Key result
A wrist-worn optical heart rate monitor demonstrated high accuracy across various activities compared to a chest strap, with a concordance correlation coefficient of 0.98 and a mean absolute error of ≤3 bpm.
Why the study?
Does a wrist-worn optical heart rate monitor provide equivalent heart rate measurements compared to an ECG-based chest strap in healthy individuals and CAD patients?
Observational (n=199)
Yes
Does a wrist-worn optical heart rate monitor provide equivalent heart rate measurements compared to an ECG-based chest strap in healthy individuals and CAD patients?
Effect estimate: Concordance correlation coefficient 0.98
Wrist-worn optical heart rate monitors provide clinically acceptable heart rate measurements compared to traditional chest straps across a broad range of activities.
Supports wrist-worn optical HR monitors for activity tracking; leaves open validation in clinical populations.
BACKGROUND: The need for unobtrusive HR (heart rate) monitoring has led to the development of a new generation of strapless HR monitors. The aim of this study was to determine whether such an unobtrusive, wrist-worn optical HR monitor (OHRM) could be equivalent and therefore a valid alternative to a traditional chest strap during a broad range of activities in a heterogeneous healthy population and coronary artery disease (CAD) patients. METHODS: One hundred ninety-nine healthy volunteers, 84 males and 115 females, including 35 overweight-obese subjects, 53 pregnant women, and 20 CAD patients were tested in the present study. Second-by-second HR measured by the OHRM was concurrently evaluated against an ECG-based chest strap monitor during a broad range of activities (i.e., walking, running, cycling, gym, household, and sedentary activities). RESULTS: Data coverage, percentage of time the OHRM provides a HR not larger than 10 bpm from the reference, went from a minimum of 92% of the time in the least periodic activity (i.e., gym), to 95% during the most intense activity (i.e., running), and to a maximum of 98% for sedentary activities. The limits of agreement of the difference between the OHRM and the chest strap HR were within the range of ±15 bpm. The OHRM showed a concordance correlation coefficient of 0.98. Overall, the mean absolute error was not larger than 3 bpm, which can be considered clinically acceptable for a number of applications. A similar performance was found for CAD (94.2% coverage, 2.4 bpm error), but the small sample size does not allow any quantitative comparison. CONCLUSION: Heart rate measured by OHRM at the wrist and ECG-based HR measured via a traditional chest strap are acceptably close in a broad range of activities in a heterogeneous, healthy population, and showed initial promising results also in CAD patients.
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Sartor et al. (2018) conducted an observational in Healthy individuals and coronary artery disease (n=199). Wrist-worn optical heart rate monitor (OHRM) vs. ECG-based chest strap monitor was evaluated on Heart rate measurement accuracy (data coverage and mean absolute error) (Concordance correlation coefficient 0.98). A wrist-worn optical heart rate monitor demonstrated high accuracy across various activities compared to a chest strap, with a concordance correlation coefficient of 0.98 and a mean absolute error of ≤3 bpm.
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