Coronary artery size based on intravascular ultrasound in Southeast Asia population

Neumann F-J, Sousa-Uva M, Ahlsson A, Alfonso F, Banning AP, Benedetto U et al (2019) 2018 ESC/EACTS Guidelines on myocardial revascularization. Eur Heart J 40:87–165

Article  PubMed  Google Scholar 

Mintz GS, Matsumura M, Ali Z, Maehara A (2022) Clinical utility of intravascular imaging: past, present, and future. Cardiovasc Imaging 15:1799–1820

Google Scholar 

Goel PK, Vora PL, Sahu AK, Khanna R (2021) Left main coronary artery diameter–a correlation between intravascular ultrasound and quantitative coronary angiography. Indian Heart J 73:660–663

Article  PubMed  PubMed Central  Google Scholar 

Räber L, Mintz GS, Koskinas KC, Johnson TW, Holm NR, Onuma Y et al (2018) Clinical use of intracoronary imaging. Part 1: guidance and optimization of coronary interventions. An expert consensus document of the European Association of Percutaneous Cardiovascular Interventions. Eur Heart J 39:3281–3300

Article  PubMed  Google Scholar 

Lee JM, Choi KH, Bin SY, Lee J-Y, Lee S-J, Lee SY et al (2023) Intravascular imaging–guided or angiography-guided complex PCI. N Engl J Med 388:1668–1679

Article  PubMed  Google Scholar 

Bergmark BA, Osborn EA, Ali ZA, Gupta A, Kolli KK, Prillinger JB et al (2023) association between intracoronary imaging during pci and clinical outcomes in a real-world US medicare population. J Soc Cardiovasc Angiogr Interv 2:100556

PubMed  Google Scholar 

Smilowitz NR, Mohananey D, Razzouk L, Weisz G, Slater JN (2018) Impact and trends of intravascular imaging in diagnostic coronary angiography and percutaneous coronary intervention in inpatients in the United States. Catheter Cardiovasc Interv 92:E410–E415

Article  PubMed  PubMed Central  Google Scholar 

Low AF, Wongpraparut N, Chunhamaneewat N, Jeamanukoolkit A, Jhung LT, Zhen-Vin L et al (2023) Clinical use of optical coherence tomography during percutaneous coronary intervention and coronary procedures in Southeast Asia: a survey-based expert consensus summary. AsiaIntervention 9:25

Article  PubMed  PubMed Central  Google Scholar 

Kim S, Apple S, Mintz GS, McMillan T, Caños DA, Maehara A et al (2004) The importance of gender on coronary artery size: In-vivo assessment by intravascular ultrasound. Clin Cardiol 27:291–294

Article  PubMed  Google Scholar 

Skowronski J, Cho I, Mintz GS, Wolny R, Opolski MP, Cha MJ et al (2020) Inter-ethnic differences in normal coronary anatomy between Caucasian (Polish) and Asian (Korean) populations. Eur J Radiol 130:109185

Article  PubMed  Google Scholar 

Reddy S, Kumar S, Kashyap JR, Rao R, Kadiyala V, Reddy H et al (2019) Coronary artery size in North Indian population–Intravascular ultrasound-based study. Indian Heart J 71:412–417

Article  PubMed  PubMed Central  Google Scholar 

Kozakova M, Paterni M, Bartolomucci F, Morizzo C, Rossi G, Galetta F et al (2007) Epicardial coronary artery size in hypertensive and physiologic left ventricular hypertrophy. Am J Hypertens 20:279–284

Article  PubMed  Google Scholar 

Hamirani YS, Nasir K, Avanes E, Kadakia J (2013) Budoff MJ (2013) Coronary artery diameter related to calcium scores and coronary risk factors as measured with multidetector computed tomography: a substudy of the ACCURACY trial. Texas Hear Inst J 40:261

Google Scholar 

Fried LP, Moore RD, Pearson TA (1986) Long-term effects of cigarette smoking and moderate alcohol consumption on coronary artery diameter: Mechanisms of coronary artery disease independent of atherosclerosis or thrombosis? Am J Med 80:37–44

Article  CAS  PubMed  Google Scholar 

Zindrou D, Taylor KM, Bagger JP (2006) Coronary artery size and disease in UK South Asian and Caucasian men. Eur J Cardio-Thoracic Surg 29:492–495

Article  Google Scholar 

Lip GYH, Rathore VS, Katira R, Watson RDS, Singh SP (1999) Do Indo-Asians have smaller coronary arteries? Postgrad Med J 75:463–466

