EEG AND CENTRAL NERVOUS SYSTEM TRANSMITTER ON ATHLETES TRAINING

Author:

Zhu Chao1ORCID

Affiliation:

1. ZheJiang Industry Polytechnic College, China

Abstract

ABSTRACT Introduction: Modern EEG technology can evaluate the current level of an individual's central functioning after analyzing the frequency of brain waves (II). The A wave (8 ~ 14Hz) of brain waves (EBG) is one of the most important index parameters in diagnosing the brain's central functioning level. Objective: To explore the effects of different training loads on the brain function of elite archers and provide an objective basis for improving the scientific level of archery training. Methods: The effects of EEG information and central nerve transmitters on athletes’ regulation and training were analyzed by testing and statistical methods. Results: Both HL-LLI and LL-HLI stages showed a decreasing trend in EEG complexity. Although the differences between the two stages were not significant all of them were considerably lower than the LL-LLI stage. The number of athletes with central fatigue in both stages showed an increasing trend. Conclusions: Athletes in training also need to focus on recovery after training, which requires a view of scientific training and scientific recovery as an organic whole that cannot be separated. Level of evidence II; Therapeutic studies - investigation of treatment results.

Publisher

FapUNIFESP (SciELO)

Subject

Physical Therapy, Sports Therapy and Rehabilitation,Orthopedics and Sports Medicine

Reference10 articles.

1. Negative effect of methyl bromide fumigation work on the central nervous system;Park MG;PLoS One,2020

2. Effect of hyperoxia on the immune status of oxygen divers and endurance athletes;Tillmans F;Free Radic Res,2019

3. The effect of odor exposure time on olfactory cognitive processing: An ERP study;Tang BB;J Integr Neurosci,2019

4. Features of electroencephalographic changes and autonomic nervous activity during sleep onset period of the patients with difficulty falling asleep;Narisawa H;Japanese Journal of Biofeedback Research,2019

5. The estimation of phase-coupled channels of EEG signals by patients with traumatic brain injury during cognitive and motor tests;Tolmacheva RA;J Phys,2019

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