Influence of slice thickness and reconstruction kernel on the computed tomographic attenuation of coronary atherosclerotic plaque.
暂无分享,去创建一个
S. Achenbach | M. Uder | A. Kuettner | D. Ropers | W. Daniel | M. Lell | M. Marwan | K. Anders | T. Pflederer | Kerstin Boehmer | M. Seltmann
[1] D. Dey,et al. Reproducibility of coronary artery plaque volume and composition quantification by 64-detector row coronary computed tomographic angiography: an intraobserver, interobserver, and interscan variability study. , 2009, Journal of cardiovascular computed tomography.
[2] Hirofumi Anno,et al. Computed tomographic angiography characteristics of atherosclerotic plaques subsequently resulting in acute coronary syndrome. , 2009, Journal of the American College of Cardiology.
[3] D. Berman,et al. Thoracic aortic calcium versus coronary artery calcium for the prediction of coronary heart disease and cardiovascular disease events. , 2009, JACC. Cardiovascular imaging.
[4] D. Berman,et al. SCCT guidelines for the interpretation and reporting of coronary computed tomographic angiography. , 2009, Journal of cardiovascular computed tomography.
[5] Pankaj Garg,et al. Arithmetic of vulnerable plaques for noninvasive imaging , 2008, Nature Clinical Practice Cardiovascular Medicine.
[6] B. Hamm,et al. Intra- and interobserver variability in detection and assessment of calcified and noncalcified coronary artery plaques using 64-slice computed tomography , 2008, The International Journal of Cardiovascular Imaging.
[7] Moyses Szklo,et al. Coronary calcium as a predictor of coronary events in four racial or ethnic groups. , 2008, The New England journal of medicine.
[8] Yujie Zhou,et al. Identification and quantification of coronary atherosclerotic plaques: a comparison of 64-MDCT and intravascular ultrasound. , 2008, AJR. American journal of roentgenology.
[9] Werner Bautz,et al. Randomized comparison of 64-slice single- and dual-source computed tomography coronary angiography for the detection of coronary artery disease. , 2008, JACC. Cardiovascular imaging.
[10] S. Achenbach,et al. Relationship between degree of remodeling and CT attenuation of plaque in coronary atherosclerotic lesions: an in-vivo analysis by multi-detector computed tomography. , 2008, Atherosclerosis.
[11] G. Feuchtner,et al. Is There a Relation between Non-Calcifying Coronary Plaques and Acute Coronary Syndromes? A Retrospective Study Using Multislice Computed Tomography , 2007, Cardiology.
[12] M. Budoff,et al. Prognostic significance of zero coronary calcium scores on cardiac computed tomography. , 2007, Journal of cardiovascular computed tomography.
[13] Hirofumi Anno,et al. Multislice computed tomographic characteristics of coronary lesions in acute coronary syndromes. , 2007, Journal of the American College of Cardiology.
[14] Filippo Cademartiri,et al. Reproducible coronary plaque quantification by multislice computed tomography , 2007, Catheterization and cardiovascular interventions : official journal of the Society for Cardiac Angiography & Interventions.
[15] J. Ishii,et al. Atherosclerotic plaque characterization by 0.5-mm-slice multislice computed tomographic imaging. , 2007, Circulation journal : official journal of the Japanese Circulation Society.
[16] Filippo Cademartiri,et al. Influence of convolution filtering on coronary plaque attenuation values: observations in an ex vivo model of multislice computed tomography coronary angiography , 2007, European Radiology.
[17] Jeroen J. Bax,et al. Differences in plaque composition and distribution in stable coronary artery disease versus acute coronary syndromes; non‐invasive evaluation with multi‐slice computed tomography , 2007, Acute cardiac care.
[18] S. Achenbach,et al. Noninvasive assessment of plaque morphology and composition in culprit and stable lesions in acute coronary syndrome and stable lesions in stable angina by multidetector computed tomography. , 2006, Journal of the American College of Cardiology.
