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Published in: European Radiology 8/2007

01-08-2007 | Cardiac

Non-cardiac findings on coronary computed tomography and magnetic resonance imaging

Authors: Marc Dewey, Dirk Schnapauff, Florian Teige, Bernd Hamm

Published in: European Radiology | Issue 8/2007

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Abstract

Both multislice computed tomography (CT) and magnetic resonance imaging (MRI) are emerging as methods to detect coronary artery stenoses and assess cardiac function and morphology. Non-cardiac structures are also amenable to assessment by these non-invasive tests. We investigated the rate of significant and insignificant non-cardiac findings using CT and MRI. A total of 108 consecutive patients suspected of having coronary artery disease and without contraindications to CT and MRI were included in this study. Significant non-cardiac findings were defined as findings that required additional clinical or radiological follow-up. CT and MR images were read independently in a blinded fashion. CT yielded five significant non-cardiac findings in five patients (5%). These included a pulmonary embolism, large pleural effusions, sarcoid, a large hiatal hernia, and a pulmonary nodule (>1.0 cm). Two of these significant non-cardiac findings were also seen on MRI (pleural effusions and sarcoid, 2%). Insignificant non-cardiac findings were more frequent than significant findings on both CT (n = 11, 10%) and MRI (n = 7, 6%). Incidental non-cardiac findings on CT and MRI of the coronary arteries are common, which is why images should be analyzed by radiologists to ensure that important findings are not missed and unnecessary follow-up examinations are avoided.
Literature
1.
go back to reference Schuijf JD, Bax JJ, Shaw LJ et al (2006) Meta-analysis of comparative diagnostic performance of magnetic resonance imaging and multislice computed tomography for noninvasive coronary angiography. Am Heart J 151:404–411PubMedCrossRef Schuijf JD, Bax JJ, Shaw LJ et al (2006) Meta-analysis of comparative diagnostic performance of magnetic resonance imaging and multislice computed tomography for noninvasive coronary angiography. Am Heart J 151:404–411PubMedCrossRef
2.
go back to reference Scheffel H, Alkadhi H, Plass A et al (2006) Accuracy of dual-source CT coronary angiography: first experience in a high pre-test probability population without heart rate control. Eur Radiol 16(12):2739–2747PubMedCrossRef Scheffel H, Alkadhi H, Plass A et al (2006) Accuracy of dual-source CT coronary angiography: first experience in a high pre-test probability population without heart rate control. Eur Radiol 16(12):2739–2747PubMedCrossRef
3.
go back to reference Dewey M, Teige F, Schnapauff D et al (2006) Noninvasive detection of coronary artery stenoses with multislice computed tomography or magnetic resonance imaging. Ann Intern Med 145:407–415PubMed Dewey M, Teige F, Schnapauff D et al (2006) Noninvasive detection of coronary artery stenoses with multislice computed tomography or magnetic resonance imaging. Ann Intern Med 145:407–415PubMed
4.
go back to reference Kopp AF, Kuttner A, Trabold T, Heuschmid M, Schroder S, Claussen CD (2003) MDCT: cardiology indications. Eur Radiol 13(Suppl 5):M102–M115PubMed Kopp AF, Kuttner A, Trabold T, Heuschmid M, Schroder S, Claussen CD (2003) MDCT: cardiology indications. Eur Radiol 13(Suppl 5):M102–M115PubMed
5.
go back to reference Khan MF, Wesarg S, Gurung J et al (2006) Facilitating coronary artery evaluation in MDCT using a 3D automatic vessel segmentation tool. Eur Radiol 16(8):1789–1795PubMedCrossRef Khan MF, Wesarg S, Gurung J et al (2006) Facilitating coronary artery evaluation in MDCT using a 3D automatic vessel segmentation tool. Eur Radiol 16(8):1789–1795PubMedCrossRef
6.
