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血流储备分数

科研文章

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Fractional flow reserve in clinical practice: from wire-based invasive measurement to image-based computation Coronary Microcirculation Downstream Non-Infarct-Related Arteries in the Subacute Phase of Myocardial Infarction: Implications for Physiology-Guided Revascularization Fractional flow reserve derived from computed tomography coronary angiography in the assessment and management of stable chest pain: the FORECAST randomized trial Diagnostic accuracy of intracoronary optical coherence tomography-derived fractional flow reserve for assessment of coronary stenosis severity The impact of downstream coronary stenoses on fractional flow reserve assessment of intermediate left main disease Coronary Flow Reserve in the Instantaneous Wave-Free Ratio/Fractional Flow Reserve Era: Too Valuable to Be Neglected Coronary fractional flow reserve in bifurcation stenoses: what have we learned? Identification of High-Risk Plaques Destined to Cause Acute Coronary Syndrome Using Coronary Computed Tomographic Angiography and Computational Fluid Dynamics Prognostic Implications of Plaque Characteristics and Stenosis Severity in Patients With Coronary Artery Disease Coronary CT Angiographic and Flow Reserve-Guided Management of Patients With Stable Ischemic Heart Disease

Original Research2018 Aug 13;11(15):1423-1433.

JOURNAL:JACC Cardiovasc Interv. Article Link

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

Lee JM, Choi KH, Koo BK 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.


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


METHODSA 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.


RESULTSThe 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).


CONCLUSIONSPatients 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).


Copyright © 2018 American College of Cardiology Foundation. Published by Elsevier Inc. All rights reserved.