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Published in: The International Journal of Cardiovascular Imaging 7/2009

Open Access 01-10-2009 | Original Paper

Optimal phase for coronary interpretations and correlation of ejection fraction using late-diastole and end-diastole imaging in cardiac computed tomography angiography: implications for prospective triggering

Authors: Hussain Isma’eel, Yasmin S. Hamirani, Ramona Mehrinfar, Songshuo Mao, Naser Ahmadi, Vahid Larijani, Subu Nair, Matthew J. Budoff

Published in: The International Journal of Cardiovascular Imaging | Issue 7/2009

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Abstract

A typical acquisition protocol for multi-row detector computed tomography (MDCT) angiography is to obtain all phases of the cardiac cycle, allowing calculation of ejection fraction (EF) simultaneously with plaque burden. New MDCT protocols scanner, designed to reduce radiation, use prospectively acquired ECG gated image acquisition to obtain images at certain specific phases of the cardiac cycle with least coronary artery motion. These protocols do not we allow acquisition of functional data which involves measurement of ejection fraction requiring end-systolic and end-diastolic phases. We aimed to quantitatively identify the cardiac cycle phase that produced the optimal images as well as aimed to evaluate, if obtaining only 35% (end-systole) and 75% (as a surrogate for end-diastole) would be similar to obtaining the full cardiac cycle and calculating end diastolic volumes (EDV) and EF from the 35th and 95th percentile images. 1,085 patients with no history of coronary artery disease were included; 10 images separated by 10% of R–R interval were retrospectively constructed. Images with motion in the mid portion of RCA were graded from 1 to 3; with ‘1’ being no motion, ‘2’ if 0 to <1 mm motion, and ‘3’ if there is >1 mm motion and/or non-interpretable study. In a subgroup of 216 patients with EF > 50%, we measured left ventricular (LV) volumes in the 10 phases, and used those obtained during 25, 35, 75 and 95% phase to calculate the EF for each patient. The average heart rate (HR) for our patient group was 56.5 ± 8.4 (range 33–140). The distribution of image quality at all heart rates was 958 (88.3%) in Grade 1, 113 (10.42%) in Grade 2 and 14 (1.29%) in Grade 3 images. The area under the curve for optimum image quality (Grade 1 or 2) in patients with HR > 60 bpm for phase 75% was 0.77 ± 0.04 [95% CI: 0.61–0.87], while for similar heart rates the area under the curve for phases 75 + 65 + 55 + 45% combined was 0.92 ± 0.02. LV volume at 75% phase was strongly correlated with EDV (LV volume at 95% phase) (r = 0.970, P < 0.001). There was also a strong correlation between LVEF (75_35) and LVEF (95_35) (r = 0.93, P < 0.001). Subsequently, we developed a formula to correct for the decrement in LVEF using 35–75% phase: LVEF (95_35) = 0.783 × LVEF (75_35) + 20.68; adjusted R 2 = 0.874, P < 0.001. Using 64 MDCT scanners, in order to acquire >90% interpretable studies, if HR < 60 bpm 75% phase of RR interval provides optimal images; while for HR > 60 analysis of images in 4 phases (75, 35, 45 and 55%) is needed. Our data demonstrates that LVEF can be predicted with reasonable accuracy by using data acquired in phases 35 and 75% of the R–R interval. Future prospective acquisition that obtains two phases (35 and 75%) will allow for motion free images of the coronary arteries and EF estimates in over 90% of patients.
