Related Experiment Video
Updated: Oct 25, 2025

Evaluation of Coronary Flow Reserve After Myocardial Ischemia Reperfusion in Rats
Published on: June 28, 2019
Coronary Flow, Left Ventricular Contractile and Heart Rate Reserve in Non-Ischemic Heart Failure
Clarissa Borguezan Daros1, Quirino Ciampi2, Lauro Cortigiani3
1Cardiology Division, Hospital San José, Criciuma 88801-250, Brazil.
Insights
Comprehensive dipyridamole stress echocardiography (DSE) reveals that abnormal left ventricular contractile reserve (LVCR), coronary flow velocity reserve (CFVR), and heart rate reserve (HRR) are common in non-ischemic heart failure (HF) and predict patient outcomes.
Area of Science:
- Cardiology
- Heart Failure Research
- Diagnostic Imaging
Background:
- Left ventricular contractile reserve (LVCR), coronary flow velocity reserve (CFVR), and heart rate reserve (HRR) are critical determinants of outcome in heart failure (HF).
- These reserves can be assessed simultaneously using dipyridamole stress echocardiography (DSE).
Purpose of the Study:
- To evaluate the prognostic value of a comprehensive DSE assessment in patients diagnosed with non-ischemic heart failure.
Main Methods:
- A cohort of 610 patients with non-ischemic HF underwent DSE, with measurements of LVCR (normal > 1.1), CFVR in the left anterior descending artery (normal > 2.0), and HRR (normal > 1.22).
- Patients were stratified by ejection fraction: preserved (≥50%), mid-range (40-49%), and reduced (<40%).
- Follow-up data was collected to assess hard clinical events.
Main Results:
- Abnormalities in CFVR, LVCR, and HRR were prevalent, occurring in 29%, 45%, and 47% of patients, respectively.
- Over a median follow-up of 20 months, 113 hard events were recorded, including deaths, myocardial infarctions, and acute HF admissions.
- Annual mortality rates significantly increased with the number of abnormal DSE criteria, from 0.8% (no abnormalities) to 7.5% (three abnormalities).
Conclusions:
- Abnormal LVCR, CFVR, and HRR are frequently observed in non-ischemic HF patients during DSE.
- These abnormal reserves reflect distinct pathophysiological issues including myocardial function, coronary microcirculation, and autonomic balance.
- Comprehensive DSE parameters provide valuable prognostic information for predicting outcomes in this patient population.
Abstract:
Background: Left ventricular contractile reserve (LVCR), coronary flow velocity reserve (CFVR), and heart rate reserve (HRR) affect outcome in heart failure (HF). They can be simultaneously measured during dipyridamole stress echocardiography (DSE). Aim: To assess the value of comprehensive DSE in patients with non-ischemic HF. Methods: We evaluated 610 patients with HF, no history of coronary artery disease, and no inducible regional wall motion abnormalities: 270 patients with preserved ejection fraction (≥50%), 146 patients with mid-range ejection fraction (40-49%), and 194 patients with reduced ejection fraction (<40%). All underwent DSE (0.84 mg/kg in 6') in 7 accredited laboratories. We measured LVCR (abnormal value ≤ 1.1), CFVR in left anterior descending artery (abnormal value: ≤2.0), and HRR (peak/rest heart rate; abnormal value: ≤1.22). All patients were followed up. Results: Abnormal CFVR, LVCR, and HRR occurred in 29%, 45%, and 47% of patients, respectively (p < 0.001). After a median follow-up time of 20 months (interquartile range: 12-32 months), 113 hard events occurred in 105 patients with 41 deaths, 8 myocardial infarctions, 61 admissions for acute HF, and 3 strokes. The annual mortality rates were 0.8% in 200 patients with none abnormal criteria, 1.8% in 184 patients with 1 abnormal criterion, 7.1% in 130 patients with 2 abnormal criteria, 7.5% in 96 patients with 3 abnormal criteria. Conclusions: Abnormal LVCR, CFVR, and HRR were frequent during DSE in non-ischemic HF patients. They target different pathophysiological vulnerabilities (myocardial function, coronary microcirculation, and cardiac autonomic balance) and are useful for outcome prediction.
More Related Videos
05:07Author Spotlight: Improved Localization and Monitoring of Coronary Flow Reserve Using Modified PLAX View in Mice
Published on: August 25, 2023
06:39Ultrasound Based Assessment of Coronary Artery Flow and Coronary Flow Reserve Using the Pressure Overload Model in Mice
Published on: April 13, 2015
Related Concept Videos
Pathophysiology of Cardiac Performance
Imbalances in Cardiac Output
CHF can occur due to the failure of either side of the heart. Left-side failure leads to pulmonary congestion—the right side continues to send...
Acute Coronary Syndrome III: Diagnostic Studies
Heart Failure II: Pathophysiology
Heart Failure I: Introduction
Pathophysiology of Heart Failure