PubMedCrossRef Omary RA, Green JD, Fang WS, Viohl I, Finn JP, Li D (2003) Use of internal coils for independent and direct MR imaging-guided endovascular device tracking. J Vasc Interv Radiol 14(2 Pt 1):247–254PubMedCrossRef
94.
go back to reference Omary RA, Green JD, Schirf BE, Li Y, Finn JP, Li D (2003) Real-time magnetic resonance imaging-guided coronary catheterization in swine. Circulation 107(21):2656–2659PubMedCrossRef Omary RA, Green JD, Schirf BE, Li Y, Finn JP, Li D (2003) Real-time magnetic resonance imaging-guided coronary catheterization in swine. Circulation 107(21):2656–2659PubMedCrossRef
95.
go back to reference Saeed M, Weber O, Lee R, Do L, Martin A, Saloner D, Ursell P, Robert P, Corot C, Higgins CB (2006) Discrimination of myocardial acute and chronic (scar) infarctions on delayed contrast enhanced magnetic resonance imaging with intravascular magnetic resonance contrast media. J Am Coll Cardiol 48(10):1961–1968PubMedCrossRef Saeed M, Weber O, Lee R, Do L, Martin A, Saloner D, Ursell P, Robert P, Corot C, Higgins CB (2006) Discrimination of myocardial acute and chronic (scar) infarctions on delayed contrast enhanced magnetic resonance imaging with intravascular magnetic resonance contrast media. J Am Coll Cardiol 48(10):1961–1968PubMedCrossRef
96.
go back to reference Kraitchman DL, Tatsumi M, Gilson WD, Ishimori T, Kedziorek D, Walczak P, Segars WP, Chen HH, Fritzges D, Izbudak I, Young RG, Marcelino M, Pittenger MF, Solaiyappan M, Boston RC, Tsui BM, Wahl RL, Bulte JW (2005) Dynamic imaging of allogeneic mesenchymal stem cells trafficking to myocardial infarction. Circulation 112(10):1451–1461PubMedCrossRef Kraitchman DL, Tatsumi M, Gilson WD, Ishimori T, Kedziorek D, Walczak P, Segars WP, Chen HH, Fritzges D, Izbudak I, Young RG, Marcelino M, Pittenger MF, Solaiyappan M, Boston RC, Tsui BM, Wahl RL, Bulte JW (2005) Dynamic imaging of allogeneic mesenchymal stem cells trafficking to myocardial infarction. Circulation 112(10):1451–1461PubMedCrossRef
97.
go back to reference Hill JM, Dick AJ, Raman VK, Thompson RB, Yu ZX, Hinds KA, Pessanha BS, Guttman MA, Varney TR, Martin BJ, Dunbar CE, McVeigh ER, Lederman RJ (2003) Serial cardiac magnetic resonance imaging of injected mesenchymal stem cells. Circulation 108(8):1009–1014PubMedCrossRef Hill JM, Dick AJ, Raman VK, Thompson RB, Yu ZX, Hinds KA, Pessanha BS, Guttman MA, Varney TR, Martin BJ, Dunbar CE, McVeigh ER, Lederman RJ (2003) Serial cardiac magnetic resonance imaging of injected mesenchymal stem cells. Circulation 108(8):1009–1014PubMedCrossRef
98.
go back to reference Arai T, Kofidis T, Bulte JW, de Bruin J, Venook RD, Berry GJ, McConnell MV, Quertermous T, Robbins RC, Yang PC (2006) Dual in vivo magnetic resonance evaluation of magnetically labeled mouse embryonic stem cells and cardiac function at 1.5 t. Magn Reson Med 55(1):203–209PubMedCrossRef Arai T, Kofidis T, Bulte JW, de Bruin J, Venook RD, Berry GJ, McConnell MV, Quertermous T, Robbins RC, Yang PC (2006) Dual in vivo magnetic resonance evaluation of magnetically labeled mouse embryonic stem cells and cardiac function at 1.5 t. Magn Reson Med 55(1):203–209PubMedCrossRef
99.
go back to reference Sadowski EA, Bennett LK, Chan MR, Wentland AL, Garrett AL, Garrett RW, Djamali A (2007) Nephrogenic systemic fibrosis: risk factors and incidence estimation. Radiology 243(1):148–157PubMedCrossRef Sadowski EA, Bennett LK, Chan MR, Wentland AL, Garrett AL, Garrett RW, Djamali A (2007) Nephrogenic systemic fibrosis: risk factors and incidence estimation. Radiology 243(1):148–157PubMedCrossRef
100.
go back to reference Bongartz G, Mayr M, Bilecen D (2008) Magnetic resonance angiography (MRA) in renally impaired patients: when and how. Eur J Radiol 66(2):213–219PubMedCrossRef Bongartz G, Mayr M, Bilecen D (2008) Magnetic resonance angiography (MRA) in renally impaired patients: when and how. Eur J Radiol 66(2):213–219PubMedCrossRef
101.
go back to reference Busse RF, Riederer SJ (2001) Steady-state preparation for spoiled gradient echo imaging. Magn Reson Med 45(4):653–661PubMedCrossRef Busse RF, Riederer SJ (2001) Steady-state preparation for spoiled gradient echo imaging. Magn Reson Med 45(4):653–661PubMedCrossRef
102.
go back to reference Elgort DR, Duerk JL (2005) A review of technical advances in interventional magnetic resonance imaging. Acad Radiol 12(9):1089–1099PubMedCrossRef Elgort DR, Duerk JL (2005) A review of technical advances in interventional magnetic resonance imaging. Acad Radiol 12(9):1089–1099PubMedCrossRef
103.
go back to reference Duerk JL, Lewin JS, Wendt M, Petersilge C (1998) Remember true FISP? A high SNR, near 1-second imaging method for T2-like contrast in interventional MRI at.2 T. J Magn Reson Imaging 8(1):203–208PubMedCrossRef Duerk JL, Lewin JS, Wendt M, Petersilge C (1998) Remember true FISP? A high SNR, near 1-second imaging method for T2-like contrast in interventional MRI at.2 T. J Magn Reson Imaging 8(1):203–208PubMedCrossRef
104.
go back to reference Bock M, Muller S, Zuehlsdorff S, Speier P, Fink C, Hallscheidt P, Umathum R, Semmler W (2006) Active catheter tracking using parallel MRI and real-time image reconstruction. Magn Reson Med 55(6):1454–1459PubMedCrossRef Bock M, Muller S, Zuehlsdorff S, Speier P, Fink C, Hallscheidt P, Umathum R, Semmler W (2006) Active catheter tracking using parallel MRI and real-time image reconstruction. Magn Reson Med 55(6):1454–1459PubMedCrossRef
105.
go back to reference Peters DC, Lederman RJ, Dick AJ, Raman VK, Guttman MA, Derbyshire JA, McVeigh ER (2003) Undersampled projection reconstruction for active catheter imaging with adaptable temporal resolution and catheter-only views. Magn Reson Med 49(2):216–222PubMedCrossRef Peters DC, Lederman RJ, Dick AJ, Raman VK, Guttman MA, Derbyshire JA, McVeigh ER (2003) Undersampled projection reconstruction for active catheter imaging with adaptable temporal resolution and catheter-only views. Magn Reson Med 49(2):216–222PubMedCrossRef
106.
go back to reference Spielman DM, Pauly JM, Meyer CH (1995) Magnetic resonance fluoroscopy using spirals with variable sampling densities. Magn Reson Med 34(3):388–394PubMedCrossRef Spielman DM, Pauly JM, Meyer CH (1995) Magnetic resonance fluoroscopy using spirals with variable sampling densities. Magn Reson Med 34(3):388–394PubMedCrossRef
107.
go back to reference Rasche V, de Boer RW, Holz D, Proksa R (1995) Continuous radial data acquisition for dynamic MRI. Magn Reson Med 34(5):754–761PubMedCrossRef Rasche V, de Boer RW, Holz D, Proksa R (1995) Continuous radial data acquisition for dynamic MRI. Magn Reson Med 34(5):754–761PubMedCrossRef
108.
go back to reference Rasche V, Holz D, Kohler J, Proksa R, Roschmann P (1997) Catheter tracking using continuous radial MRI. Magn Reson Med 37(6):963–968PubMedCrossRef Rasche V, Holz D, Kohler J, Proksa R, Roschmann P (1997) Catheter tracking using continuous radial MRI. Magn Reson Med 37(6):963–968PubMedCrossRef
109.
go back to reference Pruessmann KP, Weiger M, Scheidegger MB, Boesiger P (1999) SENSE: sensitivity encoding for fast MRI. Magn Reson Med 42(5):952–962PubMedCrossRef Pruessmann KP, Weiger M, Scheidegger MB, Boesiger P (1999) SENSE: sensitivity encoding for fast MRI. Magn Reson Med 42(5):952–962PubMedCrossRef
110.
go back to reference Niendorf T, Sodickson DK (2006) Parallel imaging in cardiovascular MRI: methods and applications. NMR Biomed 19(3):325–341PubMedCrossRef Niendorf T, Sodickson DK (2006) Parallel imaging in cardiovascular MRI: methods and applications. NMR Biomed 19(3):325–341PubMedCrossRef
111.
go back to reference Kyriakos WE, Hoge WS, Mitsouras D (2006) Generalized encoding through the use of selective excitation in accelerated parallel MRI. NMR Biomed 19(3):379–392PubMedCrossRef Kyriakos WE, Hoge WS, Mitsouras D (2006) Generalized encoding through the use of selective excitation in accelerated parallel MRI. NMR Biomed 19(3):379–392PubMedCrossRef
112.
go back to reference Carlsson M, Osman NF, Ursell PC, Martin AJ, Saeed M (2008) Quantitative MR measurements of regional and global left ventricular function and strain after intramyocardial transfer of VM202 into infarcted swine myocardium. Am J Physiol Heart Circ Physiol 295(2):H522–H532PubMedCrossRef Carlsson M, Osman NF, Ursell PC, Martin AJ, Saeed M (2008) Quantitative MR measurements of regional and global left ventricular function and strain after intramyocardial transfer of VM202 into infarcted swine myocardium. Am J Physiol Heart Circ Physiol 295(2):H522–H532PubMedCrossRef
113.
go back to reference Saeed M, Martin A, Ursell P, Do L, Bucknor M, Higgins CB, Saloner D (2008) MR assessment of myocardial perfusion, viability and function after intramyocardial transfer of VM202, a new plasmid human hepatocyte growth factor in ischemic swine myocardium. Radiology 249(1):107–118 PubMedCrossRef Saeed M, Martin A, Ursell P, Do L, Bucknor M, Higgins CB, Saloner D (2008) MR assessment of myocardial perfusion, viability and function after intramyocardial transfer of VM202, a new plasmid human hepatocyte growth factor in ischemic swine myocardium. Radiology 249(1):107–118 PubMedCrossRef
114.
