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Kinematic, kinetic and EMG patterns during downward squatting

机译:下蹲过程中的运动学,动力学和肌电图

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摘要

The aim of this study was to investigate the kinematic, kinetic, and electromyographic pattern before, during and after downward squatting when the trunk movement is restricted in the sagittal plane. Eight healthy subjects performed downward squatting at two different positions, semisquatting (40 degrees knee flexion) and half squatting (70 degrees knee flexion). Electromyographic responses of the vastus medialis oblique, vastus medialis longus, rectus femoris, vastus lateralis, biceps femoris, semitendineous, gastrocnemius lateralis, and tibialis anterior were recorded. The kinematics of the major joints were reconstructed using an optoelectronic system. The center of pressure (COP) was obtained using data collected from one force plate, and the ankle and knee joint torques were calculated using inverse dynamics. In the upright position there were small changes in the COP and in the knee and ankle joint torques. The tibialis anterior provoked the disruption of this upright position initiating the squat. During the acceleration phase of the squat the COP moved posteriorly, the knee joint torque remained in flexion and there was no measurable muscle activation. As the body went into the deceleration phase, the knee joint torque increased towards extension with major muscle activities being observed in the four heads of the quadriceps. Understanding these kinematic, kinetic and EMG strategies before, during and after the squat is expected to be beneficial to practitioners for utilizing squatting as a task for improving motor function. (C) 2006 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是研究在躯干运动受限于矢状面的向下蹲之前,期间和之后的运动学,动力学和肌电图。八名健康受试者在两个不同的位置进行下蹲,即半蹲(屈膝40度)和半蹲(屈膝70度)。记录了内侧斜肌,长内侧肌,股直肌,外侧股肌,股二头肌,半腱,腓肠肌外侧肌和胫骨前肌的肌电图反应。使用光电系统重建主要关节的运动学。使用从一个测力板上收集的数据获得压力中心(COP),并使用逆动力学计算踝关节和膝关节的扭矩。在直立位置,COP以及膝关节和踝关节扭矩的变化很小。胫骨前部激发了这种直立姿势的破坏,从而开始下蹲。在深蹲加速阶段,COP向后移动,膝关节扭矩保持屈曲状态,并且没有可测量的肌肉激活。随着身体进入减速阶段,膝关节扭矩朝着伸展的方向逐渐增加,在四头肌的四个头中观察到主要的肌肉活动。预期在下蹲之前,之中和之后这些运动学,动力学和EMG策略对于从业者利用蹲下作为改善运动功能的任务将是有益的。 (C)2006 Elsevier Ltd.保留所有权利。

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