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The comparison of ground reaction forces and lower limb muscles correlation and activation time delay between forward and backward walking

机译:地面反作用力的比较和下肢肌肉相关性和向后行走之间的相关和激活时间延迟

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摘要

Highlights ? Ground reaction forces were studied during forward and backward walking (FW, BW). ? These two walking modes have asymmetrical kinetic behavior during most parts of stance phase. ? Lower limb muscle activity shows a time delay of 60% of stance phase between FW and BW. ? Different spinal mechanism appears to be in control of both FW and BW. Abstract This study aimed to compare the ground reaction forces (GRF) and lower limb muscles correlation and activation time delay between Forward (FW) and Backward (BW) walking. Twenty-four male students participated in this research. Electromyogram activities of gluteus medius, biceps femoris, medial gastrocnemius, soleus and anterior tibialis muscles along with GRFs were measured. Each participant performed two FW and two BW trials bare foot. Statistical parametric mapping (SPM) analysis was performed over anterior-posterior and vertical GRFs time series. The paired t -test was used in SPM analysis. Cross-correlation analysis compared similarity in shape and time delay of EMG pattern. SPM analysis of GRFs showed that these two walking modes have asymmetrical kinetic behavior during most parts of stance phase. Based on cross-correlation analysis, the shape of EMG activation profiles differed, where a phase shift in the muscle activation pattern of approximately 60% occurred. This shift may indicate different control mechanisms, at the spinal level, underpin FW and BW walking modalities.
机译:强调 ?在向前和向后行走(FW,BW)期间研究了地面反作用力。还这两个步行模式在大多数姿态相位期间具有不对称的动力学行为。还下肢肌肉活动显示FW和BW之间的姿势相60%的时间延迟。还不同的脊柱机制似乎是对FW和BW的控制。摘要本研究旨在比较正面(FW)和向后(BW)行走之间的地面反作用力(GRF)和下肢肌肉相关性和激活时间延迟。二十四名男学生参加了这项研究。测量了Gluteus Medius,二头肌雌性,内侧胃肠,肌肉和前胫骨肌和GRF的肌电图。每个参与者都赤脚进行两台FW和两个BW试验。统计参数映射(SPM)分析在前后和垂直GRF时间序列上进行。配对T -TEST用于SPM分析。互相关分析与EMG模式的形状和时间延迟相比相似性。 GRF的SPM分析表明,在大多数姿势相位,这两个步行模式具有不对称的动力学行为。基于互相关分析,EMG激活曲线的形状不同,其中发生大约60%的肌肉激活图案中的相移。这种偏移可以指示不同的控制机制,在脊柱水平,支撑FW和BW行走方式。

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