go back to reference Dicks D, Saloner D, Martin A, Ursell P, Carlsson M, Saeed M (2010) Cardiovascular magnetic resonance imaging for percutaneous transendocardial delivery and three dimensional left ventricular strain assessment of VEGF gene therapy in occlusive infarction. Int J Cardiol 143(3):255–263 Dicks D, Saloner D, Martin A, Ursell P, Carlsson M, Saeed M (2010) Cardiovascular magnetic resonance imaging for percutaneous transendocardial delivery and three dimensional left ventricular strain assessment of VEGF gene therapy in occlusive infarction. Int J Cardiol 143(3):255–263
115.
go back to reference Carlsson M, Jablonowski R, Martin A, Ursell P, Saeed M (2011) Impaired regional perfusion after coronary microembolization predicts long-term detrimental effects on regional left ventricular function. Scand Cardiovasc J (in press) Carlsson M, Jablonowski R, Martin A, Ursell P, Saeed M (2011) Impaired regional perfusion after coronary microembolization predicts long-term detrimental effects on regional left ventricular function. Scand Cardiovasc J (in press)
116.
go back to reference Dicks DL, Carlsson M, Heiberg E, Martin A, Saloner D, Arheden H, Saeed M (2009) Persistent decline in longitudinal and radial strain after coronary microembolization detected on velocity encoded phase contrast magnetic resonance imaging. J Magn Reson Imaging 30(1):69–76PubMedCrossRef Dicks DL, Carlsson M, Heiberg E, Martin A, Saloner D, Arheden H, Saeed M (2009) Persistent decline in longitudinal and radial strain after coronary microembolization detected on velocity encoded phase contrast magnetic resonance imaging. J Magn Reson Imaging 30(1):69–76PubMedCrossRef
117.
go back to reference Bergvall E, Cain P, Arheden H, Sparr G (2006) A fast and highly automated approach to myocardial motion analysis using phase contrast magnetic resonance imaging. J Magn Reson Imaging 23(5):652–661PubMedCrossRef Bergvall E, Cain P, Arheden H, Sparr G (2006) A fast and highly automated approach to myocardial motion analysis using phase contrast magnetic resonance imaging. J Magn Reson Imaging 23(5):652–661PubMedCrossRef
118.
go back to reference Saeed M, Martin AJ, Saloner D, Do L, Wilson M (2010) Noninvasive MR characterization of structural and functional components of reperfused infarct. Acta Radiol 51(10):1093–1102PubMedCrossRef Saeed M, Martin AJ, Saloner D, Do L, Wilson M (2010) Noninvasive MR characterization of structural and functional components of reperfused infarct. Acta Radiol 51(10):1093–1102PubMedCrossRef
119.
go back to reference Kramer CM, Budoff MJ, Fayad ZA, Ferrari VA, Goldman C, Lesser JR, Martin ET, Rajagopalan S, Reilly JP, Rodgers GP, Wechsler L (2007) ACCF/AHA 2007 clinical competence statement on vascular imaging with computed tomography and magnetic resonance. Vasc Med 12(4):359–378PubMedCrossRef Kramer CM, Budoff MJ, Fayad ZA, Ferrari VA, Goldman C, Lesser JR, Martin ET, Rajagopalan S, Reilly JP, Rodgers GP, Wechsler L (2007) ACCF/AHA 2007 clinical competence statement on vascular imaging with computed tomography and magnetic resonance. Vasc Med 12(4):359–378PubMedCrossRef
120.
go back to reference Choudhury RP, Fuster V, Fayad ZA (2004) Molecular, cellular and functional imaging of atherothrombosis. Nat Rev Drug Discov 3(11):913–925PubMedCrossRef Choudhury RP, Fuster V, Fayad ZA (2004) Molecular, cellular and functional imaging of atherothrombosis. Nat Rev Drug Discov 3(11):913–925PubMedCrossRef
121.
go back to reference Manke C, Nitz WR, Djavidani B, Strotzer M, Lenhart M, Volk M, Feuerbach S, Link J (2001) MR imaging-guided stent placement in iliac arterial stenoses: a feasibility study. Radiology 219(2):527–534PubMed Manke C, Nitz WR, Djavidani B, Strotzer M, Lenhart M, Volk M, Feuerbach S, Link J (2001) MR imaging-guided stent placement in iliac arterial stenoses: a feasibility study. Radiology 219(2):527–534PubMed
122.
go back to reference Paetzel C, Zorger N, Bachthaler M, Hamer OW, Stehr A, Feuerbach S, Lenhart M, Volk M, Herold T, Kasprzak P, Nitz WR (2005) Magnetic resonance-guided percutaneous angioplasty of femoral and popliteal artery stenoses using real-time imaging and intra-arterial contrast-enhanced magnetic resonance angiography. Invest Radiol 40(5):257–262PubMedCrossRef Paetzel C, Zorger N, Bachthaler M, Hamer OW, Stehr A, Feuerbach S, Lenhart M, Volk M, Herold T, Kasprzak P, Nitz WR (2005) Magnetic resonance-guided percutaneous angioplasty of femoral and popliteal artery stenoses using real-time imaging and intra-arterial contrast-enhanced magnetic resonance angiography. Invest Radiol 40(5):257–262PubMedCrossRef
123.
go back to reference Paetzel C, Zorger N, Bachthaler M, Volk M, Seitz J, Herold T, Feuerbach S, Lenhart M, Nitz WR (2004) Feasibility of MR-guided angioplasty of femoral artery stenoses using real-time imaging and intraarterial contrast-enhanced MR angiography. Rofo 176(9):1232–1236PubMedCrossRef Paetzel C, Zorger N, Bachthaler M, Volk M, Seitz J, Herold T, Feuerbach S, Lenhart M, Nitz WR (2004) Feasibility of MR-guided angioplasty of femoral artery stenoses using real-time imaging and intraarterial contrast-enhanced MR angiography. Rofo 176(9):1232–1236PubMedCrossRef
124.
go back to reference Omary RA, Frayne R, Unal O, Warner T, Korosec FR, Mistretta CA, Strother CM, Grist TM (2000) MR-guided angioplasty of renal artery stenosis in a pig model: a feasibility study. J Vasc Interv Radiol 11(3):373–381PubMedCrossRef Omary RA, Frayne R, Unal O, Warner T, Korosec FR, Mistretta CA, Strother CM, Grist TM (2000) MR-guided angioplasty of renal artery stenosis in a pig model: a feasibility study. J Vasc Interv Radiol 11(3):373–381PubMedCrossRef
125.
go back to reference Raval AN, Telep JD, Guttman MA, Ozturk C, Jones M, Thompson RB, Wright VJ, Schenke WH, DeSilva R, Aviles RJ, Raman VK, Slack MC, Lederman RJ (2005) Real-time magnetic resonance imaging-guided stenting of aortic coarctation with commercially available catheter devices in swine. Circulation 112(5):699–706PubMedCrossRef Raval AN, Telep JD, Guttman MA, Ozturk C, Jones M, Thompson RB, Wright VJ, Schenke WH, DeSilva R, Aviles RJ, Raman VK, Slack MC, Lederman RJ (2005) Real-time magnetic resonance imaging-guided stenting of aortic coarctation with commercially available catheter devices in swine. Circulation 112(5):699–706PubMedCrossRef
126.
go back to reference Spuentrup E, Ruebben A, Schaeffter T, Manning WJ, Gunther RW, Buecker A (2002) Magnetic resonance–guided coronary artery stent placement in a swine model. Circulation 105(7):874–879PubMedCrossRef Spuentrup E, Ruebben A, Schaeffter T, Manning WJ, Gunther RW, Buecker A (2002) Magnetic resonance–guided coronary artery stent placement in a swine model. Circulation 105(7):874–879PubMedCrossRef
127.
go back to reference Buecker A, Neuerburg JM, Adam GB, Glowinski A, Schaeffter T, Rasche V, van Vaals JJ, Molgaard-Nielsen A, Guenther RW (2000) Real-time MR fluoroscopy for MR-guided iliac artery stent placement. J Magn Reson Imaging 12(4):616–622PubMedCrossRef Buecker A, Neuerburg JM, Adam GB, Glowinski A, Schaeffter T, Rasche V, van Vaals JJ, Molgaard-Nielsen A, Guenther RW (2000) Real-time MR fluoroscopy for MR-guided iliac artery stent placement. J Magn Reson Imaging 12(4):616–622PubMedCrossRef
128.
go back to reference Dion YM, Ben El Kadi H, Boudoux C, Gourdon J, Chakfe N, Traore A, Moisan C (2000) Endovascular procedures under near-real-time magnetic resonance imaging guidance: an experimental feasibility study. J Vasc Surg 32(5):1006–1014PubMedCrossRef Dion YM, Ben El Kadi H, Boudoux C, Gourdon J, Chakfe N, Traore A, Moisan C (2000) Endovascular procedures under near-real-time magnetic resonance imaging guidance: an experimental feasibility study. J Vasc Surg 32(5):1006–1014PubMedCrossRef
129.
go back to reference Hamer OW, Borisch I, Paetzel C, Nitz WR, Seitz J, Feuerbach S, Zorger N (2006) In vitro evaluation of stent patency and in-stent stenoses in 10 metallic stents using MR angiography. Br J Radiol 79(944):636–643PubMedCrossRef Hamer OW, Borisch I, Paetzel C, Nitz WR, Seitz J, Feuerbach S, Zorger N (2006) In vitro evaluation of stent patency and in-stent stenoses in 10 metallic stents using MR angiography. Br J Radiol 79(944):636–643PubMedCrossRef
130.
go back to reference Boll DT, Lewin JS, Duerk JL, Smith D, Subramanyan K, Merkle EM (2004) Assessment of automatic vessel tracking techniques in preoperative planning of transluminal aortic stent graft implantation. J Comput Assist Tomogr 28(2):278–285PubMedCrossRef Boll DT, Lewin JS, Duerk JL, Smith D, Subramanyan K, Merkle EM (2004) Assessment of automatic vessel tracking techniques in preoperative planning of transluminal aortic stent graft implantation. J Comput Assist Tomogr 28(2):278–285PubMedCrossRef
131.
go back to reference Raman VK, Karmarkar PV, Guttman MA, Dick AJ, Peters DC, Ozturk C, Pessanha BS, Thompson RB, Raval AN, DeSilva R, Aviles RJ, Atalar E, McVeigh ER, Lederman RJ (2005) Real-time magnetic resonance-guided endovascular repair of experimental abdominal aortic aneurysm in swine. J Am Coll Cardiol 45(12):2069–2077PubMedCrossRef Raman VK, Karmarkar PV, Guttman MA, Dick AJ, Peters DC, Ozturk C, Pessanha BS, Thompson RB, Raval AN, DeSilva R, Aviles RJ, Atalar E, McVeigh ER, Lederman RJ (2005) Real-time magnetic resonance-guided endovascular repair of experimental abdominal aortic aneurysm in swine. J Am Coll Cardiol 45(12):2069–2077PubMedCrossRef
132.
