医学
部分流量储备
心脏病学
冠状动脉血流储备
内科学
反应性充血
血流
血管阻力
血流动力学
冠状动脉造影
心肌梗塞
作者
Bernard De Bruyne,Nico H.J. Pijls,Emanuele Gallinoro,Alessandro Candreva,Stephane Fournier,Daniëlle C J Keulards,Jeroen Sonck,M. B. Van't Veer,Emanuele Barbato,Jozef Bartunek,Marc Vanderheyden,Eric Wyffels,Annemiek De Vos,Mohamed Farissi,Pim A.L. Tonino,Olivier Muller,Carlos Collet,William F. Fearon
标识
DOI:10.1016/j.jacc.2021.08.017
摘要
The need for a quantitative and operator-independent assessment of coronary microvascular function is increasingly recognized. We propose the theoretical framework of microvascular resistance reserve (MRR) as an index specific for the microvasculature, independent of autoregulation and myocardial mass, and based on operator-independent measurements of absolute values of coronary flow and pressure. In its general form, MRR equals coronary flow reserve (CFR) divided by fractional flow reserve (FFR) corrected for driving pressures. In 30 arteries, pressure, temperature, and flow velocity measurements were obtained simultaneously at baseline (BL), during infusion of saline at 10 mL/min (rest) and 20 mL/min (hyperemia). A strong correlation was found between continuous thermodilution-derived MRR and Doppler MRR (r = 0.88; 95% confidence interval: 0.72-0.93; P < 0.001). MRR was independent from the epicardial resistance, the lower the FFR value, the greater the difference between MRR and CFR. Therefore, MRR is proposed as a specific, quantitative, and operator-independent metric to quantify coronary microvascular dysfunction.
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