Topol E, Nissen S. Our preoccupation with coronary luminology. The dissociation between clinical and angiographic findings in ischemic heart disease. Circulation. 1995;92:2333–42.
PubMed
CAS
Google Scholar
Little WC, Constantinescu M, Applegate RJ, Kutcher MA, Burrows MT, Kahl FR, et al. Can coronary angiography predict the site of a subsequent myocardial infarction in patients with mild-to-moderate coronary artery disease. Circulation. 1988;78:1157–66.
PubMed
CAS
Google Scholar
Spears JR, Spokojny AM, Marais HJ. Coronary angioscopy during cardiac catheterization. J Am Coll Cardiol. 1985;6:93–7.
PubMed
Article
CAS
Google Scholar
Mizuno K, Arai T, Satomura K, Shibuya T, Arakawa K, Okamoto Y, et al. New percutaneous transluminal coronary angioscope. J Am Coll Cardiol. 1989;13:363–8.
PubMed
Article
CAS
Google Scholar
Sherman CT, Litvack F, Grundfest W, Lee M, Hickey A, Chaux A, et al. Coronary angioscopy in patients with unstable angina pectoris. N Engl J Med. 1986;315:913–9.
PubMed
Article
CAS
Google Scholar
Uchida Y, Nakamura F, Tomaru T, Morita T, Oshima T, Sasaki T, et al. Prediction of acute coronary syndromes by percutaneous coronary angioscopy in patients with stable angina. Am Heart J. 1995;130:195–203.
PubMed
Article
CAS
Google Scholar
Takano M, Mizuno K, Okamatsu K, Yokoyama S, Ohba T, Sakai S. Mechanical and structural characteristics of vulnerable plaques: analysis by coronary angioscopy and intravascular ultrasound. J Am Coll Cardiol. 2001;38:99–104.
PubMed
Article
CAS
Google Scholar
Inami S, Ishibashi F, Waxman S, Okamatsu K, Seimiya K, Takano M, et al. Multiple yellow plaques assessed by angioscopy with quantitative colorimetry in patients with myocardial infarction. Circ J. 2008;72:399–403.
PubMed
Article
Google Scholar
Lehmann KG, van Suylen RJ, Stibbe J, Slager CJ, Oomen JA, Maas A, et al. Composition of human thrombus assessed by quantitative colorimetric angioscopicanalysis. Circulation. 1997;96:3030–41.
PubMed
CAS
Google Scholar
Ishibashi F, Mizuno K, Kawamura A, Singh PP, Nesto RW, Waxman S. High yellow color intensity by angioscopy with quantitative colorimetry to identify high-risk features in culprit lesions of patients with acute coronary syndromes. Am J Cardiol. 2007;100:1207–11.
PubMed
Article
Google Scholar
Uchida Y, Uchida Y, Kawai S, Kanamaru R, Sugiyama Y, Tomaru T, et al. Detection of vulnerable coronary plaques by color fluorescent angioscopy. J Am Cardiol Imaging. 2010;3:398–408.
Article
Google Scholar
Muller JE, Tofler GH, Stone PH. Circadian variation and triggers of onset of acute cardiovascular disease. Circulation. 1989;79:733–43.
PubMed
CAS
Google Scholar
Falk E. Stable versus unstable atherosclerosis: clinical aspects. Am Heart J. 1999;138:S421–5.
PubMed
Article
CAS
Google Scholar
Virmani R, Burke AP, Farb A, Kolodgie FD. Pathology of the unstable plaque. Prog Cardiovasc Dis. 2002;44:349–56.
PubMed
Article
Google Scholar
Thieme T, Wernecke KD, Meyer R, Brandenstein E, Habedank D, Hinz A, et al. Angioscopic evaluation of atherosclerotic plaques: validation by histomorphologic analysis and association with stable and unstable coronary syndromes. J Am Coll Cardiol. 1996;28:1–6.
PubMed
Article
CAS
Google Scholar
Isoda K, Satomura K, Ohsuzu F. Pathological characterization of yellow and white plaques under angioscopy. Int J Angiol. 2001;10:183–7.
Article
Google Scholar
Miyamoto A, Prieto AR, Friedl SE, Lin FC, Muller JE, Nesto RW, et al. Atheromatous plaquecap thickness can be determined by quantitative color analysis during angioscopy: implications for identifying the vulnerable plaque. Clin Cardiol. 2004;27:9–15.
PubMed
Article
Google Scholar
Ueda Y, Ohtani T, Shimizu M, Hirayama A, Kodama K. Assessment of plaque vulnerability by angioscopic classification of plaque color. Am Heart J. 2004;148:333–5.
PubMed
Article
Google Scholar
Mizuno K, Miyamoto A, Satomura K, Kurita A, Arai T, Yanagida S, et al. Angioscopic coronarymacromorphology in patients with acute coronarydisorders. Lancet. 1991;337:809–12.