go back to reference Mahnken AH, Chalabi K, Jalali F, Gunther RW, Buecker A (2004) Magnetic resonance-guided placement of aortic stents grafts: feasibility with real-time magnetic resonance fluoroscopy. J Vasc Interv Radiol 15(2 Pt 1):189–195PubMedCrossRef Mahnken AH, Chalabi K, Jalali F, Gunther RW, Buecker A (2004) Magnetic resonance-guided placement of aortic stents grafts: feasibility with real-time magnetic resonance fluoroscopy. J Vasc Interv Radiol 15(2 Pt 1):189–195PubMedCrossRef
133.
go back to reference Kos S, Huegli R, Hofmann E, Quick HH, Kuehl H, Aker S, Kaiser GM, Borm PJ, Jacob AL, Bilecen D (2009) First magnetic resonance imaging-guided aortic stenting and cava filter placement using a polyetheretherketone-based magnetic resonance imaging-compatible guidewire in swine: proof of concept. Cardiovasc Intervent Radiol 32(3):514–521PubMedCrossRef Kos S, Huegli R, Hofmann E, Quick HH, Kuehl H, Aker S, Kaiser GM, Borm PJ, Jacob AL, Bilecen D (2009) First magnetic resonance imaging-guided aortic stenting and cava filter placement using a polyetheretherketone-based magnetic resonance imaging-compatible guidewire in swine: proof of concept. Cardiovasc Intervent Radiol 32(3):514–521PubMedCrossRef
134.
go back to reference Bartels LW, Smits HF, Bakker CJ, Viergever MA (2001) MR imaging of vascular stents: effects of susceptibility, flow, and radiofrequency eddy currents. J Vasc Interv Radiol 12(3):365–371PubMedCrossRef Bartels LW, Smits HF, Bakker CJ, Viergever MA (2001) MR imaging of vascular stents: effects of susceptibility, flow, and radiofrequency eddy currents. J Vasc Interv Radiol 12(3):365–371PubMedCrossRef
135.
go back to reference Bucker A, Neuerburg JM, Adam GB, Glowinski A, Schaeffter T, Rasche V, van Vaals JJ, Gunther RW (2001) Real-time MR Guidance for inferior vena cava filter placement in an animal model. J Vasc Interv Radiol 12(6):753–756PubMedCrossRef Bucker A, Neuerburg JM, Adam GB, Glowinski A, Schaeffter T, Rasche V, van Vaals JJ, Gunther RW (2001) Real-time MR Guidance for inferior vena cava filter placement in an animal model. J Vasc Interv Radiol 12(6):753–756PubMedCrossRef
136.
go back to reference Kuehne T, Saeed M, Reddy G, Akbari H, Gleason K, Turner D, Teitel D, Moore P, Higgins CB (2001) Sequential magnetic resonance monitoring of pulmonary flow with endovascular stents placed across the pulmonary valve in growing Swine. Circulation 104(19):2363–2368PubMedCrossRef Kuehne T, Saeed M, Reddy G, Akbari H, Gleason K, Turner D, Teitel D, Moore P, Higgins CB (2001) Sequential magnetic resonance monitoring of pulmonary flow with endovascular stents placed across the pulmonary valve in growing Swine. Circulation 104(19):2363–2368PubMedCrossRef
137.
go back to reference Kuehne T, Yilmaz S, Steendijk P, Moore P, Groenink M, Saaed M, Weber O, Higgins CB, Ewert P, Fleck E, Nagel E, Schulze-Neick I, Lange P (2004) Magnetic resonance imaging analysis of right ventricular pressure-volume loops: in vivo validation and clinical application in patients with pulmonary hypertension. Circulation 110(14):2010–2016PubMedCrossRef Kuehne T, Yilmaz S, Steendijk P, Moore P, Groenink M, Saaed M, Weber O, Higgins CB, Ewert P, Fleck E, Nagel E, Schulze-Neick I, Lange P (2004) Magnetic resonance imaging analysis of right ventricular pressure-volume loops: in vivo validation and clinical application in patients with pulmonary hypertension. Circulation 110(14):2010–2016PubMedCrossRef
138.
go back to reference Krueger JJ, Ewert P, Yilmaz S, Gelernter D, Peters B, Pietzner K, Bornstedt A, Schnackenburg B, Abdul-Khaliq H, Fleck E, Nagel E, Berger F, Kuehne T (2006) Magnetic resonance imaging-guided balloon angioplasty of coarctation of the aorta: a pilot study. Circulation 113(8):1093–1100PubMedCrossRef Krueger JJ, Ewert P, Yilmaz S, Gelernter D, Peters B, Pietzner K, Bornstedt A, Schnackenburg B, Abdul-Khaliq H, Fleck E, Nagel E, Berger F, Kuehne T (2006) Magnetic resonance imaging-guided balloon angioplasty of coarctation of the aorta: a pilot study. Circulation 113(8):1093–1100PubMedCrossRef
139.
go back to reference Kuehne T, Yilmaz S, Meinus C, Moore P, Saeed M, Weber O, Higgins CB, Blank T, Elsaesser E, Schnackenburg B, Ewert P, Lange PE, Nagel E (2004) Magnetic resonance imaging-guided transcatheter implantation of a prosthetic valve in aortic valve position: feasibility study in swine. J Am Coll Cardiol 44(11):2247–2249PubMedCrossRef Kuehne T, Yilmaz S, Meinus C, Moore P, Saeed M, Weber O, Higgins CB, Blank T, Elsaesser E, Schnackenburg B, Ewert P, Lange PE, Nagel E (2004) Magnetic resonance imaging-guided transcatheter implantation of a prosthetic valve in aortic valve position: feasibility study in swine. J Am Coll Cardiol 44(11):2247–2249PubMedCrossRef
140.
go back to reference McVeigh ER, Guttman MA, Lederman RJ, Li M, Kocaturk O, Hunt T, Kozlov S, Horvath KA (2006) Real-time interactive MRI-guided cardiac surgery: aortic valve replacement using a direct apical approach. Magn Reson Med 56(5):958–964PubMedCrossRef McVeigh ER, Guttman MA, Lederman RJ, Li M, Kocaturk O, Hunt T, Kozlov S, Horvath KA (2006) Real-time interactive MRI-guided cardiac surgery: aortic valve replacement using a direct apical approach. Magn Reson Med 56(5):958–964PubMedCrossRef
141.
go back to reference Rickers C, Jerosch-Herold M, Hu X, Murthy N, Wang X, Kong H, Seethamraju RT, Weil J, Wilke NM (2003) Magnetic resonance image-guided transcatheter closure of atrial septal defects. Circulation 107(1):132–138PubMedCrossRef Rickers C, Jerosch-Herold M, Hu X, Murthy N, Wang X, Kong H, Seethamraju RT, Weil J, Wilke NM (2003) Magnetic resonance image-guided transcatheter closure of atrial septal defects. Circulation 107(1):132–138PubMedCrossRef
142.
go back to reference Shellock FG, Valencerina S (2005) Septal repair implants: evaluation of magnetic resonance imaging safety at 3 T. Magn Reson Imaging 23(10):1021–1025PubMedCrossRef Shellock FG, Valencerina S (2005) Septal repair implants: evaluation of magnetic resonance imaging safety at 3 T. Magn Reson Imaging 23(10):1021–1025PubMedCrossRef
143.
go back to reference Babu-Narayan SV, Goktekin O, Moon JC, Broberg CS, Pantely GA, Pennell DJ, Gatzoulis MA, Kilner PJ (2005) Late gadolinium enhancement cardiovascular magnetic resonance of the systemic right ventricle in adults with previous atrial redirection surgery for transposition of the great arteries. Circulation 111(16):2091–2098PubMedCrossRef Babu-Narayan SV, Goktekin O, Moon JC, Broberg CS, Pantely GA, Pennell DJ, Gatzoulis MA, Kilner PJ (2005) Late gadolinium enhancement cardiovascular magnetic resonance of the systemic right ventricle in adults with previous atrial redirection surgery for transposition of the great arteries. Circulation 111(16):2091–2098PubMedCrossRef
144.
go back to reference Nazarian S, Bluemke DA, Lardo AC, Zviman MM, Watkins SP, Dickfeld TL, Meininger GR, Roguin A, Calkins H, Tomaselli GF, Weiss RG, Berger RD, Lima JA, Halperin HR (2005) Magnetic resonance assessment of the substrate for inducible ventricular tachycardia in nonischemic cardiomyopathy. Circulation 112(18):2821–2825PubMedCrossRef Nazarian S, Bluemke DA, Lardo AC, Zviman MM, Watkins SP, Dickfeld TL, Meininger GR, Roguin A, Calkins H, Tomaselli GF, Weiss RG, Berger RD, Lima JA, Halperin HR (2005) Magnetic resonance assessment of the substrate for inducible ventricular tachycardia in nonischemic cardiomyopathy. Circulation 112(18):2821–2825PubMedCrossRef
145.
go back to reference Carrillo A, Duerk JL, Lewin JS, Wilson DL (2000) Semiautomatic 3-D image registration as applied to interventional MRI liver cancer treatment. IEEE Trans Med Imaging 19(3):175–185PubMedCrossRef Carrillo A, Duerk JL, Lewin JS, Wilson DL (2000) Semiautomatic 3-D image registration as applied to interventional MRI liver cancer treatment. IEEE Trans Med Imaging 19(3):175–185PubMedCrossRef
146.
go back to reference de Zwart JA, Vimeux FC, Palussiere J, Salomir R, Quesson B, Delalande C, Moonen CT (2001) On-line correction and visualization of motion during MRI-controlled hyperthermia. Magn Reson Med 45(1):128–137PubMedCrossRef de Zwart JA, Vimeux FC, Palussiere J, Salomir R, Quesson B, Delalande C, Moonen CT (2001) On-line correction and visualization of motion during MRI-controlled hyperthermia. Magn Reson Med 45(1):128–137PubMedCrossRef
147.
go back to reference Quesson B, de Zwart JA, Moonen CT (2000) Magnetic resonance temperature imaging for guidance of thermotherapy. J Magn Reson Imaging 12(4):525–533PubMedCrossRef Quesson B, de Zwart JA, Moonen CT (2000) Magnetic resonance temperature imaging for guidance of thermotherapy. J Magn Reson Imaging 12(4):525–533PubMedCrossRef
148.
go back to reference Salomir R, Vimeux FC, de Zwart JA, Grenier N, Moonen CT (2000) Hyperthermia by MR-guided focused ultrasound: accurate temperature control based on fast MRI and a physical model of local energy deposition and heat conduction. Magn Reson Med 43(3):342–347PubMedCrossRef Salomir R, Vimeux FC, de Zwart JA, Grenier N, Moonen CT (2000) Hyperthermia by MR-guided focused ultrasound: accurate temperature control based on fast MRI and a physical model of local energy deposition and heat conduction. Magn Reson Med 43(3):342–347PubMedCrossRef
149.
