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Dynamic balance sensory motor control and symmetrical or asymmetrical equilibrium training.

机译:动态平衡感觉运动控制和对称或不对称平衡训练。

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OBJECTIVE: Determine whether symmetrical or asymmetrical equilibrium training can enhance the proprioceptive input of the left versus right supporting leg (SL) motor control. METHODS: Proprioceptive input was tested using a seesaw platform through a cross-sectional study. The total spectral energy was recorded and divided into 0-2 and 2-20Hz frequency bands. Experts in asymmetrical tasks (soccer players) were compared to experts in symmetrical tasks (dancers, acrobats) and untrained subjects according to pitch versus roll imbalance direction on each SL. RESULTS: Regarding the low frequency band, spectral energy values were lower for experts than for untrained subjects in the roll direction only, whatever the SL (p<0.05). Regarding the high frequency band, spectral energy values were lower for the left SL compared to the right one for soccer players only (p<0.05). Furthermore, soccer players also exhibited lower values than other subjects on the left SL. CONCLUSIONS: Asymmetrical equilibrium training minimizes the proprioceptive input, emphasizing the role of the biomechanical component in postural regulation. SIGNIFICANCE: Testing athletes on a spontaneous unstable platform is a way to accurately discriminate each SL performance for one type of sport training. In sport medicine rehabilitation, injured SL could be detected with this protocol comparing it with healthy SL.
机译:目的:确定对称或不对称的平衡训练是否可以增强左右支撑腿(SL)电机控制的本体感受输入。方法:通过横断面研究使用跷跷板平台对本体感受输入进行了测试。记录总频谱能量,并将其分为0-2和2-20Hz频带。根据每个SL上的俯仰与侧倾失衡方向,将不对称任务的专家(足球运动员)与对称任务的专家(舞蹈演员,杂技演员)和未经训练的对象进行比较。结果:关于低频带,无论SL如何,专家的频谱能量值都仅比未训练对象的侧倾方向要低(p <0.05)。关于高频段,左SL的频谱能量值比仅足球运动员的右频谱能量值低(p <0.05)。此外,足球运动员还表现出比左SL上的其他对象更低的值。结论:非对称平衡训练可最大程度地减少本体感受输入,强调生物力学成分在姿势调节中的作用。重要性:在自发的不稳定平台上测试运动员是一种准确区分一种运动训练类型的每项SL成绩的一种方法。在运动医学康复中,通过将该方案与健康SL进行比较,可以检测到受伤的SL。

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