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Modifications in activation of lower limb muscles as a function of initial foot position in cycling

机译:下肢肌肉激活的变化与骑行中脚初始位置的关系

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Cyclic movements, such as walking/cycling, require the activity of spinal-circuits, the central-pattern-generators (CPG). To our knowledge little work has been done to investigate the activation of these circuits, e.g., the muscular and kinematic activity during cycling initiation. This study aims to detail the muscle output properties as a function of the initial lower limb-position using a simple cycling paradigm. Therefore, subjects were required to pedal on a cycle-ergometer in seated position starting at different-crank-angles (0-150 degrees). Surface-electromyography was recorded from the gluteus major (GL), vastus lateralis (VL), and gastrocnemius medialis (GM), while crank position was recorded using a linear-encoder. Gluteus major peak-activity (PA) occurred at 65.0 +/- 12.4 degrees when starting with 0 degrees initial crank position (ICP), while occurred maximally at 110.5 +/- 2.9 when starting with 70 degrees ICP. Vastus lateralis PA occurred at 40.7 +/- 8.8 degrees with 0 degrees ICP, whereas with 70 degrees ICP PA occurred at 103.4 +/- 4.0 degrees. Similarly, GM PA occurred at 112.0 +/- 10.7 degrees with 0 degrees ICP, whereas with 70 degrees ICP PA occurred at 142.5 +/- 4.2 degrees PA. Gluteus major and gastrocnemius medialis showed similar PA phase shifts, which may suggest they are controlled by same local circuitry, in agreement with their common spinal origin, i.e., motoneurons pool in S1-S2. (C) 2015 Elsevier Ltd. All rights reserved.
机译:诸如步行/骑自行车之类的循环运动需要脊柱回路即中央模式发生器(CPG)的活动。据我们所知,尚未进行任何工作来研究这些电路的激活,例如,在循环启动过程中的肌肉和运动活动。这项研究旨在使用简单的自行车范例来详细说明肌肉输出特性与下肢初始位置的关系。因此,要求受试者从不同的曲柄角(0-150度)开始以坐姿骑自行车测功器。从臀大肌(GL),股外侧肌(VL)和腓肠肌(GM)记录表面肌电图,同时使用线性编码器记录曲柄位置。当从0度初始曲柄位置(ICP)开始时,臀肌主要峰活动(PA)出现在65.0 +/- 12.4度,而以70度ICP开始时最大出现在110.5 +/- 2.9。 ICP为0度时,外侧脊膜PA发生在40.7 +/- 8.8度,而ICP为70度时,PA发生在103.4 +/- 4.0度。同样,在0度ICP下,GM PA发生在112.0 +/- 10.7度,而在70度ICP PA下发生在142.5 +/- 4.2度。臀大肌和腓肠腓肠肌表现出相似的PA相移,这可能表明它们受相同的脊柱起源(即S1-S2中的运动神经元池)控制,受相同的局部电路控制。 (C)2015 Elsevier Ltd.保留所有权利。

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