go back to reference Sinha S, Oshiro T, Sinha U, Lufkin R (1997) Phase imaging on a.2-T MR scanner: application to temperature monitoring during ablation procedures. J Magn Reson Imaging 7(5):918–928PubMedCrossRef Sinha S, Oshiro T, Sinha U, Lufkin R (1997) Phase imaging on a.2-T MR scanner: application to temperature monitoring during ablation procedures. J Magn Reson Imaging 7(5):918–928PubMedCrossRef
150.
go back to reference Vogl TJ, Mack MG, Muller PK, Straub R, Engelmann K, Eichler K (1999) Interventional MR: interstitial therapy. Eur Radiol 9(8):1479–1487PubMedCrossRef Vogl TJ, Mack MG, Muller PK, Straub R, Engelmann K, Eichler K (1999) Interventional MR: interstitial therapy. Eur Radiol 9(8):1479–1487PubMedCrossRef
151.
go back to reference Peters DC, Wylie JV, Hauser TH, Kissinger KV, Botnar RM, Essebag V, Josephson ME, Manning WJ (2007) Detection of pulmonary vein and left atrial scar after catheter ablation with three-dimensional navigator-gated delayed enhancement MR imaging: initial experience. Radiology 243(3):690–695PubMedCrossRef Peters DC, Wylie JV, Hauser TH, Kissinger KV, Botnar RM, Essebag V, Josephson ME, Manning WJ (2007) Detection of pulmonary vein and left atrial scar after catheter ablation with three-dimensional navigator-gated delayed enhancement MR imaging: initial experience. Radiology 243(3):690–695PubMedCrossRef
152.
go back to reference Reddy VY, Schmidt EJ, Holmvang G, Fung M (2008) Arrhythmia recurrence after atrial fibrillation ablation: can magnetic resonance imaging identify gaps in atrial ablation lines? J Cardiovasc Electrophysiol 19(4):434–437PubMedCrossRef Reddy VY, Schmidt EJ, Holmvang G, Fung M (2008) Arrhythmia recurrence after atrial fibrillation ablation: can magnetic resonance imaging identify gaps in atrial ablation lines? J Cardiovasc Electrophysiol 19(4):434–437PubMedCrossRef
153.
go back to reference McGann CJ, Kholmovski EG, Oakes RS, Blauer JJ, Daccarett M, Segerson N, Airey KJ, Akoum N, Fish E, Badger TJ, DiBella EV, Parker D, MacLeod RS, Marrouche NF (2008) New magnetic resonance imaging-based method for defining the extent of left atrial wall injury after the ablation of atrial fibrillation. J Am Coll Cardiol 52(15):1263–1271PubMedCrossRef McGann CJ, Kholmovski EG, Oakes RS, Blauer JJ, Daccarett M, Segerson N, Airey KJ, Akoum N, Fish E, Badger TJ, DiBella EV, Parker D, MacLeod RS, Marrouche NF (2008) New magnetic resonance imaging-based method for defining the extent of left atrial wall injury after the ablation of atrial fibrillation. J Am Coll Cardiol 52(15):1263–1271PubMedCrossRef
154.
go back to reference Bello D, Fieno DS, Kim RJ, Pereles FS, Passman R, Song G, Kadish AH, Goldberger JJ (2005) Infarct morphology identifies patients with substrate for sustained ventricular tachycardia. J Am Coll Cardiol 45(7):1104–1108PubMedCrossRef Bello D, Fieno DS, Kim RJ, Pereles FS, Passman R, Song G, Kadish AH, Goldberger JJ (2005) Infarct morphology identifies patients with substrate for sustained ventricular tachycardia. J Am Coll Cardiol 45(7):1104–1108PubMedCrossRef
155.
go back to reference Schmidt A, Azevedo CF, Cheng A, Gupta SN, Bluemke DA, Foo TK, Gerstenblith G, Weiss RG, Marban E, Tomaselli GF, Lima JA, Wu KC (2007) Infarct tissue heterogeneity by magnetic resonance imaging identifies enhanced cardiac arrhythmia susceptibility in patients with left ventricular dysfunction. Circulation 115(15):2006–2014PubMedCrossRef Schmidt A, Azevedo CF, Cheng A, Gupta SN, Bluemke DA, Foo TK, Gerstenblith G, Weiss RG, Marban E, Tomaselli GF, Lima JA, Wu KC (2007) Infarct tissue heterogeneity by magnetic resonance imaging identifies enhanced cardiac arrhythmia susceptibility in patients with left ventricular dysfunction. Circulation 115(15):2006–2014PubMedCrossRef
156.
go back to reference Dong J, Dickfeld T, Dalal D, Cheema A, Vasamreddy CR, Henrikson CA, Marine JE, Halperin HR, Berger RD, Lima JA, Bluemke DA, Calkins H (2006) Initial experience in the use of integrated electroanatomic mapping with three-dimensional MR/CT images to guide catheter ablation of atrial fibrillation. J Cardiovasc Electrophysiol 17(5):459–466PubMedCrossRef Dong J, Dickfeld T, Dalal D, Cheema A, Vasamreddy CR, Henrikson CA, Marine JE, Halperin HR, Berger RD, Lima JA, Bluemke DA, Calkins H (2006) Initial experience in the use of integrated electroanatomic mapping with three-dimensional MR/CT images to guide catheter ablation of atrial fibrillation. J Cardiovasc Electrophysiol 17(5):459–466PubMedCrossRef
157.
go back to reference Mansour M, Refaat M, Heist EK, Mela T, Cury R, Holmvang G, Ruskin JN (2006) Three-dimensional anatomy of the left atrium by magnetic resonance angiography: implications for catheter ablation for atrial fibrillation. J Cardiovasc Electrophysiol 17(7):719–723PubMedCrossRef Mansour M, Refaat M, Heist EK, Mela T, Cury R, Holmvang G, Ruskin JN (2006) Three-dimensional anatomy of the left atrium by magnetic resonance angiography: implications for catheter ablation for atrial fibrillation. J Cardiovasc Electrophysiol 17(7):719–723PubMedCrossRef
158.
go back to reference Kenigsberg DN, Lee BP, Grizzard JD, Ellenbogen KA, Wood MA (2007) Accuracy of intracardiac echocardiography for assessing the esophageal course along the posterior left atrium: a comparison to magnetic resonance imaging. J Cardiovasc Electrophysiol 18(2):169–173PubMedCrossRef Kenigsberg DN, Lee BP, Grizzard JD, Ellenbogen KA, Wood MA (2007) Accuracy of intracardiac echocardiography for assessing the esophageal course along the posterior left atrium: a comparison to magnetic resonance imaging. J Cardiovasc Electrophysiol 18(2):169–173PubMedCrossRef
159.
go back to reference Arepally A, Karmarkar PV, Weiss C, Rodriguez ER, Lederman RJ, Atalar E (2005) Magnetic resonance image-guided trans-septal puncture in a swine heart. J Magn Reson Imaging 21(4):463–467PubMedCrossRef Arepally A, Karmarkar PV, Weiss C, Rodriguez ER, Lederman RJ, Atalar E (2005) Magnetic resonance image-guided trans-septal puncture in a swine heart. J Magn Reson Imaging 21(4):463–467PubMedCrossRef
160.
go back to reference Raval AN, Karmarkar PV, Guttman MA, Ozturk C, Desilva R, Aviles RJ, Wright VJ, Schenke WH, Atalar E, McVeigh ER, Lederman RJ (2006) Real-time MRI guided atrial septal puncture and balloon septostomy in swine. Catheter Cardiovasc Interv 67(4):637–643PubMedCrossRef Raval AN, Karmarkar PV, Guttman MA, Ozturk C, Desilva R, Aviles RJ, Wright VJ, Schenke WH, Atalar E, McVeigh ER, Lederman RJ (2006) Real-time MRI guided atrial septal puncture and balloon septostomy in swine. Catheter Cardiovasc Interv 67(4):637–643PubMedCrossRef
161.
go back to reference Schalla S, Saeed M, Higgins CB, Martin A, Weber O, Moore P (2003) Magnetic resonance–guided cardiac catheterization in a swine model of atrial septal defect. Circulation 108(15):1865–1870PubMedCrossRef Schalla S, Saeed M, Higgins CB, Martin A, Weber O, Moore P (2003) Magnetic resonance–guided cardiac catheterization in a swine model of atrial septal defect. Circulation 108(15):1865–1870PubMedCrossRef
162.
go back to reference Omeish A, Hijazi ZM (2001) Transcatheter closure of atrial septal defects in children & adults using the Amplatzer Septal Occluder. J Interv Cardiol 14(1):37–44PubMedCrossRef Omeish A, Hijazi ZM (2001) Transcatheter closure of atrial septal defects in children & adults using the Amplatzer Septal Occluder. J Interv Cardiol 14(1):37–44PubMedCrossRef
163.
go back to reference Kersting-Sommerhoff BA, Diethelm L, Stanger P, Dery R, Higashino SM, Higgins SS, Higgins CB (1990) Evaluation of complex congenital ventricular anomalies with magnetic resonance imaging. Am Heart J 120(1):133–142PubMedCrossRef Kersting-Sommerhoff BA, Diethelm L, Stanger P, Dery R, Higashino SM, Higgins SS, Higgins CB (1990) Evaluation of complex congenital ventricular anomalies with magnetic resonance imaging. Am Heart J 120(1):133–142PubMedCrossRef
164.
go back to reference Buecker A, Adam GB, Neuerburg JM, Kinzel S, Glowinski A, Schaeffter T, Rasche V, van Vaals JJ, Guenther RW (2002) Simultaneous real-time visualization of the catheter tip and vascular anatomy for MR-guided PTA of iliac arteries in an animal model. J Magn Reson Imaging 16(2):201–208PubMedCrossRef Buecker A, Adam GB, Neuerburg JM, Kinzel S, Glowinski A, Schaeffter T, Rasche V, van Vaals JJ, Guenther RW (2002) Simultaneous real-time visualization of the catheter tip and vascular anatomy for MR-guided PTA of iliac arteries in an animal model. J Magn Reson Imaging 16(2):201–208PubMedCrossRef
165.
go back to reference Buecker A, Spuentrup E, Grabitz R, Freudenthal F, Muehler EG, Schaeffter T, van Vaals JJ, Gunther RW (2002) Magnetic resonance-guided placement of atrial septal closure device in animal model of patent foramen ovale. Circulation 106(4):511–515PubMedCrossRef Buecker A, Spuentrup E, Grabitz R, Freudenthal F, Muehler EG, Schaeffter T, van Vaals JJ, Gunther RW (2002) Magnetic resonance-guided placement of atrial septal closure device in animal model of patent foramen ovale. Circulation 106(4):511–515PubMedCrossRef
166.