PubMed
Article
CAS
Google Scholar
Wang Z, Inami S, Kirinoki S, Yamamoto H, Takagi G, Aoki S, et al. Angioscopic study of silent plaque disruption in non-ischemic related coronary artery in patients with stable ischemic heart disease. Int Heart J. 2010;51:383–7.
PubMed
Article
Google Scholar
Ohtani T, Ueda Y, Mizote I, Oyabu J, Okada K, Hirayama A, et al. Number of yellow plaques detected in a coronary artery is associated with future risk of acute coronary syndrome: detection of vulnerable patients by angioscopy. J Am Coll Cardiol. 2006;47:2194.
PubMed
Article
Google Scholar
Saratani K, Iwanaga Y, Hayashi T, Miyazaki S. Impact of plaque color by angioscopic evaluation on long-term clinical outcomes in patients with acute myocardial infarction undergoing percutaneous coronary intervention. Atherosclerosis. 2010;211:170–5.
PubMed
Article
CAS
Google Scholar
Hayashi T, Kiyoshima T, Matsuura M, Ueno M, Kobayashi N, Yabushita H, Kurooka A, Taniguchi M, Miyataka M, Kimura A, Ishikawa K. Plaque erosion in the culprit lesion is prone to develop a smaller myocardial infarction size compared with plaque rupture. Am Heart J. 2005;149:284–90.
PubMed
Article
Google Scholar
Mizote I, Ueda Y, Ohtani T, Shimizu M, Takeda Y, Oka T, et al. Distal protection improved reperfusion and reduced left ventricular dysfunction in patients with acute myocardial infarction who had angioscopically defined ruptured plaque. Circulation. 2005;112:1001–7.
PubMed
Article
Google Scholar
Mizuno K, Satomura K, Miyamoto A, Arakawa K, Shibuya T, Arai T, et al. Angioscopic evaluation of coronary-artery thrombi in acute coronary syndromes. N Engl J Med. 1992;326:287–91.
PubMed
Article
CAS
Google Scholar
Miuzuno K, Miyamoto A, Isojima K, Kurita A, Senoo A, Arai T, et al. A serial observation of coronary thrombi in vivo by a new percutaneous trans coronary angioscopy. Angiology. 1992;43:91–9.
Article
Google Scholar
Yamamoto M, Takano M, Okamatsu K, Murakami D, Inami S, Xie Y, et al. Relationship between thin cap fibroatheroma identified by virtual histology and angioscopic yellow plaque in quantitative analysis with colorimetry. Circ J. 2009;73:497–502.
PubMed
Article
Google Scholar
Kawano T, Honye J, Takayama T, Yokoyama S, Chiku M, Chiku M, Ando H, et al. Compositional analysis of angioscopic yellow plaques with intravascular ultrasound radiofrequency data. Int J Cardiol. 2008;125:74–8.
PubMed
Article
Google Scholar
Ariani M, Siegel R, Fishbein MC. Histopathologic validation of angioscopy and intravascular ultrasound. Circulation. 1991;84:109–17.
PubMed
Google Scholar
Nasu K, Tsuchikane E, Katoh O, Vince DG, Margolis PM, Virmani R, et al. Impact of intramural thrombus in coronary arteries on the accuracy of tissue characterization by in vivo intravascular ultrasound radiofrequency data analysis. Am J Cardiol. 2008;101:1079–83.
PubMed
Google Scholar
Yabushita H, Bouma BE, Houser SL, Aretz HT, Jang IK, Schlendorf KH, et al. Characterization of human atherosclerosis by optical coherence tomography. Circulation. 2002;106:1640–5.
PubMed
Article
Google Scholar
Kubo T, Imanishi T, Takarada S, Kuroi A, Ueno S, Yamano T, et al. Implication of plaque color classification for assessing plaque vulnerability: acoronaryangioscopy and optical coherence tomography investigation. J Am Coll Cardiol Interv. 2008;1:74–80.
Google Scholar
Takano M, Jang IK, Inami S, Yamamoto M, Murakami D, Okamatsu K, et al. In vivo comparison of optical coherence tomography and angioscopy for the evaluation of coronary plaque characteristics. Am J Cardiol. 2008;101:471–6.
PubMed
Article
Google Scholar
Kubo T, Imanishi T, Takarada S, Kuroi A, Ueno S, Yamano T, et al. Assessment of culprit lesion morphology in acute myocardial infarction: ability of optical coherence tomography compared with intravascular ultrasound and coronary angioscopy. J Am Coll Cardiol. 2007;50:933–9.
PubMed
Article
Google Scholar
Strumpf RK, Heuser RR, Eagan JT. Angioscopy: a valuable tool in the deployment and evaluation of intracoronary stents. Am Heart J. 1993;126:1204–8.
