Key result
Guideline 40% HRR closely approximates VT1 but 59% HRR underestimates VT2.
Why the study?
To evaluate how accurately updated AHA/AACVPR recommendations prescribe moderate-intensity exercise using percentage of heart rate reserve compared with heart rate at ventilatory thresholds in patients with cardiometabolic disease.
Does the AHA/AACVPR guideline-recommended %HRR accurately reflect individual effort responses at ventilatory thresholds in patients with cardiometabolic disease?
Observational (n=2,554)
Yes
Does the AHA/AACVPR guideline-recommended %HRR accurately reflect individual effort responses at ventilatory thresholds in patients with cardiometabolic disease?
AHA/AACVPR %HRR-based recommendations accurately reflect the lower boundary of moderate-intensity exercise but underestimate the transition to higher intensities compared to CPET-derived physiological thresholds.
Supports 40% HRR for moderate exercise prescription in cardiometabolic disease; confirms guideline lower-limit accuracy in large multicentre cohort.
AIMS: To evaluate how accurately the updated AHA/AACVPR Scientific Statement prescribes moderate-intensity exercise based on percentage of heart rate reserve (%HRR), by comparing it with heart rate (HR) at ventilatory thresholds in patients with cardiometabolic disease (CMD). METHODS: This retrospective multicentre study included 2,554 individuals from 12 centres across nine countries. HR at the first and second ventilatory thresholds (VT1, VT2), obtained by cardiopulmonary exercise testing (CPET), was compared with HR estimated from the guideline-defined moderate-intensity range (40-59% HRR). Agreement was assessed using Bland-Altman analysis, calibration using Passing-Bablok regression, and prediction error using mean absolute error. RESULTS: HR at VT1 closely approximated the lower limit (40% HRR), with minimal bias and a mean absolute error of 6.4 bpm. In contrast, HR at VT2 was substantially higher than the upper limit (59% HRR), with a negative bias (-11.4 bpm) and greater prediction error (mean absolute error of 12.0 bpm). Calibration analysis showed minor deviation at VT1 but marked systematic and proportional bias at VT2, indicating miscalibration at higher intensities. These findings were consistent across subgroup analyses. CONCLUSION: The AHA/AACVPR %HRR-based recommendations accurately reflect the lower boundary of moderate-intensity exercise but underestimate the transition to higher intensities. Aligning %HRR-based prescriptions with CPET-derived physiological thresholds are likely to improve the precision and effectiveness of exercise prescription in cardiac rehabilitation, while also strengthening methodological rigor and supporting more accurate interpretation of research findings.
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Milani et al. (2026) conducted an observational in Cardiometabolic disease (CMD) (n=2,554). Guideline-defined moderate-intensity exercise range (40-59% HRR) vs. Heart rate at ventilatory thresholds (VT1, VT2) by CPET was evaluated on Agreement, calibration, and prediction error between HR estimated from 40-59% HRR and HR at VT1/VT2. Guideline-estimated 40% HRR closely approximated HR at the first ventilatory threshold (mean absolute error 6.4 bpm), but 59% HRR underestimated the second ventilatory threshold (bias -11.4 bpm).
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