SianosGMorelMAKappeteinAP. The SYNTAX Score: an angiographic tool grading the complexity of coronary artery disease. EuroIntervention. 2005;1(2):219–227.
2.
PapadopoulouSLGirasisCDharampalA. CT-SYNTAX score: a feasibility and reproducibility Study. JACC Cardiovasc Imaging. 2013;6(3):413–415.
3.
WindeckerSKolhPAlfonsoF. 2014ESC/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). Eur Heart J. 2014;35(37):2541–2619.
4.
GargSSarnoGSerruysPW. Prediction of 1-year clinical outcomes using the SYNTAX score in patients with acute ST-segment elevation myocardial infarction undergoing primary percutaneous coronary intervention: a substudy of the STRATEGY (Single High-Dose Bolus Tirofiban and Sirolimus-Eluting Stent Versus Abciximab and Bare-Metal Stent in Acute Myocardial Infarction) and MULTISTRATEGY (Multicenter Evaluation of Single High-Dose Bolus Tirofiban Versus Abciximab With Sirolimus-Eluting Stent or Bare-Metal Stent in Acute Myocardial Infarction Study) trials. JACC Cardiovasc Interv. 2011;4(1):66–75.
5.
GirasisCGargSRaberL. SYNTAX score and Clinical SYNTAX score as predictors of very long-term clinical outcomes in patients undergoing percutaneous coronary interventions: a substudy of SIRolimus-eluting stent compared with pacliTAXel-eluting stent for coronary revascularization (SIRTAX) trial. Eur Heart J. 2011;32(24):3115–3127.
6.
FarooqVvan KlaverenDSteyerbergEW. Anatomical and clinical characteristics to guide decision making between coronary artery bypass surgery and percutaneous coronary intervention for individual patients: development and validation of SYNTAX score II. Lancet. 2013;381(9867):639–650.
7.
GargSSarnoGGarcia-GarciaHM. A new tool for the risk stratification of patients with complex coronary artery disease: the Clinical SYNTAX Score. Circ Cardiovasc Interv. 2010;3(4):317–326.
8.
ZhangBPeiCZhangYSunYMengS. High resting heart rate and high BMI predicted severe coronary atherosclerosis burden in patients with stable angina pectoris by SYNTAX score. Angiology. 2018;69(5):380–386.
9.
YilmazSSenFAkbogaMK. The relationship between resting heart rate and SYNTAX score in patients with stable coronary artery disease. Angiology. 2017;68(2):168–173.
10.
PiwonskaAPiotrowskiWBrodaG. The relationship between resting heart rate and atherosclerosis risk factors. Kardiol Pol. 2008;66(10):1069–1075; discussion 76-78.
11.
CooneyMTVartiainenELaatikainenTJuoleviADudinaAGrahamIM. Elevated resting heart rate is an independent risk factor for cardiovascular disease in healthy men and women. Am Heart J. 2010;159(4):612–619e3.
12.
KannelWBKannelCPaffenbargerRSJrCupplesLA. Heart rate and cardiovascular mortality: the Framingham Study. Am Heart J. 1987;113(6):1489–1494.
13.
GiannoglouGDChatzizisisYSZamboulisCParcharidisGEMikhailidisDPLouridasGE. Elevated heart rate and atherosclerosis: an overview of the pathogenetic mechanisms. Int J Cardiol. 2008;126(3):302–312.
14.
GiannoglouGDGiannopoulosAAChatzizisisYS. Lowering heart rate post revascularization: angina and quality of life improvement. Angiology. 2017;68(1):5–7.
15.
ChatzizisisYSJonasMCoskunAU. Prediction of the localization of high-risk coronary atherosclerotic plaques on the basis of low endothelial shear stress: an intravascular ultrasound and histopathology natural history study. Circulation. 2008;117(8):993–1002.
16.
ChatzizisisYSCoskunAUJonasMEdelmanERFeldmanCLStonePH. Role of endothelial shear stress in the natural history of coronary atherosclerosis and vascular remodeling: molecular, cellular, and vascular behavior. J Am Coll Cardiol. 2007;49(25):2379–2393.
17.
AndreouIAntoniadisAPShishidoK. How do we prevent the vulnerable atherosclerotic plaque from rupturing? Insights from in vivo assessments of plaque, vascular remodeling, and local endothelial shear stress. J Cardiovasc Pharmacol Ther. 2015;20(3):261–275.
18.
ChatzizisisYSToutouzasKGiannopoulosAA. Association of global and local low endothelial shear stress with high-risk plaque using intracoronary 3D optical coherence tomography: introduction of ‘shear stress score’. Eur Heart J Cardiovasc Imaging. 2016;18(8):888–897.
19.
The Global Burden of Metabolic Risk Factors for Chronic Diseases Collaboration (BMI Mediated Effects), LuYHajifathalianKEzzatiM. Metabolic mediators of the effects of body-mass index, overweight, and obesity on coronary heart disease and stroke: a pooled analysis of 97 prospective cohorts with 1.8 million participants. Lancet. 2014;383(9921):970–983.
20.
GurmHSWhitlowPLKipKE. The impact of body mass index on short- and long-term outcomes inpatients undergoing coronary revascularization. Insights from the bypass angioplasty revascularization investigation (BARI). J Am Coll Cardiol. 2002;39(5):834–840.
21.
RubinshteinRHalonDAJaffeRShahlaJLewisBS. Relation between obesity and severity of coronary artery disease in patients undergoing coronary angiography. Am J Cardiol. 2006;97(9):1277–1280.
22.
LabountyTMGomezMJAchenbachS. Body mass index and the prevalence, severity, and risk of coronary artery disease: an international multicentre study of 13,874 patients. Eur Heart J Cardiovasc Imaging. 2013;14(5):456–463.
23.
GargSGirasisCSarnoG. The SYNTAX score revisited: a reassessment of the SYNTAX score reproducibility. Catheter Cardiovasc Interv. 2010;75(6):946–952.
24.
KernerAAbadiSAbergelE. Direct comparison between coronary computed tomography and invasive angiography for calculation of SYNTAX score. EuroIntervention. 2013;8(12):1428–1434.