Literature
1.
go back to reference Kopp AF, Kuttner A, Trabold T, Heuschmid M, Schroder S, Claussen CD (2004) Multislice CT in cardiac and coronary angiography. Br J Radiol 77:87–97CrossRef Kopp AF, Kuttner A, Trabold T, Heuschmid M, Schroder S, Claussen CD (2004) Multislice CT in cardiac and coronary angiography. Br J Radiol 77:87–97CrossRef
2.
go back to reference Schoenhagen P, Halliburton SS, Stillman AE et al (2004) Noninvasive imaging of coronary arteries: current and future role of multi-detector row CT. Radiology 232:7–17PubMedCrossRef Schoenhagen P, Halliburton SS, Stillman AE et al (2004) Noninvasive imaging of coronary arteries: current and future role of multi-detector row CT. Radiology 232:7–17PubMedCrossRef
3.
go back to reference Mao S, Lu B, Takasu J, Oudiz RJ, Budoff MJ (2003) Measurement of the RT interval on ECG records during electron-beam CT. Acad Radiol 10(6):638–643PubMedCrossRef Mao S, Lu B, Takasu J, Oudiz RJ, Budoff MJ (2003) Measurement of the RT interval on ECG records during electron-beam CT. Acad Radiol 10(6):638–643PubMedCrossRef
4.
go back to reference Hirai N, Horiguchi J, Fujioka C, Kiguchi M, Yamamoto H, Matsuura N, Kitagawa T, Teragawa H, Kohno N, Ito K (2008) Prospective versus retrospective ECG-gated 64-detector coronary CT angiography: assessment of image quality, stenosis, and radiation dose. Radiology 248(2):424–430 Epub 2008 Jun 23PubMedCrossRef Hirai N, Horiguchi J, Fujioka C, Kiguchi M, Yamamoto H, Matsuura N, Kitagawa T, Teragawa H, Kohno N, Ito K (2008) Prospective versus retrospective ECG-gated 64-detector coronary CT angiography: assessment of image quality, stenosis, and radiation dose. Radiology 248(2):424–430 Epub 2008 Jun 23PubMedCrossRef
5.
go back to reference Wintersperger BJ, Nikolaou K, von Ziegler F, Johnson T, Rist C, Leber A, Flohr T, Knez A, Reiser MF, Becker CR (2006) Image quality, motion artifacts, and reconstruction timing of 64-slice coronary computed tomography angiography with 0.33-second rotation speed. Invest Radiol 41(5):436–442PubMedCrossRef Wintersperger BJ, Nikolaou K, von Ziegler F, Johnson T, Rist C, Leber A, Flohr T, Knez A, Reiser MF, Becker CR (2006) Image quality, motion artifacts, and reconstruction timing of 64-slice coronary computed tomography angiography with 0.33-second rotation speed. Invest Radiol 41(5):436–442PubMedCrossRef
6.
go back to reference Lu B, Mao SS, Zhuang N, Bakhsheshi H, Yamamoto H, Takasu J, Liu SC, Budoff MJ (2001) Coronary artery motion during the cardiac cycle and optimal ECG triggering for coronary artery imaging. Invest Radiol 36(5):250–256PubMedCrossRef Lu B, Mao SS, Zhuang N, Bakhsheshi H, Yamamoto H, Takasu J, Liu SC, Budoff MJ (2001) Coronary artery motion during the cardiac cycle and optimal ECG triggering for coronary artery imaging. Invest Radiol 36(5):250–256PubMedCrossRef
7.
go back to reference Matsuura N, Horiguchi J, Yamamoto H, Hirai N, Tonda T, Kohno N, Ito K (2008) Optimal cardiac phase for coronary artery calcium scoring on single-source 64-MDCT scanner: least interscan variability and least motion artifacts. AJR Am J Roentgenol 190(6):1561–1568 PMID: 18492907PubMedCrossRef Matsuura N, Horiguchi J, Yamamoto H, Hirai N, Tonda T, Kohno N, Ito K (2008) Optimal cardiac phase for coronary artery calcium scoring on single-source 64-MDCT scanner: least interscan variability and least motion artifacts. AJR Am J Roentgenol 190(6):1561–1568 PMID: 18492907PubMedCrossRef
8.