go back to reference Schalla S, Saeed M, Higgins CB, Weber O, Martin A, Moore P (2005) Balloon sizing and transcatheter closure of acute atrial septal defects guided by magnetic resonance fluoroscopy: assessment and validation in a large animal model. J Magn Reson Imaging 21(3):204–211PubMedCrossRef Schalla S, Saeed M, Higgins CB, Weber O, Martin A, Moore P (2005) Balloon sizing and transcatheter closure of acute atrial septal defects guided by magnetic resonance fluoroscopy: assessment and validation in a large animal model. J Magn Reson Imaging 21(3):204–211PubMedCrossRef
167.
go back to reference Kuehne T, Yilmaz S, Schulze-Neick I, Wellnhofer E, Ewert P, Nagel E, Lange P (2005) Magnetic resonance imaging guided catheterisation for assessment of pulmonary vascular resistance: in vivo validation and clinical application in patients with pulmonary hypertension. Heart 91(8):1064–1069PubMedCrossRef Kuehne T, Yilmaz S, Schulze-Neick I, Wellnhofer E, Ewert P, Nagel E, Lange P (2005) Magnetic resonance imaging guided catheterisation for assessment of pulmonary vascular resistance: in vivo validation and clinical application in patients with pulmonary hypertension. Heart 91(8):1064–1069PubMedCrossRef
168.
go back to reference Arepally A, Karmarkar PV, Weiss C, Atalar E (2006) Percutaneous MR imaging-guided transvascular access of mesenteric venous system: study in swine model. Radiology 238(1):113–118PubMedCrossRef Arepally A, Karmarkar PV, Weiss C, Atalar E (2006) Percutaneous MR imaging-guided transvascular access of mesenteric venous system: study in swine model. Radiology 238(1):113–118PubMedCrossRef
169.
go back to reference Dick AJ, Raman VK, Raval AN, Guttman MA, Thompson RB, Ozturk C, Peters DC, Stine AM, Wright VJ, Schenke WH, Lederman RJ (2005) Invasive human magnetic resonance imaging: feasibility during revascularization in a combined XMR suite. Catheter Cardiovasc Interv 64(3):265–274PubMedCrossRef Dick AJ, Raman VK, Raval AN, Guttman MA, Thompson RB, Ozturk C, Peters DC, Stine AM, Wright VJ, Schenke WH, Lederman RJ (2005) Invasive human magnetic resonance imaging: feasibility during revascularization in a combined XMR suite. Catheter Cardiovasc Interv 64(3):265–274PubMedCrossRef
170.
go back to reference Stamm C, Kleine HD, Choi YH, Dunkelmann S, Lauffs JA, Lorenzen B, David A, Liebold A, Nienaber C, Zurakowski D, Freund M, Steinhoff G (2007) Intramyocardial delivery of CD133+ bone marrow cells and coronary artery bypass grafting for chronic ischemic heart disease: safety and efficacy studies. J Thorac Cardiovasc Surg 133(3):717–725PubMedCrossRef Stamm C, Kleine HD, Choi YH, Dunkelmann S, Lauffs JA, Lorenzen B, David A, Liebold A, Nienaber C, Zurakowski D, Freund M, Steinhoff G (2007) Intramyocardial delivery of CD133+ bone marrow cells and coronary artery bypass grafting for chronic ischemic heart disease: safety and efficacy studies. J Thorac Cardiovasc Surg 133(3):717–725PubMedCrossRef
171.
go back to reference Allen KB, Dowling RD, Fudge TL, Schoettle GP, Selinger SL, Gangahar DM, Angell WW, Petracek MR, Shaar CJ, O’Neill WW (1999) Comparison of transmyocardial revascularization with medical therapy in patients with refractory angina. N Engl J Med 341(14):1029–1036PubMedCrossRef Allen KB, Dowling RD, Fudge TL, Schoettle GP, Selinger SL, Gangahar DM, Angell WW, Petracek MR, Shaar CJ, O’Neill WW (1999) Comparison of transmyocardial revascularization with medical therapy in patients with refractory angina. N Engl J Med 341(14):1029–1036PubMedCrossRef
172.
go back to reference Kleiman NS, Patel NC, Allen KB, Simons M, Yla-Herttuala S, Griffin E, Dzau VJ (2003) Evolving revascularization approaches for myocardial ischemia. Am J Cardiol 92(9B):9N–17NPubMedCrossRef Kleiman NS, Patel NC, Allen KB, Simons M, Yla-Herttuala S, Griffin E, Dzau VJ (2003) Evolving revascularization approaches for myocardial ischemia. Am J Cardiol 92(9B):9N–17NPubMedCrossRef
173.
go back to reference Laham RJ, Sellke FW, Edelman ER, Pearlman JD, Ware JA, Brown DL, Gold JP, Simons M (1999) Local perivascular delivery of basic fibroblast growth factor in patients undergoing coronary bypass surgery: results of a phase I randomized, double-blind, placebo-controlled trial. Circulation 100(18):1865–1871PubMed Laham RJ, Sellke FW, Edelman ER, Pearlman JD, Ware JA, Brown DL, Gold JP, Simons M (1999) Local perivascular delivery of basic fibroblast growth factor in patients undergoing coronary bypass surgery: results of a phase I randomized, double-blind, placebo-controlled trial. Circulation 100(18):1865–1871PubMed
174.
go back to reference Ruel M, Laham RJ, Parker JA, Post MJ, Ware JA, Simons M, Sellke FW (2002) Long-term effects of surgical angiogenic therapy with fibroblast growth factor 2 protein. J Thorac Cardiovasc Surg 124(1):28–34PubMedCrossRef Ruel M, Laham RJ, Parker JA, Post MJ, Ware JA, Simons M, Sellke FW (2002) Long-term effects of surgical angiogenic therapy with fibroblast growth factor 2 protein. J Thorac Cardiovasc Surg 124(1):28–34PubMedCrossRef
175.
go back to reference Simons M, Bonow RO, Chronos NA, Cohen DJ, Giordano FJ, Hammond HK, Laham RJ, Li W, Pike M, Sellke FW, Stegmann TJ, Udelson JE, Rosengart TK (2000) Clinical trials in coronary angiogenesis: issues, problems, consensus: an expert panel summary. Circulation 102(11):E73–E86PubMed Simons M, Bonow RO, Chronos NA, Cohen DJ, Giordano FJ, Hammond HK, Laham RJ, Li W, Pike M, Sellke FW, Stegmann TJ, Udelson JE, Rosengart TK (2000) Clinical trials in coronary angiogenesis: issues, problems, consensus: an expert panel summary. Circulation 102(11):E73–E86PubMed
176.
go back to reference Menasche P, Alfieri O, Janssens S, McKenna W, Reichenspurner H, Trinquart L, Vilquin JT, Marolleau JP, Seymour B, Larghero J, Lake S, Chatellier G, Solomon S, Desnos M, Hagege AA (2008) The myoblast autologous grafting in ischemic cardiomyopathy (MAGIC) trial: first randomized placebo-controlled study of myoblast transplantation. Circulation 117(9):1189–1200PubMedCrossRef Menasche P, Alfieri O, Janssens S, McKenna W, Reichenspurner H, Trinquart L, Vilquin JT, Marolleau JP, Seymour B, Larghero J, Lake S, Chatellier G, Solomon S, Desnos M, Hagege AA (2008) The myoblast autologous grafting in ischemic cardiomyopathy (MAGIC) trial: first randomized placebo-controlled study of myoblast transplantation. Circulation 117(9):1189–1200PubMedCrossRef
177.
go back to reference Freyman T, Polin G, Osman H, Crary J, Lu M, Cheng L, Palasis M, Wilensky RL (2006) A quantitative, randomized study evaluating three methods of mesenchymal stem cell delivery following myocardial infarction. Eur Heart J 27(9):1114–1122PubMedCrossRef Freyman T, Polin G, Osman H, Crary J, Lu M, Cheng L, Palasis M, Wilensky RL (2006) A quantitative, randomized study evaluating three methods of mesenchymal stem cell delivery following myocardial infarction. Eur Heart J 27(9):1114–1122PubMedCrossRef
178.
go back to reference Saito T, Kuang JQ, Lin CC, Chiu RC (2003) Transcoronary implantation of bone marrow stromal cells ameliorates cardiac function after myocardial infarction. J Thorac Cardiovasc Surg 126(1):114–123PubMedCrossRef Saito T, Kuang JQ, Lin CC, Chiu RC (2003) Transcoronary implantation of bone marrow stromal cells ameliorates cardiac function after myocardial infarction. J Thorac Cardiovasc Surg 126(1):114–123PubMedCrossRef
179.
go back to reference Assmus B, Honold J, Schachinger V, Britten MB, Fischer-Rasokat U, Lehmann R, Teupe C, Pistorius K, Martin H, Abolmaali ND, Tonn T, Dimmeler S, Zeiher AM (2006) Transcoronary transplantation of progenitor cells after myocardial infarction. N Engl J Med 355(12):1222–1232PubMedCrossRef Assmus B, Honold J, Schachinger V, Britten MB, Fischer-Rasokat U, Lehmann R, Teupe C, Pistorius K, Martin H, Abolmaali ND, Tonn T, Dimmeler S, Zeiher AM (2006) Transcoronary transplantation of progenitor cells after myocardial infarction. N Engl J Med 355(12):1222–1232PubMedCrossRef
180.
go back to reference Narazaki G, Uosaki H, Teranishi M, Okita K, Kim B, Matsuoka S, Yamanaka S, Yamashita JK (2008) Directed and systematic differentiation of cardiovascular cells from mouse induced pluripotent stem cells. Circulation 118(5):498–506PubMedCrossRef Narazaki G, Uosaki H, Teranishi M, Okita K, Kim B, Matsuoka S, Yamanaka S, Yamashita JK (2008) Directed and systematic differentiation of cardiovascular cells from mouse induced pluripotent stem cells. Circulation 118(5):498–506PubMedCrossRef
181.
go back to reference Hou D, Youssef EA, Brinton TJ, Zhang P, Rogers P, Price ET, Yeung AC, Johnstone BH, Yock PG, March KL (2005) Radiolabeled cell distribution after intramyocardial, intracoronary, and interstitial retrograde coronary venous delivery: implications for current clinical trials. Circulation 112(9 Suppl):I150–I156PubMed Hou D, Youssef EA, Brinton TJ, Zhang P, Rogers P, Price ET, Yeung AC, Johnstone BH, Yock PG, March KL (2005) Radiolabeled cell distribution after intramyocardial, intracoronary, and interstitial retrograde coronary venous delivery: implications for current clinical trials. Circulation 112(9 Suppl):I150–I156PubMed
182.
