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Measuring Absolute Coronary Flow and Microvascular Resistance by Thermodilution

journal contribution
posted on 2025-03-24, 14:50 authored by Marta Belmonte, Emanuele Gallinoro, Nico HJ Pijls, Dario Tino Bertolone, Danielle CJ Keulards, Michele Mattia Viscusi, Tatyana Storozhenko, Takuya Mizukami, Thabo Mahendiran, Ruiko Seki, Stephane Fournier, Annemiek de Vos, Julien Adjedj, Emanuele Barbato, Jeroen Sonck, Peter Damman, Thomas Keeble, Samer Fawaz, Alejandro Gutiérrez-Barrios, Valeria Paradies, Frederic Bouisset, Morton J Kern, William F Fearon, Carlos Collet, Bernard De Bruyne
Diagnosing coronary microvascular dysfunction remains challenging, primarily due to the lack of direct measurements of absolute coronary blood flow (Q) and microvascular resistance (Rμ). However, there has been recent progress with the development and validation of continuous intracoronary thermodilution, which offers a simplified and validated approach for clinical use. This technique enables direct quantification of Q and Rμ, leading to precise and accurate evaluation of the coronary microcirculation. To ensure consistent and reliable results, it is crucial to follow a standardized protocol when performing continuous intracoronary thermodilution measurements. This document aims to summarize the principles of thermodilution-derived absolute coronary flow measurements and propose a standardized method for conducting these assessments. The proposed standardization serves as a guide to ensure the best practice of the method, enhancing the clinical assessment of the coronary microcirculation.

History

Refereed

  • Yes

Volume

83

Issue number

6

Page range

699-709

Publication title

Journal of the American College of Cardiology

ISSN

0735-1097

Publisher

Elsevier BV

Location

United States

Language

  • eng

Item sub-type

Review

Media of output

Print

Affiliated with

  • School of Medicine Outputs