go back to reference Dewey M, Schnapauff D, Laule M et al (2004) Multislice CT coronary angiography: evaluation of an automatic vessel detection tool. Fortschr Röntgenstr 478–483 Dewey M, Schnapauff D, Laule M et al (2004) Multislice CT coronary angiography: evaluation of an automatic vessel detection tool. Fortschr Röntgenstr 478–483
7.
go back to reference Kefer JM, Coche E, Vanoverschelde JL, Gerber BL (2006) Diagnostic accuracy of 16-slice multidetector-row CT for detection of in-stent restenosis vs detection of stenosis in nonstented coronary arteries. Eur Radiol DOI 10.1007/S00330-006-0291-5 Kefer JM, Coche E, Vanoverschelde JL, Gerber BL (2006) Diagnostic accuracy of 16-slice multidetector-row CT for detection of in-stent restenosis vs detection of stenosis in nonstented coronary arteries. Eur Radiol DOI 10.​1007/​S00330-006-0291-5
8.
go back to reference Kim WY, Danias PG, Stuber M et al (2001) Coronary magnetic resonance angiography for the detection of coronary stenoses. N Engl J Med 345:1863–1869PubMedCrossRef Kim WY, Danias PG, Stuber M et al (2001) Coronary magnetic resonance angiography for the detection of coronary stenoses. N Engl J Med 345:1863–1869PubMedCrossRef
9.
go back to reference van der Zaag-Loonen HJ, Dikkers R, de Bock GH, Oudkerk M (2006) The clinical value of a negative multi-detector computed tomographic angiography in patients suspected of coronary artery disease: a meta-analysis. Eur Radiol 16(12):2748–2756PubMedCrossRef van der Zaag-Loonen HJ, Dikkers R, de Bock GH, Oudkerk M (2006) The clinical value of a negative multi-detector computed tomographic angiography in patients suspected of coronary artery disease: a meta-analysis. Eur Radiol 16(12):2748–2756PubMedCrossRef
10.
go back to reference Pugliese F, Mollet NR, Runza G et al (2006) Diagnostic accuracy of non-invasive 64-slice CT coronary angiography in patients with stable angina pectoris. Eur Radiol 16:575–582PubMedCrossRef Pugliese F, Mollet NR, Runza G et al (2006) Diagnostic accuracy of non-invasive 64-slice CT coronary angiography in patients with stable angina pectoris. Eur Radiol 16:575–582PubMedCrossRef
11.
go back to reference Spuentrup E, Buecker A, Stuber M et al (2003) Navigator-gated coronary magnetic resonance angiography using steady-state free-precession: comparison to standard T2-prepared gradient-echo and spiral imaging. Invest Radiol 38:263–268PubMedCrossRef Spuentrup E, Buecker A, Stuber M et al (2003) Navigator-gated coronary magnetic resonance angiography using steady-state free-precession: comparison to standard T2-prepared gradient-echo and spiral imaging. Invest Radiol 38:263–268PubMedCrossRef
12.
go back to reference Becker CR (2005) Coronary CT angiography in symptomatic patients. Eur Radiol 15(Suppl 2):B33–B41PubMed Becker CR (2005) Coronary CT angiography in symptomatic patients. Eur Radiol 15(Suppl 2):B33–B41PubMed
13.
go back to reference Dorgelo J, Willems TP, Geluk CA, van Ooijen PM, Zijlstra F, Oudkerk M (2005) Multidetector computed tomography-guided treatment strategy in patients with non-ST elevation acute coronary syndromes: a pilot study. Eur Radiol 15:708–713PubMedCrossRef Dorgelo J, Willems TP, Geluk CA, van Ooijen PM, Zijlstra F, Oudkerk M (2005) Multidetector computed tomography-guided treatment strategy in patients with non-ST elevation acute coronary syndromes: a pilot study. Eur Radiol 15:708–713PubMedCrossRef
14.
go back to reference Leschka S, Husmann L, Desbiolles LM et al (2006) Optimal image reconstruction intervals for non-invasive coronary angiography with 64-slice CT. Eur Radiol 16(9):1964–1972PubMedCrossRef Leschka S, Husmann L, Desbiolles LM et al (2006) Optimal image reconstruction intervals for non-invasive coronary angiography with 64-slice CT. Eur Radiol 16(9):1964–1972PubMedCrossRef
15.
go back to reference Husmann L, Alkadhi H, Boehm T et al (2006) Influence of cardiac hemodynamic parameters on coronary artery opacification with 64-slice computed tomography. Eur Radiol 16:1111–1116PubMedCrossRef Husmann L, Alkadhi H, Boehm T et al (2006) Influence of cardiac hemodynamic parameters on coronary artery opacification with 64-slice computed tomography. Eur Radiol 16:1111–1116PubMedCrossRef