Article  CAS  PubMed  PubMed Central  Google Scholar 

Rusinova RP, Mintz GS, Choi S-Y, Araki H, Hakim D, Sanidas E et al (2013) Intravascular ultrasound comparison of left main coronary artery disease between white and Asian patients. Am J Cardiol 111:979–984

Article  PubMed  Google Scholar 

Kang S-J, Ahn J-M, Song H, Kim W-J, Lee J-Y, Park D-W et al (2011) Comprehensive intravascular ultrasound assessment of stent area and its impact on restenosis and adverse cardiac events in 403 patients with unprotected left main disease. Circ Cardiovasc Interv 4:562–569

Article  PubMed  Google Scholar 

Maehara A, Mintz G, Serruys P, Kappetein A, Kandzari D, Schampaert E et al (2017) Impact of final minimal stent area by IVUS on 3-year outcome after PCI of left main coronary artery disease: the EXCEL trial. J Am Coll Cardiol 69:963

Article  Google Scholar 

Knuuti J, Wijns W, Saraste A, Capodanno D, Barbato E, Funck-Brentano C et al (2020) 2019 ESC Guidelines for the diagnosis and management of chronic coronary syndromes: the Task Force for the diagnosis and management of chronic coronary syndromes of the European Society of Cardiology (ESC). Eur Heart J 41:407–477

Article  PubMed  Google Scholar 

Unger T, Borghi C, Charchar F, Khan NA, Poulter NR, Prabhakaran D et al (2020) 2020 International Society of Hypertension global hypertension practice guidelines. Hypertension 75:1334–1357

Article  CAS  PubMed  Google Scholar 

Detection NCEP (US) (2002) EP on, Evaluation, Adults T of HBC in. Third report of the National Cholesterol Education Program (NCEP) Expert Panel on detection, evaluation, and treatment of high blood cholesterol in adults (Adult Treatment Panel III). International Medical Pub;

Cosentino F, Grant PJ, Aboyans V, Bailey CJ, Ceriello A, Delgado V et al (2020) 2019 ESC Guidelines on diabetes, pre-diabetes, and cardiovascular diseases developed in collaboration with the EASD: The Task Force for diabetes, pre-diabetes, and cardiovascular diseases of the European Society of Cardiology (ESC) and the European Associ. Eur Heart J 41:255–323

Article  PubMed  Google Scholar 

Dodge JT Jr, Brown BG, Bolson EL, Dodge HT (1992) Lumen diameter of normal human coronary arteries. Influence of age, sex, anatomic variation, and left ventricular hypertrophy or dilation. Circulation 86:232–246

Article  PubMed  Google Scholar 

Leung W-H, Stadius ML, Alderman EL (1991) Determinants of normal coronary artery dimensions in humans. Circulation 84:2294–2306

Article  CAS  PubMed  Google Scholar 

Punamiya K, Jha T, Punamiya V, Pradham J (2022) IVUS determination of normal left main stem artery size and plaque burden, and correlation with body surface area in an Indian population. AsiaIntervention 8:116–122

Article  PubMed  PubMed Central  Google Scholar 

İbrahim K, Dönmez Y, Yildirim A, Ömer G, Acele A, Demirtaş A et al (2020) Coronary artery dimensions, anatomic findings, and distributions of Southern Turkey. Dokuz Eylül Üniversitesi Tıp Fakültesi Derg 34:1–8

Article  Google Scholar 

Sheifer SE, Canos MR, Weinfurt KP, Arora UK, Mendelsohn FO, Gersh BJ et al (2020) Sex differences in coronary artery size assessed by intravascular ultrasound. Am Heart J 139:649–652

Article  Google Scholar 

Kornowski R, Lansky AJ, Mintz GS, Kent KM, Pichard AD, Satler LF et al (1997) Comparison of men versus women in cross-sectional area luminal narrowing, quantity of plaque, presence of calcium in plaque, and lumen location in coronary arteries by intravascular ultrasound in patients with stable angina pectoris. Am J Cardiol 79:1601–1605

Article  CAS  PubMed  Google Scholar 

Paul AD, Ashraf SM, Ezhilan J, Vijayakumar S, Kapadiya A (2019) A milestone in prediction of the coronary artery dimensions from the multiple linear regression equation. Indian Heart J 71:328–333

Article  Google Scholar 

Roberts CS, Roberts WC (1980) Cross-sectional area of the proximal portions of the three major epicardial coronary arteries in 98 necropsy patients with different coronary events. Relationship to heart weight, age and sex. Circulation 62:953–959

Article  CAS  PubMed  Google Scholar 

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