首页> 外文期刊>The Journal of Physiology >Golf putt outcomes are predicted by sensorimotor cerebral EEG rhythms.
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Golf putt outcomes are predicted by sensorimotor cerebral EEG rhythms.

机译:高尔夫球推杆的结局由感觉运动性脑电图节律预测。

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It is not known whether frontal cerebral rhythms of the two hemispheres are implicated in fine motor control and balance. To address this issue, electroencephalographic (EEG) and stabilometric recordings were simultaneously performed in 12 right-handed expert golfers. The subjects were asked to stand upright on a stabilometric force platform placed at a golf green simulator while playing about 100 golf putts. Balance during the putts was indexed by body sway area. Cortical activity was indexed by the power reduction in spatially enhanced alpha (8-12 Hz) and beta (13-30 Hz) rhythms during movement, referred to as the pre-movement period. It was found that the body sway area displayed similar values in the successful and unsuccessful putts. In contrast, the high-frequency alpha power (about 10-12 Hz) was smaller in amplitude in the successful than in the unsuccessful putts over the frontal midline and the arm and hand region of the right primary sensorimotor area; the stronger the reduction of the alpha power, the smaller the error of the unsuccessful putts (i.e. distance from the hole). These results indicate that high-frequency alpha rhythms over associative, premotor and non-dominant primary sensorimotor areas subserve motor control and are predictive of the golfer's performance.
机译:尚不清楚两个半球的额叶脑节律是否与精细运动控制和平衡有关。为了解决这个问题,在12位惯用右手的专业高尔夫球手中同时进行了脑电图(EEG)和稳定记录。要求受试者在打高尔夫球果岭模拟器的稳定测力平台上直立,同时打约100个高尔夫推杆。推杆期间的平衡由身体的摇摆面积来确定。皮质活动通过运动过程中空间增强的alpha(8-12 Hz)和beta(13-30 Hz)节律的功率降低来索引,这被称为运动前期。结果发现,在成功的推杆和失败的推杆中,人体摇摆区显示出相似的值。相比之下,成功的高频α功率(大约10-12 Hz)的幅度要比额线中线和右侧主要感觉运动区域的手臂和手部区域的失败推杆的幅度小; α幂的减小越强,推杆失败的误差(即距孔的距离)的误差就越小。这些结果表明,在相关的,运动前和非主要感觉运动区域的高频阿尔法节律有助于运动控制,并预示着高尔夫球手的表现。

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