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运动技能习得过程中的脑电图模式变化

Electroencephalography Pattern Variations During Motor Skill Acquisition.

作者信息

Ghasemian Mohammadreza, Taheri Hamidreza, Saberi Kakhki Alireza, Ghoshuni Majid

机构信息

1 Faculty of Sport Sciences, 48440 Ferdowsi University of Mashhad , Mashhad, Iran.

2 Faculty of Physical Education and Sport Sciences, Allameh Tabataba'i University, Tehran, Iran.

出版信息

Percept Mot Skills. 2017 Dec;124(6):1069-1084. doi: 10.1177/0031512517727404. Epub 2017 Aug 25.

DOI:10.1177/0031512517727404
PMID:28840774
Abstract

The present study examined how motor skill acquisition affects electroencephalography patterns and compared short- and long-term electroencephalography variations. For this purpose, 17 volunteers with no history of disease, aged 18 to 22 years, attended seven training sessions every other day to practice a pursuit tracking motor skill. Electroencephalography brainwaves were recorded and analyzed on the first and last days within pre- and post-training intervals. The results showed a significant decrease in performance error and variability with practice over time. This progress slowed at the end of training, and there was no significant improvement in individual performance at the last session. In accordance with performance variations, some changes occurred in brainwaves. Specifically, θ power at Fz and α power at Cz increased on the last test day, compared with the first, while the coherence of α at Fz-T3 and Fz-Cz decreased. β Coherence between Fz-Cz was significantly reduced from pre- to posttest. Based on these results, power changes seem to be more affected by long-term training, whereas coherence changes are sensitive to both short- and long-term training. Specifically, β coherence at Fz-Cz was more influenced by short-term effects of training, whereas θ power at Fz, α power at Cz, and α coherence at Fz-T3 and Fz-Cz were affected by longer training.

摘要

本研究考察了运动技能习得如何影响脑电图模式,并比较了短期和长期的脑电图变化。为此,17名无疾病史、年龄在18至22岁之间的志愿者每隔一天参加7次训练课程,以练习追踪运动技能。在训练前和训练后的间隔内,在第一天和最后一天记录并分析脑电图脑电波。结果显示,随着时间的推移,练习使表现误差和变异性显著降低。这种进步在训练结束时放缓,在最后一次训练时个体表现没有显著改善。与表现变化一致,脑电波也发生了一些变化。具体而言,与第一次测试日相比,最后一次测试日Fz处的θ功率和Cz处的α功率增加,而Fz-T3和Fz-Cz处的α相干性降低。从测试前到测试后,Fz-Cz之间的β相干性显著降低。基于这些结果,功率变化似乎受长期训练的影响更大,而相干性变化对短期和长期训练都敏感。具体来说,Fz-Cz处的β相干性受训练短期效应的影响更大,而Fz处的θ功率、Cz处的α功率以及Fz-T3和Fz-Cz处的α相干性受更长时间训练的影响。

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