go back to reference Klein HM, Ghodsizad A, Marktanner R, Poll L, Voelkel T, Mohammad Hasani MR, Piechaczek C, Feifel N, Stockschlaeder M, Burchardt ER, Kar BJ, Gregoric I, Gams E (2007) Intramyocardial implantation of CD133+ stem cells improved cardiac function without bypass surgery. Heart Surg Forum 10(1):E66–E69PubMedCrossRef Klein HM, Ghodsizad A, Marktanner R, Poll L, Voelkel T, Mohammad Hasani MR, Piechaczek C, Feifel N, Stockschlaeder M, Burchardt ER, Kar BJ, Gregoric I, Gams E (2007) Intramyocardial implantation of CD133+ stem cells improved cardiac function without bypass surgery. Heart Surg Forum 10(1):E66–E69PubMedCrossRef
183.
go back to reference Simonetti O, Lucarini G, Brancorsini D, Nita P, Bernardini ML, Biagini G, Offidani A (2002) Immunohistochemical expression of vascular endothelial growth factor, matrix metalloproteinase 2, and matrix metalloproteinase 9 in cutaneous melanocytic lesions. Cancer 95(9):1963–1970PubMedCrossRef Simonetti O, Lucarini G, Brancorsini D, Nita P, Bernardini ML, Biagini G, Offidani A (2002) Immunohistochemical expression of vascular endothelial growth factor, matrix metalloproteinase 2, and matrix metalloproteinase 9 in cutaneous melanocytic lesions. Cancer 95(9):1963–1970PubMedCrossRef
184.
go back to reference Pearlman JD, Laham RJ, Simons M (2000) Coronary angiogenesis: detection in vivo with MR imaging sensitive to collateral neocirculation–preliminary study in pigs. Radiology 214(3):801–807PubMed Pearlman JD, Laham RJ, Simons M (2000) Coronary angiogenesis: detection in vivo with MR imaging sensitive to collateral neocirculation–preliminary study in pigs. Radiology 214(3):801–807PubMed
185.
go back to reference Post MJ, Sato K, Murakami M, Bao J, Tirziu D, Pearlman JD, Simons M (2006) Adenoviral PR39 improves blood flow and myocardial function in a pig model of chronic myocardial ischemia by enhancing collateral formation. Am J Physiol Regul Integr Comp Physiol 290(3):R494–R500PubMedCrossRef Post MJ, Sato K, Murakami M, Bao J, Tirziu D, Pearlman JD, Simons M (2006) Adenoviral PR39 improves blood flow and myocardial function in a pig model of chronic myocardial ischemia by enhancing collateral formation. Am J Physiol Regul Integr Comp Physiol 290(3):R494–R500PubMedCrossRef
186.
go back to reference Liu Y, Sun L, Huan Y, Zhao H, Deng J (2006) Effects of basic fibroblast growth factor microspheres on angiogenesis in ischemic myocardium and cardiac function: analysis with dobutamine cardiovascular magnetic resonance tagging. Eur J Cardiothorac Surg 30(1):103–107PubMedCrossRef Liu Y, Sun L, Huan Y, Zhao H, Deng J (2006) Effects of basic fibroblast growth factor microspheres on angiogenesis in ischemic myocardium and cardiac function: analysis with dobutamine cardiovascular magnetic resonance tagging. Eur J Cardiothorac Surg 30(1):103–107PubMedCrossRef
187.
go back to reference Dick AJ, Guttman MA, Raman VK, Peters DC, Pessanha BS, Hill JM, Smith S, Scott G, McVeigh ER, Lederman RJ (2003) Magnetic resonance fluoroscopy allows targeted delivery of mesenchymal stem cells to infarct borders in swine. Circulation 108(23):2899–2904PubMedCrossRef Dick AJ, Guttman MA, Raman VK, Peters DC, Pessanha BS, Hill JM, Smith S, Scott G, McVeigh ER, Lederman RJ (2003) Magnetic resonance fluoroscopy allows targeted delivery of mesenchymal stem cells to infarct borders in swine. Circulation 108(23):2899–2904PubMedCrossRef
188.
go back to reference Dick AJ, Lederman RJ (2005) MRI-guided myocardial cell therapy. Int J Cardiovasc Interv 7(4):165–170 Dick AJ, Lederman RJ (2005) MRI-guided myocardial cell therapy. Int J Cardiovasc Interv 7(4):165–170
189.
go back to reference Kraitchman DL, Heldman AW, Atalar E, Amado LC, Martin BJ, Pittenger MF, Hare JM, Bulte JW (2003) In vivo magnetic resonance imaging of mesenchymal stem cells in myocardial infarction. Circulation 107(18):2290–2293PubMedCrossRef Kraitchman DL, Heldman AW, Atalar E, Amado LC, Martin BJ, Pittenger MF, Hare JM, Bulte JW (2003) In vivo magnetic resonance imaging of mesenchymal stem cells in myocardial infarction. Circulation 107(18):2290–2293PubMedCrossRef
190.
go back to reference Ebert SN, Taylor DG, Nguyen HL, Kodack DP, Beyers RJ, Xu Y, Yang Z, French BA (2007) Noninvasive tracking of cardiac embryonic stem cells in vivo using magnetic resonance imaging techniques. Stem Cells 25(11):2936–2944PubMedCrossRef Ebert SN, Taylor DG, Nguyen HL, Kodack DP, Beyers RJ, Xu Y, Yang Z, French BA (2007) Noninvasive tracking of cardiac embryonic stem cells in vivo using magnetic resonance imaging techniques. Stem Cells 25(11):2936–2944PubMedCrossRef
191.
go back to reference Budde MD, Frank JA (2009) Magnetic tagging of therapeutic cells for MRI. J Nucl Med 50(2):171–174PubMedCrossRef Budde MD, Frank JA (2009) Magnetic tagging of therapeutic cells for MRI. J Nucl Med 50(2):171–174PubMedCrossRef
192.
go back to reference Arbab AS, Yocum GT, Rad AM, Khakoo AY, Fellowes V, Read EJ, Frank JA (2005) Labeling of cells with ferumoxides-protamine sulfate complexes does not inhibit function or differentiation capacity of hematopoietic or mesenchymal stem cells. NMR Biomed 18(8):553–559PubMedCrossRef Arbab AS, Yocum GT, Rad AM, Khakoo AY, Fellowes V, Read EJ, Frank JA (2005) Labeling of cells with ferumoxides-protamine sulfate complexes does not inhibit function or differentiation capacity of hematopoietic or mesenchymal stem cells. NMR Biomed 18(8):553–559PubMedCrossRef
193.
go back to reference Himes N, Min JY, Lee R, Brown C, Shea J, Huang X, Xiao YF, Morgan JP, Burstein D, Oettgen P (2004) In vivo MRI of embryonic stem cells in a mouse model of myocardial infarction. Magn Reson Med 52(5):1214–1219PubMedCrossRef Himes N, Min JY, Lee R, Brown C, Shea J, Huang X, Xiao YF, Morgan JP, Burstein D, Oettgen P (2004) In vivo MRI of embryonic stem cells in a mouse model of myocardial infarction. Magn Reson Med 52(5):1214–1219PubMedCrossRef
194.
go back to reference Cahill KS, Germain S, Byrne BJ, Walter GA (2004) Non-invasive analysis of myoblast transplants in rodent cardiac muscle. Int J Cardiovasc Imaging 20(6):593–598PubMedCrossRef Cahill KS, Germain S, Byrne BJ, Walter GA (2004) Non-invasive analysis of myoblast transplants in rodent cardiac muscle. Int J Cardiovasc Imaging 20(6):593–598PubMedCrossRef
195.
go back to reference Amado LC, Saliaris AP, Schuleri KH, St John M, Xie JS, Cattaneo S, Durand DJ, Fitton T, Kuang JQ, Stewart G, Lehrke S, Baumgartner WW, Martin BJ, Heldman AW, Hare JM (2005) Cardiac repair with intramyocardial injection of allogeneic mesenchymal stem cells after myocardial infarction. Proc Natl Acad Sci USA 102(32):11474–11479PubMedCrossRef Amado LC, Saliaris AP, Schuleri KH, St John M, Xie JS, Cattaneo S, Durand DJ, Fitton T, Kuang JQ, Stewart G, Lehrke S, Baumgartner WW, Martin BJ, Heldman AW, Hare JM (2005) Cardiac repair with intramyocardial injection of allogeneic mesenchymal stem cells after myocardial infarction. Proc Natl Acad Sci USA 102(32):11474–11479PubMedCrossRef
196.
go back to reference Moelker AD, Baks T, van den Bos EJ, van Geuns RJ, de Feyter PJ, Duncker DJ, van der Giessen WJ (2006) Reduction in infarct size, but no functional improvement after bone marrow cell administration in a porcine model of reperfused myocardial infarction. Eur Heart J 27(24):3057–3064PubMedCrossRef Moelker AD, Baks T, van den Bos EJ, van Geuns RJ, de Feyter PJ, Duncker DJ, van der Giessen WJ (2006) Reduction in infarct size, but no functional improvement after bone marrow cell administration in a porcine model of reperfused myocardial infarction. Eur Heart J 27(24):3057–3064PubMedCrossRef
197.
go back to reference Grauss RW, van Tuyn J, Steendijk P, Winter EM, Pijnappels DA, Hogers B, Gittenberger-De Groot AC, van der Geest R, van der Laarse A, de Vries AA, Schalij MJ, Atsma DE (2008) Forced myocardin expression enhances the therapeutic effect of human mesenchymal stem cells after transplantation in ischemic mouse hearts. Stem Cells 26(4):1083–1093PubMedCrossRef Grauss RW, van Tuyn J, Steendijk P, Winter EM, Pijnappels DA, Hogers B, Gittenberger-De Groot AC, van der Geest R, van der Laarse A, de Vries AA, Schalij MJ, Atsma DE (2008) Forced myocardin expression enhances the therapeutic effect of human mesenchymal stem cells after transplantation in ischemic mouse hearts. Stem Cells 26(4):1083–1093PubMedCrossRef
198.
go back to reference Hashemi SM, Ghods S, Kolodgie FD, Parcham-Azad K, Keane M, Hamamdzic D, Young R, Rippy MK, Virmani R, Litt H, Wilensky RL (2008) A placebo controlled, dose-ranging, safety study of allogenic mesenchymal stem cells injected by endomyocardial delivery after an acute myocardial infarction. Eur Heart J 29(2):251–259PubMedCrossRef Hashemi SM, Ghods S, Kolodgie FD, Parcham-Azad K, Keane M, Hamamdzic D, Young R, Rippy MK, Virmani R, Litt H, Wilensky RL (2008) A placebo controlled, dose-ranging, safety study of allogenic mesenchymal stem cells injected by endomyocardial delivery after an acute myocardial infarction. Eur Heart J 29(2):251–259PubMedCrossRef
199.
