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Athletic background is related to superior trunk proprioceptive ability, postural control, and neuromuscular responses to sudden perturbations

机译:运动背景与突然扰动的卓越的树干血管活力,姿势控制和神经肌肉反应有关

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Trunk motor control is essential for athletic performance, and inadequate trunk motor control has been linked to an increased risk of developing low back and lower limb injury in athletes. Research is limited in comparing relationships between trunk neuromuscular control, postural control, and trunk proprioception in athletes from different sporting backgrounds. To test for these relationships, collegiate level long distance runners and golfers, along with non-athletic controls were recruited. Trunk postural control was investigated using a seated balance task. Neuromuscular control in response to sudden trunk loading perturbations was measured using electromyography and kinematics. Proprioceptive ability was examined using active trunk repositioning tasks. Both athlete groups demonstrated greater trunk postural control (less centre of pressure movement) during the seated task compared to controls. Athletes further demonstrated faster trunk muscle activation onsets, higher muscle activation amplitudes, and less lumbar spine angular displacement in response to sudden trunk loading perturbations when compared to controls. Golfers demonstrated less absolute error and variable error in trunk repositioning tasks compared to both runners and controls, suggestive of greater proprioceptive ability. This suggests an interactive relationship between neuromuscular control, postural control, and proprioception in athletes, and that' differences exist between athletes of various training backgrounds. (C) 2017 Elsevier B.V. All rights reserved.
机译:行李箱电机控制对于运动性能至关重要,干燥的电机控制不足与在运动员中开发低腰部和下肢伤害的风险增加。关于比较不同体育背景运动员躯干神经肌肉控制,姿势控制,姿势控制和躯干预防关系的关系的有限研究。为了测试这些关系,招募了大学级长途跑步者和高尔夫球手以及非运动控制。使用坐标余额任务调查了树干姿势控制。使用肌电学和运动学测量响应突然躯干加载扰动的神经肌肉控制。使用主动行李箱重新定位任务检查预先检查能力。与控制相比,两位运动员组都展示了坐姿的姿势姿势控制(较低的压力运动中心)。运动员进一步证明了与对照相比突然躯干加载扰动的较快的躯干肌肉活化术,较高的肌肉激活幅度,较高的肌脊柱角位移。与跑步者和控制相比,高尔夫球手展示了中继重新定位任务中的绝对误差和变量错误,提示了更大的预先搜索能力。这表明神经肌肉控制,姿势控制和运动员中的血症关系之间的互动关系,以及各种训练背景的运动员之间存在的差异。 (c)2017 Elsevier B.v.保留所有权利。

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