go back to reference Francone M, Napoli A, Carbone I, Cavacece M, Nardis PG, Lanciotti K, Visconti S, Bertoletti L, Di Castro E, Catalano C, Passariello R (2007) Noninvasive imaging of the coronary arteries using a 64-row multidetector CT scanner: initial clinical experience and radiation dose concerns. Radiol Med 112(1):31–46 Epub 2007 Feb 22PubMedCrossRef Francone M, Napoli A, Carbone I, Cavacece M, Nardis PG, Lanciotti K, Visconti S, Bertoletti L, Di Castro E, Catalano C, Passariello R (2007) Noninvasive imaging of the coronary arteries using a 64-row multidetector CT scanner: initial clinical experience and radiation dose concerns. Radiol Med 112(1):31–46 Epub 2007 Feb 22PubMedCrossRef
9.
go back to reference Weustink AC, Mollet NR, Pugliese F, Meijboom WB, Nieman K, Heijenbrok-Kal MH, Flohr TG, Neefjes LA, Cademartiri F, de Feyter PJ, Krestin GP (2008) Optimal electrocardiographic pulsing windows and heart rate: effect on image quality and radiation exposure at dual-source coronary CT angiography. Radiology 248:792–798PubMedCrossRef Weustink AC, Mollet NR, Pugliese F, Meijboom WB, Nieman K, Heijenbrok-Kal MH, Flohr TG, Neefjes LA, Cademartiri F, de Feyter PJ, Krestin GP (2008) Optimal electrocardiographic pulsing windows and heart rate: effect on image quality and radiation exposure at dual-source coronary CT angiography. Radiology 248:792–798PubMedCrossRef
10.
go back to reference Lalande S, Johnson BD (2008) Diastolic dysfunction: a link between hypertension and heart failure. Drugs Today (Barc) 44(7):503–513 Review. PMID: 18806901 [PubMed-indexed for MEDLINE]CrossRef Lalande S, Johnson BD (2008) Diastolic dysfunction: a link between hypertension and heart failure. Drugs Today (Barc) 44(7):503–513 Review. PMID: 18806901 [PubMed-indexed for MEDLINE]CrossRef
11.
go back to reference Lang RM, Bierig M, Devereux RB, Flachskampf FA, Foster E, Pellikka PA, Picard MH, Roman MJ, Seward J, Shanewise JS, Solomon SD, Spencer KT, St John Sutton M, Stewart W (2005) Recommendations for chamber quantification: a report from the American Society of Echocardiography’s guidelines and standards committee and the chamber quantification writing group, developed in conjunction with the European Association of Echocardiography, a branch of the European Society of Cardiology. J Am Soc Echocardiogr 18(12):1440–1463PubMedCrossRef Lang RM, Bierig M, Devereux RB, Flachskampf FA, Foster E, Pellikka PA, Picard MH, Roman MJ, Seward J, Shanewise JS, Solomon SD, Spencer KT, St John Sutton M, Stewart W (2005) Recommendations for chamber quantification: a report from the American Society of Echocardiography’s guidelines and standards committee and the chamber quantification writing group, developed in conjunction with the European Association of Echocardiography, a branch of the European Society of Cardiology. J Am Soc Echocardiogr 18(12):1440–1463PubMedCrossRef
12.
go back to reference Schroeder S, Achenbach S, Bengel F, Burgstahler C, Cademartiri F, de Feyter P, George R, Kaufmann P, Kopp AF, Knuuti J, Ropers D, Schuijf J, Tops LF, Bax JJ, Working Group Nuclear Cardiology and Cardiac CT, European Society of Cardiology, European Council of Nuclear Cardiology (2008) Cardiac computed tomography: indications, applications, limitations, and training requirements: report of a Writing Group deployed by the Working Group Nuclear Cardiology and Cardiac CT of the European Society of Cardiology and the European Council of Nuclear Cardiology. Eur Heart J 29(4):531–556 Epub 2007 Dec 15PubMedCrossRef Schroeder S, Achenbach S, Bengel F, Burgstahler C, Cademartiri F, de Feyter P, George R, Kaufmann P, Kopp AF, Knuuti J, Ropers D, Schuijf J, Tops LF, Bax JJ, Working Group Nuclear Cardiology and Cardiac CT, European Society of Cardiology, European Council of Nuclear Cardiology (2008) Cardiac computed tomography: indications, applications, limitations, and training requirements: report of a Writing Group deployed by the Working Group Nuclear Cardiology and Cardiac CT of the European Society of Cardiology and the European Council of Nuclear Cardiology. Eur Heart J 29(4):531–556 Epub 2007 Dec 15PubMedCrossRef
13.
