Key result
Training intensification increased high-frequency spectral power in 3 of 7 cyclists and decreased it in 1, with changes predictable based on baseline heart rate variability values.
Why the study?
Does training intensification alter resting heart rate variability parameters in cyclists?
Observational (n=7)
Does training intensification alter resting heart rate variability parameters in cyclists?
Baseline HRV values may help predict individual autonomic nervous system responses to training intensification in athletes.
Baseline HRV may inform individualized training responses in cyclists; hypothesis-generating and requires prospective validation before practice change.
Individual changes in resting heart rate variability (HRV) parameters were assessed in seven Polish cyclists during a training process consisting of: a six-week period (P1) of predominantly low- and moderate-intensity training (L-MIT) and a six-week period (P2) where the proportion of high-intensity interval training (HIT) increased. Daily recorded HRV parameters included high-frequency spectral power (HF), square root of the mean squared difference between successive normal-to-normal RR intervals (RMSSD), and standard deviation of normal-to-normal RR intervals (SDNN). In each training microcycle, the average values of HFav, RMSSDav, and SDNNav were calculated individually for each participant. In three cyclists, HF was higher in P2 compared to P1, whereas in one cyclist, HF was higher in P1 than in P2. Each of these four cyclists presented an individual correlation between the average daily duration HIT effort in training microcycles (HITav) and HFav. Cyclists with low baseline values of HRV parameters showed increased activity of the parasympathetic nervous system, while in the cyclist with high baseline values of HRV parameters, an opposite change was observed. In conclusion, changes in resting HRV parameters between period P1 and P2 can be individualised. In the investigated group, it was possible to predict how HRV would change as a result of training intensification on the basis of HRV baseline values.
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Hebisz et al. (2021) conducted an observational in Healthy cyclists (n=7). Training intensification (increased high-intensity interval training) vs. Low- and moderate-intensity training period was evaluated on Individual changes in resting heart rate variability (HRV) parameters. Training intensification increased high-frequency spectral power in 3 of 7 cyclists and decreased it in 1, with changes predictable based on baseline heart rate variability values.
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