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February 19, 2026JMIR Formative Research6 citationsOpen Access

Accuracy of Optical Heart Rate Measurements for 10 Commercial Wearables in Different Climate Conditions and Activities: Instrument Validation Study

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JGJasper GielenBiosensores (Spain)COCatharina Nina Van OostKU LeuvenGDGlen DebardThomas More University

Key Result

Fitbit Charge 6 (MAE 4.5 bpm, MAPE 5.5%, CCC 0.93) and Google Pixel Watch 2 (MAE 4.9 bpm, MAPE 6.7%, CCC 0.87) showed highest heart rate accuracy across activities and climates.

Key Points

  • This study evaluates the accuracy of heart rate measurements from 10 wearable devices under different activity and climate conditions.
  • Evaluated 10 wearable devices against electrocardiogram-derived heart rate.
  • Conducted tests in climate-controlled chambers simulating different temperatures.
  • Involved various activities including rest, cognitive stress tasks, and both steady and intermittent walking.
  • Assessed accuracy using mean absolute error and concordance correlation coefficient.
  • Fitbit Charge 6 and Google Pixel Watch 2 showed high accuracy (MAE 4.5 bpm and 4.9 bpm respectively).
  • Fitbit Inspire 3, Polar Ignite 3, Polar Pacer, and Oura Ring had larger errors (MAE 9‐14 bpm).
  • Activity type significantly affected accuracy, with intermittent walking increasing errors.
  • Climate conditions did not significantly impact measurement accuracy.

Structured PICO

Does optical heart rate measurement from 10 commercial wearables accurately reflect ECG-derived heart rate in healthy adults under varying climate and activity conditions?

P
Population
45 healthy adults (age 21-68, mean 34, SD 12 y)
I
Intervention
10 commercial wearable devices (Fitbit Charge 6, Fitbit Inspire 3, Garmin Vivosmart 5, Garmin Vivoactive 5, Apple Watch SE, Google Pixel Watch 2, Polar Ignite 3, Polar Pacer, Xiaomi Watch 2, and Oura Ring Gen 3) measuring optical heart rate
C
Comparator
Electrocardiogram-derived heart rate from a Zephyr BioHarness chest strap
O
Outcome
Heart rate measurement accuracy assessed using mean absolute error (MAE), mean absolute percentage error (MAPE), repeated-measures concordance correlation coefficient (CCC), and Bland-Altman analysissurrogate

Wearable heart rate measurement accuracy is highly device-specific and degrades during irregular movement, with Fitbit Charge 6 and Google Pixel Watch 2 demonstrating the highest reliability among the tested devices.

Abstract

Abstract Background Commercial wearable devices allow for continuous heart rate (HR) monitoring in daily life. Their accuracy under ecologically valid conditions, however, remains insufficiently independently tested, especially during irregular activity, cognitive stress, and variable climates. Objective This study evaluated the HR accuracy of 10 commercially available wearables under controlled variations in physical activity, cognitive stress, and temperature. We hypothesized that physical activity irregularity, cognitive stress, and thermal climate conditions would affect measurement accuracy. Methods Forty-five healthy adults (21‐68, mean 34, SD 12 y) completed a standardized protocol in climate-controlled chambers simulating neutral (23 °C), hot (36 °C), and cold (10 °C) conditions. Tasks included rest, cognitive stress (Montreal Imaging Stress Task), steady walking, and intermittent walking. Each of the 10 devices (Fitbit Charge 6, Fitbit Inspire 3, Garmin Vivosmart 5, Garmin Vivoactive 5, Apple Watch SE, Google Pixel Watch 2, Polar Ignite 3, Polar Pacer, Xiaomi Watch 2, and Oura Ring Gen 3) was compared against electrocardiogram-derived HR from a Zephyr BioHarness chest strap. Accuracy was assessed using mean absolute error (MAE), mean absolute percentage error (MAPE), repeated-measures concordance correlation coefficient (CCC), and Bland-Altman analysis. Results Significant variability across the devices was observed. Fitbit Charge 6 (MAE 4.5 bpm, MAPE 5.5%, CCC 0.93) and Google Pixel Watch 2 (MAE 4.9 bpm, MAPE 6.7%, CCC 0.87) showed strong agreement with the gold standard. In contrast, Fitbit Inspire 3, Polar Ignite 3, Polar Pacer, and Oura Ring displayed larger errors (MAE 9‐14 bpm, MAPE 11%‐16%) and lower CCC values (0.45‐0.66). The climate conditions did not significantly affect the measurement accuracy of the test devices. The activity type, however, did have a significant effect: intermittent walking increased errors for multiple devices. Conclusions Wearable HR measurement accuracy is device-specific and context-dependent. Moderate climates did not impair performance, but irregular movement reduced accuracy. Fitbit Charge 6 and Google Pixel Watch 2 demonstrated the highest reliability, supporting their use in health and sports monitoring. Careful device selection and context-aware interpretation remain critical for applied and clinical applications.

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Cite This Study

Gielen et al. (2026) studied this question. Fitbit Charge 6 (MAE 4.5 bpm, MAPE 5.5%, CCC 0.93) and Google Pixel Watch 2 (MAE 4.9 bpm, MAPE 6.7%, CCC 0.87) showed highest heart rate accuracy across activities and climates.

synapsesocial.com/papers/6996a8a9ecb39a600b3ef904https://doi.org/10.2196/85186
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