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[1]Huang D,Swanson EA,Lin CP,et al.Optical coherence tomography[J].Science,1991,254(5035):1178-1181.
[2]Jang IK,Tearney G,Bouma B.Visualization of tissue prolapse between coronary stent struts by optical coherence tomography:comparison with intravascular ultrasound[J].Circulation,2001,104(22):2754.
[3]Terashima M,Kaneda H,Suzuki T.The Role of Optical Coherence Tomography in Coronary Intervention[J].Korean J Intern Med,2012,27(1):1.
[4]Bezerra HG,Attizzani GF,Sirbu V,et al.Optical Coherence Tomography Versus Intravascular Ultrasound to Evaluate Coronary Artery Disease and Percutaneous Coronary Intervention[J].JACC Cardiovasc Interv,2013,6(3):228-236.
[5]Stone GW,Maehara A,Lansky AJ,et al.A prospective natural-history study of coronary atherosclerosis[J].N Engl J Med,2011,364(3):226-235.
[6]Yun KH,Mintz GS,Farhat N,et al.Relation between angiographic lesion severity,vulnerable plaque morphology and future adverse cardiac events(from the Providing Regional Observations to Study Predictors of Events in the Coronary Tree study)[J].Am J Cardiol,2012,110(4):471-477.
[7]Cheng JM,Garcia-Garcia HM,de Boer SP,et al.In vivo detection of high-risk coronary plaques by radiofrequency intravascular ultrasound and cardiovascular outcome:results of the ATHEROREMO-IVUS study[J].Eur Heart J,2014,35(10):639-647.
[8] Prati F,Regar E,Mintz GS,et al.Expert review document on methodology,terminology, and clinical applications of optical coherence tomography:physical principles,methodology of image acquisition,and clinical application for assessment of coronary arteries and atherosclerosis[J].Eur Heart J,2010,31(4):401-415.
[9]Tearney GJ,Regar E,Akasaka T,et al.Consensus standards for acquisition,measurement,and reporting of intravascular optical coherence tomography studies:a report from the International Working Group for Intravascular Optical Coherence Tomography Standardization and Validation[J].J Am Coll Cardiol,2012,59(12):1058-1072.
[10]Finn AV,Nakano M,Narula J,et al.Concept of vulnerable/unstable plaque[J].Arterioscler Thromb Vasc Biol,2010,30(7):1282-1292.
[11]Radu MD,Yamaji K,Garcia-Garcia HM,et al.Variability in the measurement of minimum fibrous cap thickness and reproducibility of fibroatheroma classification by optical coherence tomography using manual versus semi-automatic assessment[J].EuroIntervention,2016,12(8):e987-e997.
[12]Kume T,Akasaka T,Kawamoto T,et al.Measurement of the thickness of the fibrous cap by optical coherence tomography[J].Am Heart J,2006,152(4):751-755.
[13]Kume T,Okura H,Yamada R,et al.Frequency and spatial distribution of thin-cap fibroatheroma assessed by 3-vessel intravascular ultrasound and optical coherence tomography: an ex vivo validation and an initial in vivo feasibility study[J].Circ J,2009,73(6):1086-1091.
[14]Yabushita H,Bouma BE,Houser SL,et al.Characterization of human atherosclerosis by optical coherence tomography[J].Circulation,2002,106(13):1640-1645.
[15]Kawasaki M,Bouma BE,Bressner J,et al.Diagnostic accuracy of optical coherence tomography and integrated backscatter intravascular ultrasound images for tissue characterization of human coronary plaques[J].J Am Coll Cardiol,2006,48(1):81-88.
[16]Karanasos A,Ligthart JM,Witberg KT,et al.Calcified nodules:an underrated mechanism of coronary thrombosis?[J].JACC Cardiovasc Imaging,2012,5(10):1071-1072.
[17]Hao H,Fujii K,Shibuya M,et al.Different findings in a calcified nodule between histology and intravascular imaging such as intravascular ultrasound, optical coherence tomography, and coronary angioscopy[J].JACC Cardiovasc Interv,2014,7(8):937-938.
[18]Macneill BD,Jang IK,Bouma BE,et al.Focal and multi-focal plaque macrophage distributions in patients with acute and stable presentations of coronary artery disease[J].J Am Coll Cardiol,2004,44(5):972-979.