[19] P. Carrascosa,et al. Characterization of coronary atherosclerotic plaques by multidetector computed tomography. , 2006, The American journal of cardiology.
[20] Konstantin Nikolaou,et al. Accuracy of 64-slice computed tomography to classify and quantify plaque volumes in the proximal coronary system: a comparative study using intravascular ultrasound. , 2006, Journal of the American College of Cardiology.
[21] S. Achenbach,et al. Noncalcified and calcified coronary plaque detection by contrast-enhanced multi-detector computed tomography: a study of interobserver agreement. , 2006, Journal of the American College of Cardiology.
[22] Irwin Feuerstein,et al. Coronary calcium independently predicts incident premature coronary heart disease over measured cardiovascular risk factors: mean three-year outcomes in the Prospective Army Coronary Calcium (PACC) project. , 2005, Journal of the American College of Cardiology.
[23] Filippo Cademartiri,et al. Influence of intracoronary attenuation on coronary plaque measurements using multislice computed tomography: observations in an ex vivo model of coronary computed tomography angiography , 2005, European Radiology.
[24] S. Achenbach,et al. Comparison of measurement of cross-sectional coronary atherosclerotic plaque and vessel areas by 16-slice multidetector computed tomography versus intravascular ultrasound. , 2004, The American journal of cardiology.
[25] Konstantin Nikolaou,et al. Accuracy of multidetector spiral computed tomography in identifying and differentiating the composition of coronary atherosclerotic plaques: a comparative study with intracoronary ultrasound. , 2004, Journal of the American College of Cardiology.
[26] S. Achenbach,et al. Detection of Calcified and Noncalcified Coronary Atherosclerotic Plaque by Contrast-Enhanced, Submillimeter Multidetector Spiral Computed Tomography: A Segment-Based Comparison With Intravascular Ultrasound , 2003, Circulation.
[27] Maximilian Reiser,et al. Composition of coronary atherosclerotic plaques in patients with acute myocardial infarction and stable angina pectoris determined by contrast-enhanced multislice computed tomography. , 2003, The American journal of cardiology.
[28] S. Achenbach,et al. Assessment of coronary remodeling in stenotic and nonstenotic coronary atherosclerotic lesions by multidetector spiral computed tomography. , 2003, Journal of the American College of Cardiology.
[29] A. Hofman,et al. Coronary calcification detected by electron-beam computed tomography and myocardial infarction. The Rotterdam Coronary Calcification Study. , 2002, European heart journal.
[30] C. Meisner,et al. Accuracy of Density Measurements Within Plaques Located in Artificial Coronary Arteries by X-Ray Multislice CT: Results of a Phantom Study , 2001, Journal of computer assisted tomography.
[31] C Georg,et al. Noninvasive detection and evaluation of atherosclerotic coronary plaques with multislice computed tomography. , 2001, Journal of the American College of Cardiology.
[32] R. Detrano,et al. Prognostic value of coronary electron-beam computed tomography for coronary heart disease events in asymptomatic populations. , 2000, The American journal of cardiology.
[33] T. Callister,et al. Identification of patients at increased risk of first unheralded acute myocardial infarction by electron-beam computed tomography. , 2000, Circulation.
[34] S. Achenbach,et al. Assessment of nonstenotic coronary lesions by 64-slice multidetector computed tomography in comparison to intravascular ultrasound: evaluation of nonculprit coronary lesions. , 2009, Journal of cardiovascular computed tomography.
[35] S. Abbara,et al. Cardiac CT: State of the art for the detection of coronary arterial stenosis , 2008 .
[36] Udo Hoffmann,et al. Characterization of non-calcified coronary atherosclerotic plaque by multi-detector row CT: comparison to IVUS. , 2007, Atherosclerosis.
[37] Sati Mazumdar,et al. Characterization of Vulnerable Nonstenotic Plaque With 16-Slice Computed Tomography Compared With Intravascular Ultrasound , 2004 .