Related Experiment Video
Updated: Nov 1, 2025

Non-invasive Assessment of Microvascular and Endothelial Function
Published on: January 29, 2013
Simplified Assessment of the Index of Microvascular Resistance
Monika Kodeboina1,2, Sakura Nagumo1,3, Daniel Munhoz1,2,4
1Cardiovascular Center Aalst, OLV Clinic, Aalst, Belgium.
Background:
To validate a simplified invasive method for the calculation of the index of microvascular resistance (IMR).
Methods:
This is a prospective, single-center study of patients with chronic coronary syndromes presenting with nonobstructive coronary artery disease. IMR was obtained using both intravenous (IV) adenosine and intracoronary (IC) papaverine. Each IMR measurement was obtained in duplicate. The primary objective was the agreement between IMR acquired using adenosine and papaverine. Secondary objectives include reproducibility of IMR and time required for the IMR measurement.
Results:
One hundred and sixteen IMR measurements were performed in 29 patients. The mean age was 68.8 ± 7.24 years, and 27.6% was diabetics. IMR values were similar between papaverine and adenosine (17.7 ± 7.26 and 20.1 ± 8.6, p=0.25; Passing-Bablok coefficient A 0.58, 95% CI -2.42 to 3.53; coefficient B 0.90, 95% CI -0.74 to 1.07). The reproducibility of IMR was excellent with both adenosine and papaverine (ICC 0.78, 95% CI 0.63 to 0.88 and ICC 0.93, 95% CI 0.87 to 0.97). The time needed for microvascular assessment was significantly shortened by the use of IC papaverine (3.23 (2.84, 3.78) mins vs. 5.48 (4.94, 7.09) mins, p < 0.0001).
Conclusion:
IMR can be reliably measured using IC papaverine with similar results compared to intravenous infusion of adenosine with increased reproducibility and reduced procedural time. This approach simplifies the invasive assessment of the coronary microcirculation in the catheterization laboratory.
More Related Videos
09:33A Methodological Approach to Non-invasive Assessments of Vascular Function and Morphology
Published on: February 7, 2015
04:44Author Spotlight: Enhancing Vascular Function and Physical Capacity in Cardiovascular Disease Through Novel Interventions and NIRS Technology
Published on: March 22, 2024