SSMT Claim Register
SSMT-2026-0001v12026-07-26 Type M · Measurement Wearables & Recovery draft
Claim, as marketed
“Accurate heart rate, right from your wrist.”
Canonical claim
Wrist-worn photoplethysmography (PPG) wearables measure heart rate accurately during exercise.
Scope
Wrist-worn optical PPG. Chest straps and upper-arm optical sensors are a different class and perform substantially better.
Verdict
Partially supported Accurate for steady cardio in healthy, light-skinned adults — not accurate, full stop.
Real evidence, narrower than the claim.
Claim drift — 3 of 7
PopulationSettingComparatorOutcomeMagnitudeReproducibilityIndependence
Comparator and Outcome are genuinely clean — studies use ECG and measure exactly the marketed construct. The failure is scope: 'accurate' is unqualified.
Evidence located
10
studies located
8
independent
2
field setting (one n=1)
60
largest exercise n
Findings

Where it holds. A meta-analysis of 44 articles and 738 effect sizes found mean differences of −0.01 bpm at rest and −0.51 bpm on a treadmill. Median relative error across seven devices was 1.8–5.5%.

High intensity. At 8–9 mph treadmill, no wrist device reached concordance ≥0.70 — despite 0.89–0.96 at 4–7 mph.

Resistance and arm-driven work. Pooled bias −7.26 bpm in resistance training, −4.55 bpm cycling; error grows about +3 bpm per 10 bpm rise. All five optical devices fell below 0.80 concordance on an elliptical with arm levers.

Skin tone × intensity. Equivalent at rest (~2.8 bpm), but 11.7–11.8 bpm error in medium and dark skin above 60% HRR versus ~4 bpm in light skin. The wider review literature is genuinely split — 4 of 10 studies found significant degradation, 4 found none — and only 3 studies included Fitzpatrick 6.

Atrial fibrillation. Bias −9 bpm overall, degrading to −69 bpm above 140 bpm.

Device spread is large. Concordance ranged 0.67 to 0.92 within a single protocol. 'Wrist PPG' is not one technology. Moving the same manufacturer's sensor to the upper arm cut MAPE from 6.82% to 1.35%.

What would change this verdict
Independent free-living validation, n≥200, skin-tone-stratified with objective measurement, spanning running, cycling, HIIT and resistance work against ambulatory ECG — showing 95% limits of agreement within ±5 bpm in every activity × intensity × skin-tone cell, replicated on two current devices. No study of that design exists; the largest field study of exercise HR located had n=32.
Practitioner read
Trust it for resting heart rate and steady running — it will be within a few beats of a chest strap. It gets unreliable exactly when you are working hard: during sprints, heavy lifting, or anything where the wrists are gripping and moving it can read 10–20 beats low, and that gap is larger for darker skin and much larger in atrial fibrillation. For zone training, intervals, or any clinical decision, use a chest strap or move the sensor to the upper arm.
Could not be verified
Listed rather than dropped. Counts are floors, not censuses.
Sources
  1. Zhang Y, et al. (2020). J Sports Sci 38(17):2021–2034 — meta-analysis, 44 articles
  2. Gillinov S, et al. (2017). Med Sci Sports Exerc 49(8):1697–1703
  3. Pasadyn SR, et al. (2019). Cardiovasc Diagn Ther — n=50 athletes
  4. Hung SH, et al. (2025). PLOS ONE — skin-tone stratified, n=25
  5. Koerber D, et al. (2022). J Racial Ethn Health Disparities — systematic review
  6. Al-Kaisey AM, et al. (2020). Int J Cardiol — ambulatory, AF
Every source must resolve at a DOI or PubMed ID.
Changelog
Cite this card
SSMT. "Wrist-worn photoplethysmography (PPG) wearables measure heart rate accurately during exercise." Claim SSMT-2026-0001 v1, graded 2026-07-26. https://sportssciencetech.com/c/SSMT-2026-0001
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