16.
go back to reference Hoffmann MH, Shi H, Schmitz BL et al (2005) Noninvasive coronary angiography with multislice computed tomography. JAMA 293:2471–2478PubMedCrossRef Hoffmann MH, Shi H, Schmitz BL et al (2005) Noninvasive coronary angiography with multislice computed tomography. JAMA 293:2471–2478PubMedCrossRef
17.
go back to reference Garcia MJ, Lessick J, Hoffmann MH (2006) Accuracy of 16-row multidetector computed tomography for the assessment of coronary artery stenosis. JAMA 296:403–411PubMedCrossRef Garcia MJ, Lessick J, Hoffmann MH (2006) Accuracy of 16-row multidetector computed tomography for the assessment of coronary artery stenosis. JAMA 296:403–411PubMedCrossRef
18.
go back to reference Raff GL, Gallagher MJ, O’Neill WW, Goldstein JA (2005) Diagnostic accuracy of noninvasive coronary angiography using 64-slice spiral computed tomography. J Am Coll Cardiol 46:552–557PubMedCrossRef Raff GL, Gallagher MJ, O’Neill WW, Goldstein JA (2005) Diagnostic accuracy of noninvasive coronary angiography using 64-slice spiral computed tomography. J Am Coll Cardiol 46:552–557PubMedCrossRef
19.
go back to reference Leschka S, Alkadhi H, Plass A et al (2005) Accuracy of MSCT coronary angiography with 64-slice technology: first experience. Eur Heart J 26:1482–1487PubMedCrossRef Leschka S, Alkadhi H, Plass A et al (2005) Accuracy of MSCT coronary angiography with 64-slice technology: first experience. Eur Heart J 26:1482–1487PubMedCrossRef
20.
go back to reference Leber AW, Knez A, von Ziegler F et al (2005) Quantification of obstructive and nonobstructive coronary lesions by 64-slice computed tomography: a comparative study with quantitative coronary angiography and intravascular ultrasound. J Am Coll Cardiol 46:147–154PubMedCrossRef Leber AW, Knez A, von Ziegler F et al (2005) Quantification of obstructive and nonobstructive coronary lesions by 64-slice computed tomography: a comparative study with quantitative coronary angiography and intravascular ultrasound. J Am Coll Cardiol 46:147–154PubMedCrossRef
21.
go back to reference Mollet NR, Cademartiri F, van Mieghem CA et al (2005) High-resolution spiral computed tomography coronary angiography in patients referred for diagnostic conventional coronary angiography. Circulation 112:2318–2323PubMedCrossRef Mollet NR, Cademartiri F, van Mieghem CA et al (2005) High-resolution spiral computed tomography coronary angiography in patients referred for diagnostic conventional coronary angiography. Circulation 112:2318–2323PubMedCrossRef
22.
go back to reference Salem R, Remy-Jardin M, Delhaye D et al (2006) Integrated cardio-thoracic imaging with ECG-gated 64-slice multidetector-row CT: initial findings in 133 patients. Eur Radiol 16:1973–1981PubMedCrossRef Salem R, Remy-Jardin M, Delhaye D et al (2006) Integrated cardio-thoracic imaging with ECG-gated 64-slice multidetector-row CT: initial findings in 133 patients. Eur Radiol 16:1973–1981PubMedCrossRef
23.
go back to reference Horton KM, Post WS, Blumenthal RS, Fishman EK (2002) Prevalence of significant noncardiac findings on electron-beam computed tomography coronary artery calcium screening examinations. Circulation 106:532–534PubMedCrossRef Horton KM, Post WS, Blumenthal RS, Fishman EK (2002) Prevalence of significant noncardiac findings on electron-beam computed tomography coronary artery calcium screening examinations. Circulation 106:532–534PubMedCrossRef
24.
go back to reference Hunold P, Schmermund A, Seibel RM, Gronemeyer DH, Erbel R (2001) Prevalence and clinical significance of accidental findings in electron-beam tomographic scans for coronary artery calcification. Eur Heart J 22:1748–1758PubMedCrossRef Hunold P, Schmermund A, Seibel RM, Gronemeyer DH, Erbel R (2001) Prevalence and clinical significance of accidental findings in electron-beam tomographic scans for coronary artery calcification. Eur Heart J 22:1748–1758PubMedCrossRef
