CBS 2019
CBSMD教育中心
English

科学研究

科研文章

荐读文献

Quantitative angiography methods for bifurcation lesions: a consensus statement update from the European Bifurcation Club IVUS Guidance Is Associated With Better Outcome in Patients Undergoing Unprotected Left Main Coronary Artery Stenting Compared With Angiography Guidance Alone Management of Acute Myocardial Infarction During the COVID-19 Pandemic From Nonclinical Research to Clinical Trials and Patient-registries: Challenges and Opportunities in Biomedical Research High-Risk Coronary Atherosclerosis: Is It the Plaque Burden, the Calcium, the Lipid, or Something Else? HFpEF: From Mechanisms to Therapies Prognostic Effect and Longitudinal Hemodynamic Assessment of Borderline Pulmonary Hypertension Current Interventions for the Left Main Bifurcation Comparative analysis of recurrent events after presentation with an index myocardial infarction or ischaemic stroke Wearable Cardioverter-Defibrillator Therapy for the Prevention of Sudden Cardiac Death A Systematic Review and Meta-Analysis

Original Research2017 Dec 1;120(11):1920-1925

JOURNAL:Am J Cardiol. Article Link

Comparison of Accuracy of One-Use Methods for Calculating Fractional Flow Reserve by Intravascular Optical Coherence Tomography to That Determined by the Pressure-Wire Method

Jang SJ, Ahn JM, Oh WY et al. Keywords: Calculating Fractional Flow Reserve; Intravascular Optical Coherence Tomography; Pressure-Wire Method

ABSTRACT


Although the identification of the hemodynamic significance of coronary lesions becomes important for revascularization strategy, the potential role of 3-dimensional high-resolution intracoronary optical coherence tomography (OCT) for predicting functional significance of coronary lesions remains unclear. We assessed the diagnostic performance of 2 computational approaches for deriving fractional flow reserve (FFR) from intravascular OCT images. We developed 2 methods to derive FFR-OCT by AFD (FFR-OCTAFD) and FFR-OCT by CFD (FFR-OCTCFD). Among 217 eligible patients between 2011 and 2014, 104 were included for data analysis (9 for derivation, 95 for validation). Luminal geometries from 3-dimensional OCT were used for both FFR-OCTAFD and FFR-OCTCFD calculations. The analytical fluid dynamics method calculated FFR from the blood flow resistance estimated using Poiseuille's law. For computational fluid dynamics, we numerically solved the Navier-Stokes equation in a steady-state flow with the distal porous media model for the capillary vessels. We examined the diagnostic performance of FFR-OCTAFD and FFR-OCTCFD compared with the pressure-wire measured FFR. The accuracy, sensitivity, specificity, PPV, and NPV were 86%, 65%, 94%, 81%, and 88% for FFR-OCTAFD and 86%, 73%, 91%, 76%, and 90% for FFR-OCTCFD. The area under the curve of the receiver-operating characteristic curve was 0.88 for FFR-OCTAFD and 0.86 for FFR-OCTCFD. FFR-OCTAFD and FFR-OCTCFD showed a strong linear correlation with the measured FFR (r = 0.631; p <0.001, r = 0.655; p <0.001, respectively). FFR derived from high-resolution volumetric OCT images showed high diagnostic performance for the detection of coronary ischemia. In conclusion, OCT-derived FFR may be useful for guiding the management of coronary artery disease.


Copyright © 2017 Elsevier Inc. All rights reserved.