[19]de Gaetano M,Crean D,Barry M,et al.M1- and M2-Type Macrophage Responses Are Predictive of Adverse Outcomes in Human Atherosclerosis[J].Front Immunol,2016,7:275.
[20]Kim JB,Park K,Ryu J,et al.Intravascular optical imaging of high-risk plaques in vivo by targeting macrophage mannose receptors[J].Sci Rep,2016,6:22608.
[21]Kubo T,Imanishi T,Takarada S,et al.Assessment of culprit lesion morphology in acute myocardial infarction:ability of optical coherence tomography compared with intravascular ultrasound and coronary angioscopy[J].J Am Coll Cardiol,2007,50(10):933-939.
[22]Ino Y,Kubo T,Tanaka A,et al.Difference of culprit lesion morphologies between ST-segment elevation myocardial infarction and non-ST-segment elevation acute coronary syndrome: an optical coherence tomography study[J].JACC Cardiovasc Interv,2011,4(1):76-82.
[23]Lee T,Murai T,Yonetsu T,et al.Relationship between subclinical cardiac troponin I elevation and culprit lesion characteristics assessed by optical coherence tomography in patients undergoing elective percutaneous coronary intervention[J].Circ Cardiovasc Interv,2015,8(4).doi:10.1161/CIRCINTERVENTIONS.114.001727.
[24]Nakamura S,Inami S,Murai K,et al.Relationship between cholesterol crystals and culprit lesion characteristics in patients with stable coronary artery disease:an optical coherence tomography study[J].Clin Res Cardiol,2014,103(12):1015-1021.
[25]Dai J,Tian J,Hou J,et al.Association between cholesterol crystals and culprit lesion vulnerability in patients with acute coronary syndrome:An optical coherence tomography study[J].Atherosclerosis,2016,247:111-117.
[26]D'Ascenzo F,Barbero U,Cerrato E,et al.Accuracy of intravascular ultrasound and optical coherence tomography in identifying functionally significant coronary stenosis according to vessel diameter:A meta-analysis of 2,581 patients and 2,807 lesions[J].Am Heart J,2015,169(5):663-673.
[27]Habara M,Nasu K,Terashima M,et al.Impact of frequency-domain optical coherence tomography guidance for optimal coronary stent implantation in comparison with intravascular ultrasound guidance[J].Circ Cardiovasc Interv,2012,5(2):193-201.
[28]Maehara A,Ben-Yehuda O,Ali Z,et al.Comparison of Stent Expansion Guided by Optical Coherence Tomography Versus Intravascular Ultrasound:The ILUMIEN II Study(Observational Study of Optical Coherence Tomography[OCT]in Patients Undergoing Fractional Flow Reserve [FFR]and Percutaneous Coronary Intervention)[J].JACC Cardiovasc Interv,2015,8(13):1704-1714.
[29]Wijns W,Shite J,Jones MR,et al.Optical coherence tomography imaging during percutaneous coronary intervention impacts physician decision-making:ILUMIEN I study[J].Eur Heart J,2015,36(47):3346-3355.
[30]Kolh P,Windecker S,Alfonso F,et al.2014 ESC/EACTS Guidelines on myocardial revascularization:the Task Force on Myocardial Revascularization of the European Society of Cardiology(ESC)and the European Association for Cardio-Thoracic Surgery (EACTS).Developed with the special contribution of the European Association of Percutaneous Cardiovascular Interventions(EAPCI)[J].Eur J Cardiothorac Surg,2014,46(4):517-592.
[31]Bech GJ,De Bruyne B,Pijls NH,et al.Fractional flow reserve to determine the appropriateness of angioplasty in moderate coronary stenosis:a randomized trial[J].Circulation,2001,103(24):2928-2934.
[32]Ali ZA,Maehara A,Généreux P,et al.Optical coherence tomography compared with intravascular ultrasound and with angiography to guide coronary stent implantation(ILUMIEN III: OPTIMIZE PCI):a randomised controlled trial[J].The Lancet,2016,388(10060):2618-2628.
[33]Falk E,Nakano M,Bentzon JF,et al.Update on acute coronary syndromes: the pathologists' view[J].Eur Heart J,2013,34(10):719-728.
[34]Jia H,Dai J,Hou J,et al.Effective anti-thrombotic therapy without stenting:intravascular optical coherence tomography-based management in plaque erosion(the EROSION study)[J].Eur Heart J,2017,38(11):792-800.
