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[Research Review] Clinical Application of Heart Rate Variability (HRV) in Autonomic Nervous System Monitoring and Overtraining Prevention: A Study on Elite Athletes' Physiological Characteristics (Article 217)

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[Research Review] Clinical Application of Heart Rate Variability (HRV) in Autonomic Nervous System Monitoring and Overtraining Prevention: A Study on Elite Athletes’ Physiological Characteristics (Article 217)

Source Reference: European Journal of Applied Physiology • International Research Findings Review Series

This article explores the clinical application of Heart Rate Variability (HRV) in autonomic nervous system monitoring and overtraining prevention.

Physiological Significance Reflected by HRV

HRV measures the degree of variation in the time intervals between consecutive heartbeats, regulated by the dynamic balance between sympathetic and parasympathetic activity in the autonomic nervous system. Generally, the higher the parasympathetic activity (indicating the body is in a recovery, relaxed state), the higher the HRV value; long-term accumulation of high-intensity training stress, sleep deprivation, or illness and infection are often accompanied by decreased HRV, reflecting relatively heightened sympathetic activity and a body in a “fight-or-flight” rather than “repair” state.

Two Response Patterns of HRV and Overtraining Syndrome (OTS)

Overtraining is not a single linear response; two patterns are commonly observed:

  • Sympathetic-type overtraining: Elevated resting heart rate, persistently decreased HRV, with athletes subjectively experiencing fatigue, irritability, and poor sleep quality
  • Parasympathetic-type overtraining: Commonly seen in the later stages of chronic fatigue accumulation, where resting heart rate is instead lower and HRV values fluctuate with abnormally low variability (lacking normal day-to-day variation). This pattern is less easily assessed by simply looking at “HRV levels” and requires observation of multi-day trend lines

21-Day Training Load and HRV Changes (Illustrative)

Training Phase Training Load HRV Trend Recommendation
Load Accumulation Phase (Days 1-7) Gradually increasing Slight decrease is normal Continue monitoring; no need for overreaction
High-Load Phase (Days 8-14) Maintaining peak Marked decrease or drastic fluctuations Monitor subjective fatigue; consider scheduling a recovery day
Tapering/Recovery Phase (Days 15-21) Actively reducing Gradually returning to baseline If HRV has not recovered, extend the recovery period

Key Research Conclusions and Practical Recommendations

  • Establish a personal baseline: Absolute HRV values vary from person to person; the key lies in the trend relative to one’s own 7-14 day average, rather than comparing with others
  • Consistency in measurement timing: It is recommended to measure upon waking, in a supine resting state, avoiding confounding factors such as caffeine, food intake, and measurement posture that may introduce data noise
  • Trends take precedence over single-day readings: A single-day HRV decrease does not necessarily indicate overtraining; a reading significantly below baseline for 3 or more consecutive days is a more reliable warning sign
  • Combine with subjective scales: HRV should be interpreted alongside Rating of Perceived Exertion (RPE) and sleep quality records; relying on a single data source can easily lead to misinterpretation

Common Research Q&A (FAQ)

Q: Is it normal for HRV to fluctuate daily?

A: Yes. HRV itself is influenced by multiple factors such as breathing, sleep, stress, and alcohol consumption; daily fluctuations are a normal physiological phenomenon. The key is to observe the multi-day moving average trend rather than the single-day absolute value.

Q: Should training be completely stopped when HRV decreases?

A: Not necessarily. You may first reduce the day’s training intensity or switch to active recovery (low-intensity aerobic exercise), then observe the HRV trend over the next 2-3 days before deciding whether a longer rest is needed.

References and Academic Citations

  1. European Journal of Applied Physiology — Research direction on heart rate variability and training load monitoring.
  2. Sports Medicine — Literature on autonomic nervous system response patterns in overtraining syndrome.
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