CBS 2019
CBSMD教育中心
中 文

科学研究

Abstract

Recommended Article

Cardiac Troponin Composition Characterization after Non ST-Elevation Myocardial Infarction: Relation with Culprit Artery, Ischemic Time Window, and Severity of Injury Left Main Stenting: What We Have Learnt So Far? Myocardial Inflammation Predicts Remodeling and Neuroinflammation After Myocardial Infarction Comparison in prevalence, predictors, and clinical outcome of VSR versus FWR after acute myocardial infarction: The prospective, multicenter registry MOODY trial-heart rupture analysis Patient Characteristics Associated With Antianginal Medication Escalation and De-Escalation Following Chronic Total Occlusion Percutaneous Coronary Intervention: Insights From the OPEN CTO Registry Uptake of Drug-Eluting Bioresorbable Vascular Scaffolds in Clinical Practice : An NCDR Registry to Practice Project Natural History of Spontaneous Coronary Artery Dissection With Spontaneous Angiographic Healing Contemporary Diagnosis and Management of Patients With Myocardial Infarction in the Absence of Obstructive Coronary Artery Disease: A Scientific Statement From the American Heart Association

Original ResearchVolume 11, Issue 15, August 2018

JOURNAL:JACC Cardiovasc Interv. Article Link

Prognostic Implication of Thermodilution Coronary Flow Reserve in Patients Undergoing Fractional Flow Reserve Measurement

JM Lee, KH Choi, D Hwang et al. Keywords: coronary artery disease; coronary flow reserve; fractional flow reserve; myocardial ischemia; percutaneous coronary intervention; prognosis

ABSTRACT


OBJECTIVES - This study investigated the prognostic implication of coronary flow reserve (CFR) in patients who underwent fractional flow reserve (FFR) measurement.


BACKGROUND - Limited data are available regarding the long-term prognosis associated with thermodilution CFR in patients with coronary artery disease.

METHODS - A total of 519 patients (737 vessels) who did not undergo revascularization were classified according to FFR and CFR values. Low FFR and low CFR were defined with upper thresholds of 0.8 and 2.0, respectively. FFR and CFR were measured by a pressure-temperature sensor–tipped wire. Clinical outcomes were assessed by the vessel-oriented composite outcome (VOCO) (a composite of cardiac death, vessel-specific myocardial infarction, and vessel-specific revascularization) during 5 years of follow-up.

RESULTS - The categorical agreement (kappa = 0.080; p = 0.024) between FFR and CFR were modest, and 30.6% of the population showed discordant results between FFR and CFR. During 5 years of follow-up, patients with low CFR had a significantly higher risk of VOCO than did those with high CFR (hazard ratio [HR]: 3.171; 95% CI: 1.664 to 6.042; p < 0.001). Among patients with high FFR, there were no differences in clinical risk factor profiles, FFR, or stenosis severity between the high-CFR and low-CFR groups, and low CFR was an independent predictor for VOCO (HR: 4.999; 95% CI: 2.104 to 11.879; p < 0.001). In a 4-group classification according to both FFR and CFR, patients with low FFR and low CFR had the highest risk of VOCO (17.9%; overall p < 0.001).

CONCLUSIONS - Patients with low CFR had a significantly higher risk of clinical events during 5 years of follow-up. Low CFR was an independent predictor for patient-oriented composite outcome among patients with high FFR. These results support the value of CFR in patients who undergo FFR measurement. (Clinical, Physical and Prognostic Implication of Microvascular Status; NCT02186093)