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首页> 外文期刊>The Journal of Physiology >Spinal control of muscle synergies for adult mammalian locomotion
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Spinal control of muscle synergies for adult mammalian locomotion

机译:成人哺乳动物运动肌肉协同效应的脊髓控制

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摘要

Locomotion is thought to involve the sequential activation of functional modules or muscle synergies. Here, we tested the hypothesis that muscle synergies for locomotion are organized within the spinal cord. We recorded bursts of muscle activity in the same cats (n = 7) before and after spinal transection during tied-belt locomotion at three speeds and split-belt locomotion at three left-right speed differences. We identified seven muscles synergies before (intact state) and after (spinal state) spinal transection. The muscles comprising the different synergies were the same in the intact and spinal states as well as at different speeds or left-right speed differences. However, there were some significant shifts in the onsets and offsets of certain synergies as a function of state, speed and left-right speed differences. The most notable difference between the intact and spinal states was a change in the timing between the knee flexor and hip flexor muscle synergies. In the intact state, the knee flexor synergy preceded the hip flexor synergy, whereas in the spinal state both synergies occurred concurrently. Afferent inputs also appear important for the expression of some muscle synergies, specifically those involving biphasic patterns of muscle activity. We propose that muscle synergies for locomotion are primarily organized within the spinal cord, although their full expression and proper timing requires inputs from supraspinal structures and/or limb afferents.
机译:旨在涉及功能模块或肌肉协同效应的连续激活。在这里,我们测试了肌肉协同效应的假设在脊髓内组织。在三个左右速度差异的三个速度和分腰带运动的脊柱横跨之前和脊柱间隔之前和之后,在脊柱横断之前和之后录制了肌肉活动的爆发。我们在(完整状态)和(脊柱状态)脊柱横断后确定了七个肌肉协同效应。包含不同协同作用的肌肉在完整和脊柱状态以及不同的速度或左右速度差异中是相同的。然而,作为状态,速度和左右速度差异的函数,在某些协同效应的持续方面和偏移中存在一些重要的变化。完整和脊柱状态之间最值得注意的差异是膝关节屈肌和髋部屈肌肌肉协同效应的时序变化。在完整状态下,膝关节屈肌协同效果在髋部屈肌协同作用之前,而在脊柱状态下,两个协同作用同时发生。传入的输入对于表达一些肌肉协同效应也显得重要,特别是那些涉及肌肉活动的双相模式。我们提出用于运动的肌肉协同效应主要在脊髓内部组织,尽管它们的全表达和适当的时序需要来自袋子结构和/或肢体传入的输入。

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