首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Muscle activity and spine load during pulling exercises: Influence of stable and labile contact surfaces and technique coaching
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Muscle activity and spine load during pulling exercises: Influence of stable and labile contact surfaces and technique coaching

机译:拉伸运动期间的肌肉活动和脊柱负荷:稳定和不稳定的接触面以及技术指导的影响

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摘要

This study examined pulling exercises performed on stable surfaces and unstable suspension straps. Specific questions included: which exercises challenged particular muscles, what was the magnitude of resulting spine load, and did technique coaching influence results. Fourteen males performed pulling tasks while muscle activity, external force, and 3D body segment motion were recorded. These data were processed and input to a sophisticated and anatomically detailed 3D model that used muscle activity and body segment kinematics to estimate muscle force, in this way the model was sensitive to each individual's choice of motor control for each task. Muscle forces and linked segment joint loads were used to calculate spine loads. There were gradations of muscle activity and spine load characteristics to every task. It appears that suspension straps alter muscle activity less in pulling exercises, compared to studies reporting on pushing exercises. The chin-up and pull-up exercises created the highest spine load as they required the highest muscle activation, despite the body "hanging" under tractioning gravitational load. Coaching shoulder centration through retraction increased spine loading but undoubtedly adds proximal stiffness. An exercise atlas of spine compression was constructed to help with the decision making process of exercise choice for an individual.
机译:这项研究检查了在稳定的表面和不稳定的悬带上进行的拉力练习。具体问题包括:哪些运动会挑战特定的肌肉,脊柱负荷的大小以及技术指导是否会影响结果。 14名男性执行拉力任务,同时记录了肌肉活动,外力和3D身体分段运动。这些数据经过处理后输入到复杂的,解剖学上详细的3D模型中,该模型使用肌肉活动和身体运动学来估计肌肉力量,这样,该模型对每个人对每个任务的运动控制选择都很敏感。肌肉力和连接的节段关节载荷用于计算脊柱载荷。每个任务都有肌肉活动和脊柱负荷特征的等级。与有关推举练习的研究相比,悬挂带似乎在拉扯练习中对肌肉活动的影响较小。尽管身体在牵引引力的作用下“悬吊”,但引体向上和引体向上运动产生了最高的脊柱负荷,因为它们需要最高的肌肉激活能力。通过缩回训练肩膀对中会增加脊柱负荷,但无疑会增加近端僵硬。构建了脊椎受压锻炼图集,以帮助个人进行运动选择的决策过程。

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