go back to reference Ziebart T, Yoon CH, Trepels T, Wietelmann A, Braun T, Kiessling F, Stein S, Grez M, Ihling C, Muhly-Reinholz M, Carmona G, Urbich C, Zeiher AM, Dimmeler S (2008) Sustained persistence of transplanted proangiogenic cells contributes to neovascularization and cardiac function after ischemia. Circ Res 103(11):1327–1334PubMedCrossRef Ziebart T, Yoon CH, Trepels T, Wietelmann A, Braun T, Kiessling F, Stein S, Grez M, Ihling C, Muhly-Reinholz M, Carmona G, Urbich C, Zeiher AM, Dimmeler S (2008) Sustained persistence of transplanted proangiogenic cells contributes to neovascularization and cardiac function after ischemia. Circ Res 103(11):1327–1334PubMedCrossRef
200.
go back to reference Amado LC, Schuleri KH, Saliaris AP, Boyle AJ, Helm R, Oskouei B, Centola M, Eneboe V, Young R, Lima JA, Lardo AC, Heldman AW, Hare JM (2006) Multimodality noninvasive imaging demonstrates in vivo cardiac regeneration after mesenchymal stem cell therapy. J Am Coll Cardiol 48(10):2116–2124PubMedCrossRef Amado LC, Schuleri KH, Saliaris AP, Boyle AJ, Helm R, Oskouei B, Centola M, Eneboe V, Young R, Lima JA, Lardo AC, Heldman AW, Hare JM (2006) Multimodality noninvasive imaging demonstrates in vivo cardiac regeneration after mesenchymal stem cell therapy. J Am Coll Cardiol 48(10):2116–2124PubMedCrossRef
201.
go back to reference Bartunek J, Vanderheyden M, Vandekerckhove B, Mansour S, De Bruyne B, De Bondt P, Van Haute I, Lootens N, Heyndrickx G, Wijns W (2005) Intracoronary injection of CD133-positive enriched bone marrow progenitor cells promotes cardiac recovery after recent myocardial infarction: feasibility and safety. Circulation 112(9 Suppl):I178–I183PubMed Bartunek J, Vanderheyden M, Vandekerckhove B, Mansour S, De Bruyne B, De Bondt P, Van Haute I, Lootens N, Heyndrickx G, Wijns W (2005) Intracoronary injection of CD133-positive enriched bone marrow progenitor cells promotes cardiac recovery after recent myocardial infarction: feasibility and safety. Circulation 112(9 Suppl):I178–I183PubMed
202.
go back to reference Janssens S, Dubois C, Bogaert J, Theunissen K, Deroose C, Desmet W, Kalantzi M, Herbots L, Sinnaeve P, Dens J, Maertens J, Rademakers F, Dymarkowski S, Gheysens O, Van Cleemput J, Bormans G, Nuyts J, Belmans A, Mortelmans L, Boogaerts M, Van de Werf F (2006) Autologous bone marrow-derived stem-cell transfer in patients with ST-segment elevation myocardial infarction: double-blind, randomised controlled trial. Lancet 367(9505):113–121PubMedCrossRef Janssens S, Dubois C, Bogaert J, Theunissen K, Deroose C, Desmet W, Kalantzi M, Herbots L, Sinnaeve P, Dens J, Maertens J, Rademakers F, Dymarkowski S, Gheysens O, Van Cleemput J, Bormans G, Nuyts J, Belmans A, Mortelmans L, Boogaerts M, Van de Werf F (2006) Autologous bone marrow-derived stem-cell transfer in patients with ST-segment elevation myocardial infarction: double-blind, randomised controlled trial. Lancet 367(9505):113–121PubMedCrossRef
203.
go back to reference Wollert KC, Meyer GP, Lotz J, Ringes-Lichtenberg S, Lippolt P, Breidenbach C, Fichtner S, Korte T, Hornig B, Messinger D, Arseniev L, Hertenstein B, Ganser A, Drexler H (2004) Intracoronary autologous bone-marrow cell transfer after myocardial infarction: the BOOST randomised controlled clinical trial. Lancet 364(9429):141–148PubMedCrossRef Wollert KC, Meyer GP, Lotz J, Ringes-Lichtenberg S, Lippolt P, Breidenbach C, Fichtner S, Korte T, Hornig B, Messinger D, Arseniev L, Hertenstein B, Ganser A, Drexler H (2004) Intracoronary autologous bone-marrow cell transfer after myocardial infarction: the BOOST randomised controlled clinical trial. Lancet 364(9429):141–148PubMedCrossRef
204.
go back to reference Schachinger V, Erbs S, Elsasser A, Haberbosch W, Hambrecht R, Holschermann H, Yu J, Corti R, Mathey DG, Hamm CW, Suselbeck T, Assmus B, Tonn T, Dimmeler S, Zeiher AM (2006) Intracoronary bone marrow-derived progenitor cells in acute myocardial infarction. N Engl J Med 355(12):1210–1221PubMedCrossRef Schachinger V, Erbs S, Elsasser A, Haberbosch W, Hambrecht R, Holschermann H, Yu J, Corti R, Mathey DG, Hamm CW, Suselbeck T, Assmus B, Tonn T, Dimmeler S, Zeiher AM (2006) Intracoronary bone marrow-derived progenitor cells in acute myocardial infarction. N Engl J Med 355(12):1210–1221PubMedCrossRef
205.
go back to reference Schachinger V, Erbs S, Elsasser A, Haberbosch W, Hambrecht R, Holschermann H, Yu J, Corti R, Mathey DG, Hamm CW, Suselbeck T, Werner N, Haase J, Neuzner J, Germing A, Mark B, Assmus B, Tonn T, Dimmeler S, Zeiher AM (2006) Improved clinical outcome after intracoronary administration of bone-marrow-derived progenitor cells in acute myocardial infarction: final 1-year results of the REPAIR-AMI trial. Eur Heart J 27(23):2775–2783PubMedCrossRef Schachinger V, Erbs S, Elsasser A, Haberbosch W, Hambrecht R, Holschermann H, Yu J, Corti R, Mathey DG, Hamm CW, Suselbeck T, Werner N, Haase J, Neuzner J, Germing A, Mark B, Assmus B, Tonn T, Dimmeler S, Zeiher AM (2006) Improved clinical outcome after intracoronary administration of bone-marrow-derived progenitor cells in acute myocardial infarction: final 1-year results of the REPAIR-AMI trial. Eur Heart J 27(23):2775–2783PubMedCrossRef
206.
go back to reference Dill T, Schachinger V, Rolf A, Mollmann S, Thiele H, Tillmanns H, Assmus B, Dimmeler S, Zeiher AM, Hamm C (2009) Intracoronary administration of bone marrow-derived progenitor cells improves left ventricular function in patients at risk for adverse remodeling after acute ST-segment elevation myocardial infarction: results of the reinfusion of enriched progenitor cells and infarct remodeling in acute myocardial infarction study (REPAIR-AMI) cardiac magnetic resonance imaging substudy. Am Heart J 157(3):541–547PubMedCrossRef Dill T, Schachinger V, Rolf A, Mollmann S, Thiele H, Tillmanns H, Assmus B, Dimmeler S, Zeiher AM, Hamm C (2009) Intracoronary administration of bone marrow-derived progenitor cells improves left ventricular function in patients at risk for adverse remodeling after acute ST-segment elevation myocardial infarction: results of the reinfusion of enriched progenitor cells and infarct remodeling in acute myocardial infarction study (REPAIR-AMI) cardiac magnetic resonance imaging substudy. Am Heart J 157(3):541–547PubMedCrossRef
207.
go back to reference Dimmeler S, Zeiher AM (2009) Cell therapy of acute myocardial infarction: open questions. Cardiology 113(3):155–160PubMedCrossRef Dimmeler S, Zeiher AM (2009) Cell therapy of acute myocardial infarction: open questions. Cardiology 113(3):155–160PubMedCrossRef
208.
go back to reference Schaefer A, Zwadlo C, Fuchs M, Meyer GP, Lippolt P, Wollert KC, Drexler H (2010) Long-term effects of intracoronary bone marrow cell transfer on diastolic function in patients after acute myocardial infarction: 5-years results from the randomized-controlled BOOST trial–an echocardiographic study. Eur J Echocardiogr 11(2):165–171PubMedCrossRef Schaefer A, Zwadlo C, Fuchs M, Meyer GP, Lippolt P, Wollert KC, Drexler H (2010) Long-term effects of intracoronary bone marrow cell transfer on diastolic function in patients after acute myocardial infarction: 5-years results from the randomized-controlled BOOST trial–an echocardiographic study. Eur J Echocardiogr 11(2):165–171PubMedCrossRef
209.
go back to reference Yousef M, Schannwell CM, Kostering M, Zeus T, Brehm M, Strauer BE (2009) The balance study: clinical benefit and long-term outcome after intracoronary autologous bone marrow cell transplantation in patients with acute myocardial infarction. J Am Coll Cardiol 53(24):2262–2269PubMedCrossRef Yousef M, Schannwell CM, Kostering M, Zeus T, Brehm M, Strauer BE (2009) The balance study: clinical benefit and long-term outcome after intracoronary autologous bone marrow cell transplantation in patients with acute myocardial infarction. J Am Coll Cardiol 53(24):2262–2269PubMedCrossRef
210.
go back to reference Vulliet PR, Greeley M, Halloran SM, MacDonald KA, Kittleson MD (2004) Intra-coronary arterial injection of mesenchymal stromal cells and microinfarction in dogs. Lancet 363(9411):783–784PubMedCrossRef Vulliet PR, Greeley M, Halloran SM, MacDonald KA, Kittleson MD (2004) Intra-coronary arterial injection of mesenchymal stromal cells and microinfarction in dogs. Lancet 363(9411):783–784PubMedCrossRef
211.
go back to reference Tossios P, Krausgrill B, Schmidt M, Fischer T, Halbach M, Fries JW, Fahnenstich S, Frommolt P, Heppelmann I, Schmidt A, Schomacker K, Fischer JH, Bloch W, Mehlhorn U, Schwinger RH, Muller-Ehmsen J (2008) Role of balloon occlusion for mononuclear bone marrow cell deposition after intracoronary injection in pigs with reperfused myocardial infarction. Eur Heart J 29(15):1911–1921PubMedCrossRef Tossios P, Krausgrill B, Schmidt M, Fischer T, Halbach M, Fries JW, Fahnenstich S, Frommolt P, Heppelmann I, Schmidt A, Schomacker K, Fischer JH, Bloch W, Mehlhorn U, Schwinger RH, Muller-Ehmsen J (2008) Role of balloon occlusion for mononuclear bone marrow cell deposition after intracoronary injection in pigs with reperfused myocardial infarction. Eur Heart J 29(15):1911–1921PubMedCrossRef
212.
