[Research Review] Underwater Heart Rate Error Analysis: Comparison Report of Optical Green Light Sensors and Chest Strap Heart Rate Monitors in Swimming — Biomechanical Quantification Experiment Report (No. 213)
[Research Review] Underwater Heart Rate Error Analysis: Comparison of Optical Green Light Sensors and Chest Strap Heart Rate Monitors in Swimming: Biomechanical Quantification Experiment Report (No. 213)
Reference Journal Source: Journal of Sports Sciences • International Research Findings Review Series
This article explores the sources of error in underwater heart rate measurement, comparing the accuracy differences between optical green light sensors (PPG) and chest strap heart rate monitors (ECG-based) in swimming environments.
Sources of Error in Optical Heart Rate Sensing
Optical heart rate sensors (used by most sports watches) estimate heart rate by shining green light LEDs onto the skin and detecting changes in reflected light from blood flow. In swimming scenarios, there are three main sources of error:
- Water seepage interference: Water seeps through the gap between the strap and skin, altering the contact state between the sensor and skin, disrupting the stability of the optical signal
- Repeated wrist muscle contraction: The pulling motion causes the wrist muscles and subcutaneous tissue to be repeatedly compressed, making the optical signal susceptible to contamination from muscle blood flow signals, which are difficult to distinguish from heartbeat signals
- Cold-induced vasoconstriction: When water temperature is low, peripheral blood vessels constrict, reducing blood flow to the skin surface, which weakens the optical signal intensity itself
Relative Advantages and Limitations of Chest Strap Heart Rate Monitors
Chest straps detect cardiac electrical signals directly through electrodes (similar to a simplified ECG), and are unaffected by changes in skin surface blood flow. Theoretically, they offer higher accuracy and serve as the “gold standard” comparison reference adopted by most sports science research. However, chest straps still have limitations in swimming scenarios: they require good contact to maintain signal stability, prolonged swimming may cause electrode loosening due to skin sweating/water ingress, and some chest strap products have insufficient waterproof ratings to withstand prolonged submersion.
Error Magnitude Comparison of the Two Sensing Methods (Illustrative)
| Scenario | Optical Sensing Error Magnitude | Chest Strap Sensing Error Magnitude |
|---|---|---|
| Steady-state swimming (constant pace cruising) | Moderate (±5-10 bpm) | Low (±2-3 bpm) |
| High-intensity interval swimming | High (±10-20 bpm or more) | Low to moderate |
| Cold water environments | Further degradation | Lesser impact |
Core Research Conclusions and Practical Recommendations
- Chest strap is the first choice for high-intensity training: If precise heart rate zone training is needed (e.g., interval workouts), it is recommended to use a chest strap heart rate monitor with sufficient waterproof rating
- Optical watch as a trend reference: Although optical sensing data contains errors, it can still serve as a reference for long-term training trends and approximate intensity distribution; there is no need to completely abandon it due to errors
- Verify device fit: Regardless of the sensing method, confirming that the device is fitted with appropriate tightness before training is the most direct and effective way to reduce errors
- Combine with perceived exertion: When underwater heart rate data is unstable, the Rating of Perceived Exertion (RPE) scale can be used as a supplementary reference for pace adjustment
Common Research Q&A (FAQ)
Q: Why does the watch heart rate often fluctuate erratically during swimming?
A: This is mostly noise caused by optical signal interference from water flow and wrist muscle movement, rather than actual dramatic heart rate fluctuations. It is recommended to interpret using trend lines rather than single-point values.
Q: Are all chest strap heart rate monitors suitable for swimming?
A: No. You need to confirm that the product explicitly indicates a waterproof rating suitable for water use and the signal transmission method (some chest straps using Bluetooth transmission will lose signal underwater; models with underwater memory storage capability should be selected).
References and Academic Citations
- Journal of Sports Sciences — Research direction related to accuracy comparison of wearable device heart rate measurement.
- IEEE Journal of Biomedical and Health Informatics — Literature related to noise processing of optical heart rate sensing signals.
Related Topic Reading
- Research Review: Underwater Heart Rate Error Analysis: Comparison of Optical Green Light Sensors and Chest Strap Heart Rate Monitors in Swimming: Biomechanical Quantification Experiment Report (No. 954)
- Research Review: Underwater Heart Rate Error Analysis: Comparison of Optical Green Light Sensors and Chest Strap Heart Rate Monitors in Swimming: Biomechanical Quantification Experiment Report (No. 1098)
- Research Review: Underwater Heart Rate Error Analysis: Comparison of Optical Green Light Sensors and Chest Strap Heart Rate Monitors in Swimming: Frontiers in Exercise Physiology Research Progress (No. 675)
- Research Review: Underwater Heart Rate Error Analysis: Comparison of Optical Green Light Sensors and Chest Strap Heart Rate Monitors in Swimming: Frontiers in Exercise Physiology Research Progress (No. 1128)
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