go back to reference Mao S, Lu B, Oudiz RJ, Bakhsheshi H, Liu SC, Budoff MJ (2000) Coronary artery motion in electron beam tomography. J Comput Assist Tomogr 24(2):253–258PubMedCrossRef Mao S, Lu B, Oudiz RJ, Bakhsheshi H, Liu SC, Budoff MJ (2000) Coronary artery motion in electron beam tomography. J Comput Assist Tomogr 24(2):253–258PubMedCrossRef
14.
go back to reference Husmann L, Leschka S, Desbiolles L, Schepis T, Gaemperli O, Seifert B, Cattin P, Frauenfelder T, Flohr TG, Marincek B, Kaufmann PA, Alkadhi H (2007) Coronary artery motion and cardiac phases: dependency on heart rate implications for CT image reconstruction. Radiology 245(2):567–576 Epub 2007 Sep 11PubMedCrossRef Husmann L, Leschka S, Desbiolles L, Schepis T, Gaemperli O, Seifert B, Cattin P, Frauenfelder T, Flohr TG, Marincek B, Kaufmann PA, Alkadhi H (2007) Coronary artery motion and cardiac phases: dependency on heart rate implications for CT image reconstruction. Radiology 245(2):567–576 Epub 2007 Sep 11PubMedCrossRef
15.
go back to reference Brodoefel H, Burgstahler C, Tsiflikas I, Reimann A, Schroeder S, Claussen CD, Heuschmid M, Kopp AF (2008) Dual-source CT: effect of heart rate, heart rate variability, and calcification on image quality and diagnostic accuracy. Radiology 247(2):346–355 Epub 2008 Mar 27PubMedCrossRef Brodoefel H, Burgstahler C, Tsiflikas I, Reimann A, Schroeder S, Claussen CD, Heuschmid M, Kopp AF (2008) Dual-source CT: effect of heart rate, heart rate variability, and calcification on image quality and diagnostic accuracy. Radiology 247(2):346–355 Epub 2008 Mar 27PubMedCrossRef
16.
go back to reference Earls JP, Berman EL, Urban BA, Curry CA, Lane JL, Jennings RS, McCulloch CC, Hsieh J, Londt JH (2008) Prospectively gated transverse coronary CT angiography versus retrospectively gated helical technique: improved image quality and reduced radiation dose. Radiology 246(3):742–753 Epub 2008 Jan 14PubMedCrossRef Earls JP, Berman EL, Urban BA, Curry CA, Lane JL, Jennings RS, McCulloch CC, Hsieh J, Londt JH (2008) Prospectively gated transverse coronary CT angiography versus retrospectively gated helical technique: improved image quality and reduced radiation dose. Radiology 246(3):742–753 Epub 2008 Jan 14PubMedCrossRef
17.
go back to reference Frydrychowicz A, Pache G, Saueressig U, Föll D, Kotter E, Langer M, Bley TA (2007) Comparison of reconstruction intervals in routine ECG-pulsed 64-row-MSCT coronary angiography in frequency controlled patients. Cardiovasc Intervent Radiol 30(1):79–84PubMedCrossRef Frydrychowicz A, Pache G, Saueressig U, Föll D, Kotter E, Langer M, Bley TA (2007) Comparison of reconstruction intervals in routine ECG-pulsed 64-row-MSCT coronary angiography in frequency controlled patients. Cardiovasc Intervent Radiol 30(1):79–84PubMedCrossRef
18.