[35]Meneveau N,Ecarnot F.Optical Coherence Tomography to Optimize Results of Percutaneous Coronary Intervention in Patients with Non-ST-Elevation Acute Coronary Syndrome:Results of the Multicenter,Randomized DOCTORS Study(Does Optical Coherence Tomography Optimize Results of Stenting)[J].Circulation,2017,135(9):e142-e143.
[36]Prati F,Di Vito L,Biondi-Zoccai G,et al.Angiography alone versus angiography plus optical coherence tomography to guide decision-making during percutaneous coronary intervention: the Centro per la Lotta contro l'Infarto-Optimisation of Percutaneous Coronary Intervention(CLI-OPCI)study[J].EuroIntervention,2012,8(7):823-829.
[37]Cuesta J,Rivero F,Bastante T,et al.Optical Coherence Tomography Findings in Patients With Stent Thrombosis[J].Rev Esp Cardiol(Engl Ed),2017,70(12):1050-1058.
[38]Kubo T,Imanishi T,Kitabata H,et al.Comparison of vascular response after sirolimus-eluting stent implantation between patients with unstable and stable angina pectoris:a serial optical coherence tomography study[J].JACC Cardiovasc Imaging,2008,1(4):475-484.
[39]Soeda T,Uemura S,Park SJ,et al.Incidence and Clinical Significance of Poststent Optical Coherence Tomography Findings:One-Year Follow-Up Study From a Multicenter Registry[J].Circulation,2015,132(11):1020-1029.
[40]Chamie D,Bezerra HG,Attizzani GF,et al.Incidence, predictors,morphological characteristics,and clinical outcomes of stent edge dissections detected by optical coherence tomography[J].JACC Cardiovasc Interv,2013,6(8):800-813.
[41]Won H,Shin DH,Kim BK,et al.Optical coherence tomography derived cut-off value of uncovered stent struts to predict adverse clinical outcomes after drug-eluting stent implantation[J].Int J Cardiovasc Imaging,2013,29(6):1255-1263.
[42]Finn AV,Joner M,Nakazawa G,et al.Pathological correlates of late drug-eluting stent thrombosis:strut coverage as a marker of endothelialization[J].Circulation,2007,115(18):2435-2441.
[43]Matsumoto D,Shite J,Shinke T,et al.Neointimal coverage of sirolimus-eluting stents at 6-month follow-up:evaluated by optical coherence tomography[J].Eur Heart J,2007,28(8):961-967.
[44]Jang IK,Bouma BE,Kang DH,et al.Visualization of coronary atherosclerotic plaques in patients using optical coherence tomography:comparison with intravascular ultrasound[J].J Am Coll Cardiol,2002,39(4):604-609.
[45]Barlis P,Regar E,Serruys PW,et al.An optical coherence tomography study of a biodegradable vs. durable polymer-coated limus-eluting stent:a LEADERS trial sub-study[J].Eur Heart J,2010,31(2):165-176.
[46]Guagliumi G,Costa MA,Sirbu V,et al.Strut Coverage and Late Malapposition With Paclitaxel-Eluting Stents Compared With Bare Metal Stents in Acute Myocardial Infarction:Optical Coherence Tomography Substudy of the Harmonizing Outcomes With Revascularization and Stents in Acute Myocardial Infarction(HORIZONS-AMI)Trial[J].Circulation,2011,123(3):274-281.
[47]Varho V,Nammas W,Kiviniemi TO,et al.Comparison of two different sampling intervals for optical coherence tomography evaluation of neointimal healing response after coronary stent implantation[J].Int J Cardiol,2017,227:194-200.
[48]Souteyrand G,Amabile N,Mangin L,et al.Mechanisms of stent thrombosis analysed by optical coherence tomography:insights from the national PESTO French registry[J].Eur Heart J,2016,37(15):1208-1216.
[49]Kolh P,Windecker S,Alfonso F,et al.2014 ESC/EACTS Guidelines on myocardial revascularization:the Task Force on Myocardial Revascularization of the European Society of Cardiology(ESC)and the European Association for Cardio-Thoracic Surgery (EACTS).Developed with the special contribution of the European Association of Percutaneous Cardiovascular Interventions(EAPCI)[J].Eur J Cardiothorac Surg,2014,46(4):517-592.