1) Burke AP, Farb A, Malcom GT, et al. Coronary risk factors and plaque morphology in men with coronary disease who died suddenly. N Engl J Med. 1997; 336: 1276-82
|
|
|
2) Schaar JA, Muller JE, Falk E, et al. Terminology for high-risk and vulnerable coronary artery plaques. Report of a meeting on the vulnerable plaque. Eur Heart J. 2004; 25: 1077-82
|
|
|
3) Narula J, Finn AV, DeMaria AN. Picking plaques that pop.. .. J Am Coll Cardiol. 2005; 45: 1970-3
|
|
|
4) Narula J, Strauss HW. The popcorn plaques. Nat Med. 2007; 13: 532-4
|
|
|
5) Levy AP, Moreno PR, Kalet-Litman S, et al. Haptoglobin genotype is a determinant of iron, lipid peroxidation, and macrophage accumulation in the atherosclerotic plaque. Arterioscler Thromb Vasc Biol. 2007; 27: 134-40
|
|
|
6) Virmani R, Kolodgie FD, Burke AP, et al. Lessons from sudden coronary death a comprehensive morphological classification scheme for atherosclerotic lesions. Arterioscler Thromb Vasc Biol. 2000; 20: 1262-75
|
|
|
7) McPherson DD, Sirna SJ, Hiratzka LF, et al. Coronary arterial remodeling studied by high-frequency epicardial echocardiography an early compensatory mechanism in patients with obstructive coronary atherosclerosis. J Am Coll Cardiol. 1991; 17: 79-86
|
|
|
8) Burke AP, Kolodgie FD, Farb A, et al. Morphological predictors of arterial remodeling in coronary atherosclerosis. Circulation. 2002; 105: 297-303
|
|
|
9) Virmani R, Burke AP, Kolodgie FD, et al. Vulnerable plaque the pathology of unstable coronary lesions. J Interv Cardiol. 2002; 15: 439-46
|
|
|
10) Virmani R, Narula J, Farb A. When neoangiogenesis ricochets. Am Heart J. 1998; 136: 937-9
|
|
|
11) Kolodgie FD, Gold HK, Burke AP, et al. Erythrocyte membranes contribute to free cholesterol in necrotic cores in human. N Engl J Med. 2003; 349: 2316-25
|
|
|
12) Koter M, Broncel M, Chojnowska-Jezierska J, et al. The effect of atorvastatin on erythrocyte membranes and serum lipids in patients with type-2 hypercholesterolemia. Eur J Clin Pharmacol. 2002; 58: 501-6
|
|
|
13) Virmani R, Burke AP, Farb A, et al. Pathology of the vulnerable plaque. J Am Coll Cardiol. 2006; 47 (8 Suppl): C13-8
|
|
|
14) Kolodgie FD, Burke AP, Farb A, et al. The thin-cap fibroatheroma: a type of vulnerable plaque: the major precursor lesion to acute coronary syndromes. Curr Opin Cardiol. 2001; 16: 285-92
|
|
|
15) Hegyi L, Skepper JN, Cary RN, et al. Foam cell apoptosis and the development of the lipid core of human atherosclerosis. J Pathol. 1996; 180: 423-9
|
|
|
16) Kai H, Ikeda H, Yasukawa H, et al. Peripheral blood levels of matrix metalloproteases-2 and -9 are elevated in patients with acute coronary syndromes. J Am Coll Cardiol. 1998; 32: 368-72
|
|
|
17) Carrascosa PM, Capunay CM, Garcia-Merletti P, et al. Characterization of coronary atherosclerotic plaques by multidetector computed tomography. Am J Cardiol. 2006; 97: 598-602
|
|
|
18) Schroeder S, Kopp AF, Baumbach A, et al. Noninvasive detection and evaluation of atherosclerotic coronary plaques with multislice computed tomography. J Am Coll Cardiol. 2001; 37: 1430-5
|
|
|
19) Motoyama S, Kondo T, Anno H, et al. Atherosclerotic plaque characterization by 0. 5-mm-slice multislice computed tomographic imaging. Circ J. 2007; 71: 363-6
|
|
|
20) Ferencik M, Nieman K, Achenbach S. Noncalcified and calcified coronary plaque detection by contrast-enhanced multi-detector computed tomography: a study of interobserver agreement. J Am Coll Cardiol. 2006; 47: 207-9
|
|
|
21) Leber AW, Becker A, Knez A, 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. J Am Coll Cardiol. 2006; 47: 672-7
|
|
|
22) Hara T, Yamada S, Hayashi T, et al. Accuracy of nonstenotic coronary atherosclerosis assessment by multi-detector computed tomography. Circ J. 2007; 71: 911-4
|
|
|
23) Inoue F, Sato Y, Matsumoto N, et al. Evaluation of plaque texture by means of multislice computed tomography in patients with acute coronary syndrome and stable angina. Circ J. 2004; 68: 840-4
|
|
|
24) Hoffmann U, Moselewski F, Nieman K, 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. J Am Coll Cardiol. 2006; 47: 1655-62
|
|
|
25) Kunimasa T, Sato Y, Sugi K, et al. Evaluation by multislice computed tomography of atherosclerotic coronary artery plaques in non-culprit, remote coronary arteries of patients with acute coronary syndrome. Circ J. 2005; 69: 1346-51
|
|
|
26) Motoyama S, Kondo T, Sarai M, et al. Multislice computed tomographic characteristics of coronary lesions in acute coronary syndromes. J Am Coll Cardiol. 2007; 24: 319-26
|
|
|
27) Hyafil F, Cornily JC, Feig JE, et al. Noninvasive detection of macrophages using a nanoparticulate contrast agent for computed tomography. Nat Med. 2007; 13: 636-41
|
|
|