go back to reference Hirsch A, Nijveldt R, van der Vleuten PA, Tio RA, van der Giessen WJ, Marques KM, Doevendans PA, Waltenberger J, Ten Berg JM, Aengevaeren WR, Biemond BJ, Tijssen JG, van Rossum AC, Piek JJ, Zijlstra F (2008) Intracoronary infusion of autologous mononuclear bone marrow cells in patients with acute myocardial infarction treated with primary PCI: pilot study of the multicenter HEBE trial. Catheter Cardiovasc Interv 71(3):273–281PubMedCrossRef Hirsch A, Nijveldt R, van der Vleuten PA, Tio RA, van der Giessen WJ, Marques KM, Doevendans PA, Waltenberger J, Ten Berg JM, Aengevaeren WR, Biemond BJ, Tijssen JG, van Rossum AC, Piek JJ, Zijlstra F (2008) Intracoronary infusion of autologous mononuclear bone marrow cells in patients with acute myocardial infarction treated with primary PCI: pilot study of the multicenter HEBE trial. Catheter Cardiovasc Interv 71(3):273–281PubMedCrossRef
213.
go back to reference Hofmann M, Wollert KC, Meyer GP, Menke A, Arseniev L, Hertenstein B, Ganser A, Knapp WH, Drexler H (2005) Monitoring of bone marrow cell homing into the infarcted human myocardium. Circulation 111(17):2198–2202PubMedCrossRef Hofmann M, Wollert KC, Meyer GP, Menke A, Arseniev L, Hertenstein B, Ganser A, Knapp WH, Drexler H (2005) Monitoring of bone marrow cell homing into the infarcted human myocardium. Circulation 111(17):2198–2202PubMedCrossRef
214.
go back to reference Ripa RS, Jorgensen E, Wang Y, Thune JJ, Nilsson JC, Sondergaard L, Johnsen HE, Kober L, Grande P, Kastrup J (2006) Stem cell mobilization induced by subcutaneous granulocyte-colony stimulating factor to improve cardiac regeneration after acute ST-elevation myocardial infarction: result of the double-blind, randomized, placebo-controlled stem cells in myocardial infarction (STEMMI) trial. Circulation 113(16):1983–1992PubMedCrossRef Ripa RS, Jorgensen E, Wang Y, Thune JJ, Nilsson JC, Sondergaard L, Johnsen HE, Kober L, Grande P, Kastrup J (2006) Stem cell mobilization induced by subcutaneous granulocyte-colony stimulating factor to improve cardiac regeneration after acute ST-elevation myocardial infarction: result of the double-blind, randomized, placebo-controlled stem cells in myocardial infarction (STEMMI) trial. Circulation 113(16):1983–1992PubMedCrossRef
215.
go back to reference Zohlnhofer D, Ott I, Mehilli J, Schomig K, Michalk F, Ibrahim T, Meisetschlager G, von Wedel J, Bollwein H, Seyfarth M, Dirschinger J, Schmitt C, Schwaiger M, Kastrati A, Schomig A (2006) Stem cell mobilization by granulocyte colony-stimulating factor in patients with acute myocardial infarction: a randomized controlled trial. Jama 295(9):1003–1010PubMedCrossRef Zohlnhofer D, Ott I, Mehilli J, Schomig K, Michalk F, Ibrahim T, Meisetschlager G, von Wedel J, Bollwein H, Seyfarth M, Dirschinger J, Schmitt C, Schwaiger M, Kastrati A, Schomig A (2006) Stem cell mobilization by granulocyte colony-stimulating factor in patients with acute myocardial infarction: a randomized controlled trial. Jama 295(9):1003–1010PubMedCrossRef
216.
go back to reference Fernandez-Aviles F, San Roman JA, Garcia-Frade J, Fernandez ME, Penarrubia MJ, de la Fuente L, Gomez-Bueno M, Cantalapiedra A, Fernandez J, Gutierrez O, Sanchez PL, Hernandez C, Sanz R, Garcia-Sancho J, Sanchez A (2004) Experimental and clinical regenerative capability of human bone marrow cells after myocardial infarction. Circ Res 95(7):742–748PubMedCrossRef Fernandez-Aviles F, San Roman JA, Garcia-Frade J, Fernandez ME, Penarrubia MJ, de la Fuente L, Gomez-Bueno M, Cantalapiedra A, Fernandez J, Gutierrez O, Sanchez PL, Hernandez C, Sanz R, Garcia-Sancho J, Sanchez A (2004) Experimental and clinical regenerative capability of human bone marrow cells after myocardial infarction. Circ Res 95(7):742–748PubMedCrossRef
217.
go back to reference Schachinger V, Assmus B, Britten MB, Honold J, Lehmann R, Teupe C, Abolmaali ND, Vogl TJ, Hofmann WK, Martin H, Dimmeler S, Zeiher AM (2004) Transplantation of progenitor cells and regeneration enhancement in acute myocardial infarction: final one-year results of the TOPCARE-AMI trial. J Am Coll Cardiol 44(8):1690–1699PubMedCrossRef Schachinger V, Assmus B, Britten MB, Honold J, Lehmann R, Teupe C, Abolmaali ND, Vogl TJ, Hofmann WK, Martin H, Dimmeler S, Zeiher AM (2004) Transplantation of progenitor cells and regeneration enhancement in acute myocardial infarction: final one-year results of the TOPCARE-AMI trial. J Am Coll Cardiol 44(8):1690–1699PubMedCrossRef
218.
go back to reference Chen SL, Fang WW, Ye F, Liu YH, Qian J, Shan SJ, Zhang JJ, Chunhua RZ, Liao LM, Lin S, Sun JP (2004) Effect on left ventricular function of intracoronary transplantation of autologous bone marrow mesenchymal stem cell in patients with acute myocardial infarction. Am J Cardiol 94(1):92–95PubMedCrossRef Chen SL, Fang WW, Ye F, Liu YH, Qian J, Shan SJ, Zhang JJ, Chunhua RZ, Liao LM, Lin S, Sun JP (2004) Effect on left ventricular function of intracoronary transplantation of autologous bone marrow mesenchymal stem cell in patients with acute myocardial infarction. Am J Cardiol 94(1):92–95PubMedCrossRef
219.
go back to reference Cleland JG, Freemantle N, Coletta AP, Clark AL (2006) Clinical trials update from the American heart association: Repair-Ami, Astami, Jelis, Mega, Revive-II, Survive, and Proactive. Eur J Heart Fail 8(1):105–110PubMedCrossRef Cleland JG, Freemantle N, Coletta AP, Clark AL (2006) Clinical trials update from the American heart association: Repair-Ami, Astami, Jelis, Mega, Revive-II, Survive, and Proactive. Eur J Heart Fail 8(1):105–110PubMedCrossRef
220.
go back to reference Marelli D, Desrosiers C, el-Alfy M, Kao RL, Chiu RC (1992) Cell transplantation for myocardial repair: an experimental approach. Cell Transpl 1(6):383–390 Marelli D, Desrosiers C, el-Alfy M, Kao RL, Chiu RC (1992) Cell transplantation for myocardial repair: an experimental approach. Cell Transpl 1(6):383–390
221.
go back to reference Taylor DA, Atkins BZ, Hungspreugs P, Jones TR, Reedy MC, Hutcheson KA, Glower DD, Kraus WE (1998) Regenerating functional myocardium: improved performance after skeletal myoblast transplantation. Nat Med 4(8):929–933PubMedCrossRef Taylor DA, Atkins BZ, Hungspreugs P, Jones TR, Reedy MC, Hutcheson KA, Glower DD, Kraus WE (1998) Regenerating functional myocardium: improved performance after skeletal myoblast transplantation. Nat Med 4(8):929–933PubMedCrossRef
222.
go back to reference Hutcheson KA, Atkins BZ, Hueman MT, Hopkins MB, Glower DD, Taylor DA (2000) Comparison of benefits on myocardial performance of cellular cardiomyoplasty with skeletal myoblasts and fibroblasts. Cell Transpl 9(3):359–368 Hutcheson KA, Atkins BZ, Hueman MT, Hopkins MB, Glower DD, Taylor DA (2000) Comparison of benefits on myocardial performance of cellular cardiomyoplasty with skeletal myoblasts and fibroblasts. Cell Transpl 9(3):359–368
223.
go back to reference Fujii T, Yau TM, Weisel RD, Ohno N, Mickle DA, Shiono N, Ozawa T, Matsubayashi K, Li RK (2003) Cell transplantation to prevent heart failure: a comparison of cell types. Ann Thorac Surg 76(6):2062–2070 (discussion 2070) Fujii T, Yau TM, Weisel RD, Ohno N, Mickle DA, Shiono N, Ozawa T, Matsubayashi K, Li RK (2003) Cell transplantation to prevent heart failure: a comparison of cell types. Ann Thorac Surg 76(6):2062–2070 (discussion 2070)
224.
go back to reference Schwarz ER, Speakman MT, Patterson M, Hale SS, Isner JM, Kedes LH, Kloner RA (2000) Evaluation of the effects of intramyocardial injection of DNA expressing vascular endothelial growth factor (VEGF) in a myocardial infarction model in the rat–angiogenesis and angioma formation. J Am Coll Cardiol 35(5):1323–1330PubMedCrossRef Schwarz ER, Speakman MT, Patterson M, Hale SS, Isner JM, Kedes LH, Kloner RA (2000) Evaluation of the effects of intramyocardial injection of DNA expressing vascular endothelial growth factor (VEGF) in a myocardial infarction model in the rat–angiogenesis and angioma formation. J Am Coll Cardiol 35(5):1323–1330PubMedCrossRef
225.
go back to reference Kang HJ, Kim HS, Zhang SY, Park KW, Cho HJ, Koo BK, Kim YJ, Soo Lee D, Sohn DW, Han KS, Oh BH, Lee MM, Park YB (2004) Effects of intracoronary infusion of peripheral blood stem-cells mobilised with granulocyte-colony stimulating factor on left ventricular systolic function and restenosis after coronary stenting in myocardial infarction: the MAGIC cell randomised clinical trial. Lancet 363(9411):751–756PubMedCrossRef Kang HJ, Kim HS, Zhang SY, Park KW, Cho HJ, Koo BK, Kim YJ, Soo Lee D, Sohn DW, Han KS, Oh BH, Lee MM, Park YB (2004) Effects of intracoronary infusion of peripheral blood stem-cells mobilised with granulocyte-colony stimulating factor on left ventricular systolic function and restenosis after coronary stenting in myocardial infarction: the MAGIC cell randomised clinical trial. Lancet 363(9411):751–756PubMedCrossRef
226.
Metadata
Title
MR fluoroscopy in vascular and cardiac interventions (review)
Authors
Maythem Saeed
Steve W. Hetts
Joey English
Mark Wilson
Publication date
01-01-2012
Publisher
Springer Netherlands
Published in
The International Journal of Cardiovascular Imaging / Issue 1/2012
Print ISSN: 1569-5794
Electronic ISSN: 1875-8312
DOI
https://doi.org/10.1007/s10554-010-9774-1

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