Physiological and Psychological Effects of Heart Rate Variability Based Training in Endurance Athletes
试验速览
- 阶段
- 不适用
- 状态
- 已完成
- 入组人数
- 14
- 试验地点
- 2
- 主要终点
- VO2max
研究概览
简要总结
Monitoring individual responses to training is an important key factor to prescribe to most effective training programs. Heart-rate variability (HRV) could be used for monitoring the training status of endurance athletes in order to detect the fatigue status and to assess the adaptation to training. This direct fatigue measuring method has been little used to prescribe or regulate exercise prescription. Moreover, it allows new possibilities for the training load prescription according to an athlete's status, the response to the training load, and the adaptation to training. Regardless HRV-guided training, the athlete performance could also be influenced by precompetitive mood and anxiety, which can also be reflected in the precompetitive HRV scores and the subjective effort perception.
详细描述
Monitoring individual responses to training is an important key factor to prescribe to most effective training programs. A promising variable that is able to reflect positive or negative training adaptation is cardiac autonomic regulation. In general, a decreased training status is associated with a lower power output at the same submaximal heart rate and a slower heart rate recovery, whereas an increased training status is associated with an increased power output, the same submaximal heart rate, and a faster heart rate recovery.
In this line, heart-rate variability (HRV), which focuses on the variability of successive R-R intervals, have gained popularity in monitoring the training status of endurance athletes. This tool enables the detection of fatigue status and assesses the adaptation to training. After high intensity training or a short-term overreached period, there is a decrease in the resting HRV values, reflecting the effect of the fatigue. In addition, the increase of the performance after a training period is related to an increase in resting HRV. This direct fatigue measuring method has been little used to prescribe or regulate exercise prescription. Moreover, this HRV-guided training, also called day-to-day periodization, allows new possibilities for the training load prescription according to an athlete's status, the response to the training load, and the adaptation to training.
On the other hand, regardless HRV-guided training, the athlete performance could also be influenced by precompetitive mood and anxiety, which can also be reflected in the precompetitive HRV scores and the subjective effort perception. This is another interesting line that pretends to be clarified in this study.
研究设计
- 研究类型
- Interventional
- 分配方式
- Randomized
- 干预模型
- Parallel
- 主要目的
- Treatment
- 盲法
- Double (Participant, Outcomes Assessor)
入排标准
- 性别
- All
- 接受健康志愿者
- 是
入选标准
- •Belonging to the Spanish Athletics Federation.
- •Training and running in Spanish Athletics Federation contest during at least two years.
- •Stay in the first third of the classification of the previous season last five races.
排除标准
- •Cardiovascular pathologies.
- •Parameters of blood pressure (BP) outside of normality.
- •Respiratory problems diagnosed.
- •Be in treatment of psychological problems.
- •Regular consumption of drug (s) with direct or indirect effects on the Nervous System (e.g., anxiolytics, antidepressants, neuroleptics).
- •Consumption of substances not permitted by the International Athletics Federation (IAF).
- •Punctual consumption of medication that could alter the performance due to suffering some disease related to cardiorespiratory system (e.g., influenza).
- •Do not attend at least the 90% of the workouts during the intervention.
结局指标
主要结局
VO2max
时间窗: Change from baseline VO2max at 8 weeks
Maximal oxygen consumption in treadmill test
次要结局
- ventilatory thresolds(Change from baseline ventilatory thresolds at 8 weeks)
- Lactate change(Change from baseline Lactate at 8 weeks)
- maximal heart rate(Change from baseline maximal heart rate at 8 weeks)
- Speed in running test(Change from baseline speed at 8 weeks)
- Börg scale after running test(Through study completion (8 weeks))
- Mood score(Through study completion (8 weeks))
- maximal speed(Change from baseline maximal speed at 8 weeks)
- Heart rate in running test(Change from baseline heart rate at 8 weeks)
- LnrMSSD score(Through study completion (8 weeks))
- respiratory quotient(Change from baseline respiratory quotient at 8 weeks)
- Time in running test(Change from baseline time at 8 weeks)
- Anxiety score(Through study completion (8 weeks))
研究者
María Carrasco Poyatos
Principal Investigator
Universidad de Almeria