PubMed
Article
CAS
Google Scholar
Takano M, Ohba T, Inami S, Seimiya K, Sakai S, Mizuno K. Angioscopic differences in neointimal coverage and in persistence of thrombus between sirolimus-eluting stents and bare metal stent after a 6-month implantation. Eur Heart J. 2006;27:2189–95.
PubMed
Article
CAS
Google Scholar
Oyabu J, Ueda Y, Ogasawara N, Okada K, Hirayama A, Kodama K. Angioscopic evaluation of neointima coverage: Sirolimus drug eluting stent versus bare metal stent. Am Heart J. 2006;152:1168–74.
PubMed
Article
CAS
Google Scholar
Sakai S, Mizuno K, Yokoyama S, Tanabe J, Shinada T, Seimiya K, et al. Morphologic changes in infarct-related plaque after coronarystent placement: a serial angioscopy study. J Am Coll Cardiol. 2003;42:1558–65.
PubMed
Article
Google Scholar
Ueda Y, Nanto S, Komamura K, Kodama K. Neointimal coverage of stents in human coronary arteries observed by angioscopy. J Am Coll Cardiol. 1994;23:341–6.
PubMed
Article
CAS
Google Scholar
Yokoyama S, Takano M, Sakai S, Ohba T, Seimiya K, Okamatsu K, et al. Difference in neointimal proliferation between ruptured and non-ruptured segments after bare metal stent implantation. Int Heart J. 2010;51:7–12.
PubMed
Article
Google Scholar
Asakura M, Ueda Y, Nanto S, Hirayama A, Adachi T, Kitakaze M, et al. Remodeling of in-stent neointima, which become thinner and transparent over 3 years: serial angiographic and angioscopic follow-up. Circulation. 1998;97:2003–6.
PubMed
CAS
Google Scholar
Isner JM, Kearney M, Bortman S, Passeri J. Apoptosis in human atherosclerosis and restenosis. Circulation. 1995;91:2703–11.
PubMed
CAS
Google Scholar
Yokoyama S, Takano M, Yamamoto M, Inami S, Sakai S, Okamatsu K, et al. Extended follow-up by serial angioscopic observationfor bare-metal stents in native coronary arteries: from healing response to atherosclerotic transformation of neointima. Circ Cardiovasc Interv. 2009;2:205–12.
PubMed
Article
Google Scholar
Kotani J, Awata M, Nanto S, Uematsu M, Oshima F, Minamiguchi H, et al. Incomplete neointimal coverage of sirolimus-eluting stents: angioscopic findings. J Am Coll Cardiol. 2006;47:2108–11.
PubMed
Article
CAS
Google Scholar
Awata M, Kotani J, Uematsu M, Morozumi T, Ohnishi T, Iida O, et al. Serial angioscopic evidence of incomplete neointimal coverage after sirolimus-eluting stent implantation: comparison with bare-metal stents. Circulation. 2007;116:910–6.
PubMed
Article
CAS
Google Scholar
Takano M, Mizuno K. Late coronary thrombosis in a sirolimus-eluting stent due to the lack of neointimal coverage. Eur Heart J. 2006;27:1133.
PubMed
Article
Google Scholar
Awata M, Nanto S, Uematsu M, Morozumi T, Watanabe T, Onishi T, et al. Angioscopic comparison of neointimal coverage between zotarolimus and sirolimus-eluting stents. J Am Coll Cardiol. 2008;52:787–92.
Article
Google Scholar
Awata M, Nanto S, Uematsu M, Morozumi T, Watanabe T, Onishi T, et al. Heterogeneous arterial healing in patients following paclitaxel-eluting stent implantation: comparison with sirolimus-eluting stents. J Am Coll Cardiol Interv. 2009;2:453–8.
Google Scholar
Hara M, Nishino M, Taniike M, Makino N, Kato H, Egami Y, et al. High incidence of thrombus formation at 18 months after paclitaxel-eluting stent implantation: angioscopic comparison with sirolimus-eluting stent. Am Heart J. 2010;159:905–10.
PubMed
Article
CAS
Google Scholar
Takano M, Ohba T, Inami S, Seimiya K, Sakai S, Mizuno K. Angioscopic differences in neointimal coverage and in persistenceof thrombus between sirolimus-eluting stents and bare metal stentsafter a 6-month implantation. Eur Heart J. 2006;27:2189–5.
Google Scholar
Higo T, Ueda Y, Oyabu J, Okada K, Nishio M, Hirata A, et al. Atherosclerotic and thrombogenic neointima formed over sirolimusdrug-eluting stent: an angioscopic study. J Am Coll Cardiol Imaging. 2009;2:616–24.
Google Scholar
Whelan DM, van der Giessen WJ, Krabbendam SC, van Vliet EA, Verdouw PD, Serruys PW, et al. Biocompatibility of phosphorylcholine coated stents in normal porcine coronary arteries. Heart. 2000;83:338–45.
PubMed
Article
CAS
Google Scholar