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Training effects of Interactive Metronome? on golf performance and brain activity in professional woman golf players

机译:互动节拍器的培训效果? 论职业女性高尔夫球运动员的高尔夫表现和大脑活动

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During putting in golf, the direction and velocity of the club head should be consistent across swings. In order to maintain consistency in swing timing, the cerebellum provides temporal information, motor timing, control of rhythm, and timing of movements. We utilized Interactive Metronome (IM), a brain training software program that combines the concepts of neurotechnology with the abilities of a computer, to improve an individual’s rhythm and timing. We propose that IM would activate neural networks involved in decreasing variation in putt swing. Twenty professional female golfers (KLPGA) were randomly assigned to either an IM training group (n?=?10, 35–40?min per session, twice a week for 6?weeks) or a control group (n?=?10). The golf putting movements and brain activity were analyzed using Kinovea Software and resting state functional MRI, respectively. Consistency was measured as the standard deviation of mean swing speed (SSD) during three sections of the swing: backswing (AD-BS), backswing-impact (BS-IMP), and impact-finish (IMP-FIS). Our results show that the consistency of the IM group improved in the time between the back swing and impact in the 2?m putt and 5?m putt compared to the control group. Using functional MRI, after the training period, the IM group showed increased functional connectivity from the superior cerebellar vermis to the right medial frontal gyrus, left superior temporal gyrus, right middle occipital gyrus, right middle temporal gyrus, right cingulate gyrus, and right supramarginal gyrus (uncorrected p? ?40). These findings suggest that IM training in professional female golf players may improve consistency in putt timing. In addition, IM training may increase brain connectivity from the cerebellum to the frontal cortex, which plays an important role in motor control and timing.
机译:在推进高尔夫期间,俱乐部头的方向和速度应在秋千上一致。为了保持摆动时序的一致性,小脑提供时间信息,电机时序,节奏控制和运动的时间。我们利用交互式节拍器(IM),是一个脑训练软件程序,将神经技术的概念与计算机的能力结合在一起,以改善个人的节奏和时间。我们建议我将激活涉及降低PUTT摆动变化的神经网络。将二十个专业的女性高尔夫球手(KLPGA)随机分配给IM培训组(N?=?10,35-40?每次,每周两次,6?周的每周两次)或对照组(N?=?10) 。使用Kinovea软件和休息状态功能MRI分析高尔夫球运动和脑活动。在摆动的三个部分期间,测量一致性的平均摆动速度(SSD)的标准偏差:后退(AD-BS),后卫冲击(BS-IMP)和冲击表面(IMP-FIS)。我们的研究结果表明,与对照组相比,IM组在2?M PUTT和5?M PUTT之间改善了IM组的一致性。使用功能性MRI,在训练期后,IM组从高级小脑蚓部向右内侧前陀螺,左上颞圆弧,右中间咽喉,右中间颞弧菌,右侧刺痛,右髁上的功能连通性增加gyrus(未经校正的p?40)。这些调查结果表明,我在专业女高尔夫球运动员中的IM培训可能会提高PUTT时机的一致性。此外,IM培训可能将大脑连通从小脑连接到额叶,这在电机控制和时序中起着重要作用。

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