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首页> 外文期刊>International journal of psychophysiology: official journal of the International Organization of Psychophysiology >Intra-hemispheric functional coupling of alpha rhythms is related to golfer's performance: A coherence EEG study
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Intra-hemispheric functional coupling of alpha rhythms is related to golfer's performance: A coherence EEG study

机译:半球内半球节奏的功能耦合与高尔夫球手的表现有关:一项脑电连贯性研究

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It has been shown that frontocentral electroencephalographic (EEG) alpha rhythms (about 10-12. Hz) were higher in amplitude in expert golfers in successful than unsuccessful putts, possibly reflecting the idea that amplitude regulation of frontocentral alpha rhythms is a physiological mechanism implied in motor control and golfer's performance (Babiloni et al., 2008). Here, we tested the ancillary hypothesis that golfer's performance is also associated to an improved coordination of cortical activity, as reflected by functional coupling of alpha rhythms across cortical regions. To this aim, between-electrodes spectral coherence was computed from spatially enhanced EEG data of the mentioned study (i.e. right handed 12 expert golfers; augmented 10-20 system; surface Laplacian estimation). Low- (about 8-10. Hz) and high-frequency (about 10-12. Hz) alpha sub-bands were considered with reference to individual alpha frequency peak. Statistical results showed that intra-hemispheric low-frequency alpha coherence in bilateral parietal-frontal (P3-F3 and P4-F4 electrodes) and parietal-central (P3-C3 and P4-C4 electrodes) was higher in amplitude in successful than unsuccessful putts (p < 0.004). The same was true for intra-hemispheric high-frequency alpha coherence in bilateral parietal-frontal regions (p < 0.004). These findings suggest that intra-hemispheric functional coupling of cortical alpha rhythms between "visuo-spatial" parietal area and other cortical areas is implicated in fine motor control of golfer's performance.
机译:研究表明,成功的职业高尔夫球手的额中央脑电图(EEG)α节律(约10-12。Hz)比未成功推杆的振幅更高,这可能反映了这样的观点,即额中央α律的振幅调节是隐含的生理机制。运动控制和高尔夫球手的表现(Babiloni等,2008)。在这里,我们测试了辅助假设,即高尔夫球手的表现也与皮质活动的协调性提高有关,这反映在整个皮质区域的α节律的功能性耦合中。为此,从提及的研究的空间增强型EEG数据(即右手12名专业高尔夫球手;增强型10-20系统;表面拉普拉斯估计)计算出电极之间的光谱相干性。低频(约8-10。Hz)和高频(约10-12。Hz)α子带被视为参考各个α频率峰值。统计结果表明,成功的双侧顶额叶(P3-F3和P4-F4电极)和顶中中心(P3-C3和P4-C4电极)的半球内低频阿尔法相干的幅度要比不成功的推杆高(p <0.004)。对于双侧顶额叶区域中的半球内高频α相干性也是如此(p <0.004)。这些发现表明,“视空间”顶壁区域和其他皮质区域之间的皮质α节律的半球内功能耦合与高尔夫球手的表现的精细运动控制有关。

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