25.
go back to reference Schragin JG, Weissfeld JL, Edmundowicz D, Strollo DC, Fuhrman CR (2004) Non-cardiac findings on coronary electron beam computed tomography scanning. J Thorac Imaging 19:82–86PubMedCrossRef Schragin JG, Weissfeld JL, Edmundowicz D, Strollo DC, Fuhrman CR (2004) Non-cardiac findings on coronary electron beam computed tomography scanning. J Thorac Imaging 19:82–86PubMedCrossRef
26.
go back to reference Haller S, Kaiser C, Buser P, Bongartz G, Bremerich J (2006) Coronary artery imaging with contrast-enhanced MDCT: extracardiac findings. AJR Am J Roentgenol 187:105–110PubMedCrossRef Haller S, Kaiser C, Buser P, Bongartz G, Bremerich J (2006) Coronary artery imaging with contrast-enhanced MDCT: extracardiac findings. AJR Am J Roentgenol 187:105–110PubMedCrossRef
27.
go back to reference Onuma Y, Tanabe K, Nakazawa G et al (2006) Noncardiac findings in cardiac imaging with multidetector computed tomography. J Am Coll Cardiol 48:402–406PubMedCrossRef Onuma Y, Tanabe K, Nakazawa G et al (2006) Noncardiac findings in cardiac imaging with multidetector computed tomography. J Am Coll Cardiol 48:402–406PubMedCrossRef
28.
go back to reference Dewey M, Laule M, Krug L et al (2004) Multisegment and halfscan reconstruction of 16-slice computed tomography for detection of coronary artery stenoses. Invest Radiol 39:223–229PubMedCrossRef Dewey M, Laule M, Krug L et al (2004) Multisegment and halfscan reconstruction of 16-slice computed tomography for detection of coronary artery stenoses. Invest Radiol 39:223–229PubMedCrossRef
29.
go back to reference Dewey M, Müller M, Teige F et al (2006) Multisegment and halfscan reconstruction of 16-slice computed tomography for assessment of regional and global left ventricular myocardial function. Invest Radiol 41:400–409PubMedCrossRef Dewey M, Müller M, Teige F et al (2006) Multisegment and halfscan reconstruction of 16-slice computed tomography for assessment of regional and global left ventricular myocardial function. Invest Radiol 41:400–409PubMedCrossRef
30.
go back to reference Wormanns D, Ludwig K, Beyer F, Heindel W, Diederich S (2005) Detection of pulmonary nodules at multirow-detector CT: effectiveness of double reading to improve sensitivity at standard-dose and low-dose chest CT. Eur Radiol 15:14–22PubMedCrossRef Wormanns D, Ludwig K, Beyer F, Heindel W, Diederich S (2005) Detection of pulmonary nodules at multirow-detector CT: effectiveness of double reading to improve sensitivity at standard-dose and low-dose chest CT. Eur Radiol 15:14–22PubMedCrossRef
31.
go back to reference Dewey M, Teige F, Schnapauff D et al (2006) Combination of free-breathing and breath-hold steady-state free precession magnetic resonance angiography for detection of coronary artery stenoses. J Magn Reson Imaging 23:674–681PubMedCrossRef Dewey M, Teige F, Schnapauff D et al (2006) Combination of free-breathing and breath-hold steady-state free precession magnetic resonance angiography for detection of coronary artery stenoses. J Magn Reson Imaging 23:674–681PubMedCrossRef
32.
go back to reference Deshpande VS, Shea SM, Laub G, Simonetti OP, Finn JP, Li D (2001) 3D magnetization-prepared true-FISP: a new technique for imaging coronary arteries. Magn Reson Med 46:494–502PubMedCrossRef Deshpande VS, Shea SM, Laub G, Simonetti OP, Finn JP, Li D (2001) 3D magnetization-prepared true-FISP: a new technique for imaging coronary arteries. Magn Reson Med 46:494–502PubMedCrossRef
Metadata
Title
Non-cardiac findings on coronary computed tomography and magnetic resonance imaging
Authors
Marc Dewey
Dirk Schnapauff
Florian Teige
Bernd Hamm
Publication date
01-08-2007
Publisher
Springer-Verlag
Published in
European Radiology / Issue 8/2007
Print ISSN: 0938-7994
Electronic ISSN: 1432-1084
DOI
https://doi.org/10.1007/s00330-006-0570-1

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