医学
心脏病学
丸(消化)
部分流量储备
再现性
内科学
冠状动脉疾病
血流动力学
冠状动脉血流储备
冠状动脉造影
心肌梗塞
统计
数学
作者
Emanuele Gallinoro,Dario Tino Bertolone,Estefania Fernandez-Peregrina,Pasquale Paolisso,Konstantinos Bermpeis,Giuseppe Esposito,Andrea Gomez-Lopez,Alessandro Candreva,Niya Mileva,Marta Belmonte,Takuya Mizukami,Stéphane Fournier,Marc Vanderheyden,Eric Wyffels,Jozef Bartunek,Jeroen Sonck,Emanuele Barbato,Carlos Collet,Bernard De Bruyne
出处
期刊:Eurointervention
[European Association of Percutaneous Cardiovascular Interventions]
日期:2023-06-01
卷期号:19 (2): e155-e166
被引量:103
标识
DOI:10.4244/eij-d-22-00772
摘要
BACKGROUND: A bolus thermodilution-derived index of microcirculatory resistance (IMR) has emerged as the standard for assessing coronary microvascular dysfunction (CMD). Continuous thermodilution has recently been introduced as a tool to quantify absolute coronary flow and microvascular resistance directly. Microvascular resistance reserve (MRR) derived from continuous thermodilution has been proposed as a novel metric of microvascular function, which is independent of epicardial stenoses and myocardial mass. AIMS: We aimed to assess the reproducibility of bolus and continuous thermodilution in assessing coronary microvascular function. METHODS: Patients with angina and non-obstructive coronary artery disease (ANOCA) at angiography were prospectively enrolled. Bolus and continuous intracoronary thermodilution measurements were obtained in duplicate in the left anterior descending artery (LAD). Patients were randomly assigned in a 1:1 ratio to undergo either bolus thermodilution first or continuous thermodilution first. RESULTS: (variability: 12.7±10.4% continuous vs 31.26±24.85% bolus; p<0.001). MRR showed a higher reproducibility than IMR (variability 12.4±10.1% continuous vs 24.2±19.3% bolus; p<0.001). No correlation was found between MRR and IMR (r=0.1, 95% confidence interval: -0.09 to 0.29; p=0.305). CONCLUSIONS: In the assessment of coronary microvascular function, continuous thermodilution demonstrated significantly less variability on repeated measurements than bolus thermodilution.
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