go back to reference Leschka S, Wildermuth S, Boehm T, Desbiolles L, Husmann L, Plass A, Koepfli P, Schepis T, Marincek B, Kaufmann PA, Alkadhi H (2006) Noninvasive coronary angiography with 64-section CT: effect of average heart rate and heart rate variability on image quality. Radiology 241(2):378–385 Epub 2006 Sep 11PubMedCrossRef Leschka S, Wildermuth S, Boehm T, Desbiolles L, Husmann L, Plass A, Koepfli P, Schepis T, Marincek B, Kaufmann PA, Alkadhi H (2006) Noninvasive coronary angiography with 64-section CT: effect of average heart rate and heart rate variability on image quality. Radiology 241(2):378–385 Epub 2006 Sep 11PubMedCrossRef
19.
go back to reference Pannu HK, Jacobs JE, Lai S, Fishman EK (2006) Coronary CT angiography with 64-MDCT: assessment of vessel visibility. AJR Am J Roentgenol 187(1):119–126PubMedCrossRef Pannu HK, Jacobs JE, Lai S, Fishman EK (2006) Coronary CT angiography with 64-MDCT: assessment of vessel visibility. AJR Am J Roentgenol 187(1):119–126PubMedCrossRef
20.
go back to reference Alkadhi H, Stolzmann P, Scheffel H, Desbiolles L, Baumüller S, Plass A, Genoni M, Marincek B, Leschka S (2008) Radiation dose of cardiac dual-source CT: the effect of tailoring the protocol to patient-specific parameters. Eur J Radiol 68:385–391PubMedCrossRef Alkadhi H, Stolzmann P, Scheffel H, Desbiolles L, Baumüller S, Plass A, Genoni M, Marincek B, Leschka S (2008) Radiation dose of cardiac dual-source CT: the effect of tailoring the protocol to patient-specific parameters. Eur J Radiol 68:385–391PubMedCrossRef
21.
go back to reference Lalande S, Johnson BD (2008) Diastolic dysfunction: a link between hypertension and heart failure. Drugs Today (Barc) 44(7):503–513 Review. PMID: 18806901 [PubMed-indexed for MEDLINE]CrossRef Lalande S, Johnson BD (2008) Diastolic dysfunction: a link between hypertension and heart failure. Drugs Today (Barc) 44(7):503–513 Review. PMID: 18806901 [PubMed-indexed for MEDLINE]CrossRef
22.
go back to reference Nakae I, Matsuo S, Matsumoto T, Mitsunami K, Horie M (2008) Clinical significance of diastolic function as an indicator of myocardial ischemia assessed by 16-frame gated myocardial perfusion SPECT. Ann Nucl Med 22(8):677–683 Epub 2008 Nov 4. PMID: 18982470 [PubMed-in process]PubMedCrossRef Nakae I, Matsuo S, Matsumoto T, Mitsunami K, Horie M (2008) Clinical significance of diastolic function as an indicator of myocardial ischemia assessed by 16-frame gated myocardial perfusion SPECT. Ann Nucl Med 22(8):677–683 Epub 2008 Nov 4. PMID: 18982470 [PubMed-in process]PubMedCrossRef
23.
go back to reference Bombardini T, Gemignani V, Bianchini E, Venneri L, Petersen C, Pasanisi E, Pratali L, Alonso-Rodriguez D, Pianelli M, Faita F, Giannoni M, Arpesella G, Picano E (2008) Diastolic time–frequency relation in the stress echo lab: filling timing and flow at different heart rates. Cardiovasc Ultrasound 21:6–15 Bombardini T, Gemignani V, Bianchini E, Venneri L, Petersen C, Pasanisi E, Pratali L, Alonso-Rodriguez D, Pianelli M, Faita F, Giannoni M, Arpesella G, Picano E (2008) Diastolic time–frequency relation in the stress echo lab: filling timing and flow at different heart rates. Cardiovasc Ultrasound 21:6–15
24.
go back to reference Drighil A, Madias JE, Mathewson JW, El Mosalami H, El Badaoui N, Ramdani B, Bennis A (2008) Haemodialysis: effects of acute decrease in preload on tissue Doppler imaging indices of systolic and diastolic function of the left and right ventricles. Eur J Echocardiogr 9(4):530–535 Epub 2008 Mar 27PubMedCrossRef Drighil A, Madias JE, Mathewson JW, El Mosalami H, El Badaoui N, Ramdani B, Bennis A (2008) Haemodialysis: effects of acute decrease in preload on tissue Doppler imaging indices of systolic and diastolic function of the left and right ventricles. Eur J Echocardiogr 9(4):530–535 Epub 2008 Mar 27PubMedCrossRef
25.
go back to reference Movsowitz HD, Movsowitz C, Jacobs LE, Kotler MN (1993) Pitfalls in the echo-Doppler diagnosis of hypertrophic cardiomyopathy. Echocardiography 10(2):167–179PubMedCrossRef Movsowitz HD, Movsowitz C, Jacobs LE, Kotler MN (1993) Pitfalls in the echo-Doppler diagnosis of hypertrophic cardiomyopathy. Echocardiography 10(2):167–179PubMedCrossRef
27.
go back to reference Nasir K, Katz R, Mao S, Takasu J, Bomma C, Lima JA, Bluemke DA, Kronmal R, Carr JJ, Budoff MJ (2008) Comparison of left ventricular size by computed tomography with magnetic resonance imaging measures of left ventricle mass and volumes: the multi-ethnic study of atherosclerosis. J Cardiovasc Comput Tomogr 2(3):141–148 Epub 2008 Jan 31PubMedCrossRef Nasir K, Katz R, Mao S, Takasu J, Bomma C, Lima JA, Bluemke DA, Kronmal R, Carr JJ, Budoff MJ (2008) Comparison of left ventricular size by computed tomography with magnetic resonance imaging measures of left ventricle mass and volumes: the multi-ethnic study of atherosclerosis. J Cardiovasc Comput Tomogr 2(3):141–148 Epub 2008 Jan 31PubMedCrossRef
28.
go back to reference Raman SV, Shah M, McCarthy B, Garcia A, Ferketich AK (2006) Multi-detector row cardiac computed tomography accurately quantifies right and left ventricular size and function compared with cardiac magnetic resonance. Am Heart J 151(3):736–744PubMedCrossRef Raman SV, Shah M, McCarthy B, Garcia A, Ferketich AK (2006) Multi-detector row cardiac computed tomography accurately quantifies right and left ventricular size and function compared with cardiac magnetic resonance. Am Heart J 151(3):736–744PubMedCrossRef
29.
go back to reference Lessick Jonathan, Mutlak Diab, Rispler Shmuel, Ghersin Eduard, Dragu Robert, Litmanovich Diana, Engel Ahuva, Reisner ShimonA, Agmon Yoram (2005) Comparison of multidetector computed tomography versus echocardiography for assessing regional left ventricular function. Am J Cardiol 96(7):1011–1015PubMedCrossRef Lessick Jonathan, Mutlak Diab, Rispler Shmuel, Ghersin Eduard, Dragu Robert, Litmanovich Diana, Engel Ahuva, Reisner ShimonA, Agmon Yoram (2005) Comparison of multidetector computed tomography versus echocardiography for assessing regional left ventricular function. Am J Cardiol 96(7):1011–1015PubMedCrossRef
Metadata
Title
Optimal phase for coronary interpretations and correlation of ejection fraction using late-diastole and end-diastole imaging in cardiac computed tomography angiography: implications for prospective triggering
Authors
Hussain Isma’eel
Yasmin S. Hamirani
Ramona Mehrinfar
Songshuo Mao
Naser Ahmadi
Vahid Larijani
Subu Nair
Matthew J. Budoff
Publication date
01-10-2009
Publisher
Springer Netherlands
Published in
The International Journal of Cardiovascular Imaging / Issue 7/2009
Print ISSN: 1569-5794
Electronic ISSN: 1875-8312
DOI
https://doi.org/10.1007/s10554-009-9481-y

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