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Speed-related spinal excitation from ankle dorsiflexors to knee extensors during human walking.

机译:在人类步行过程中,与速度相关的脊柱兴奋从脚踝背屈到膝伸肌。

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摘要

Automatic adjustments of muscle activity throughout the body are required for the maintenance of balance during human walking. One mechanism that is likely to contribute to this control is the heteronymous spinal excitation between human ankle dorsiflexors and knee extensors (CPQ-reflex). Here, we investigated the CPQ-reflex at different walking speeds (1-6 km/h) and stride frequencies (0.6-1.3 Hz) in healthy human subjects to provide further evidence of its modulation, and its role in ensuring postural stability during walking. The CPQ-reflex was small or absent at walking speeds below 2-3 km/h, then increased with walking speeds about 3-4 km/h, and reached a plateau without any further change at walking speeds from 4 to 6 km/h. The reflex showed no modulation when the stride cycle was varied at constant speed (4 km/h; short steps versus long steps). These changes were unlikely to be only caused by changes in the background EMG activity and modifications in peripheral input, and likely reflected central modulation of transmission in the involved reflex pathways as well. It is suggested that the purpose of the reflex is to ensure knee stability at moderate-to-high walking speeds.
机译:为了在人类行走过程中保持平衡,需要自动调节整个身体的肌肉活动。可能有助于这种控制的一种机制是人脚踝背屈肌和膝伸肌之间的异质脊柱兴奋(CPQ-反射)。在这里,我们研究了健康人在不同步行速度(1-6 km / h)和步幅频率(0.6-1.3 Hz)下的CPQ反射,以提供其调节的进一步证据,以及其在确保步行过程中姿势稳定性方面的作用。在低于2-3 km / h的步行速度下,CPQ反射很小或不存在,然后以3-4 km / h的步行速度增加,并达到平稳状态,从4到6 km / h的步行速度没有任何变化。当步幅周期以恒定速度(4 km / h;短步长步)变化时,反射没有任何调制。这些变化不太可能仅由背景肌电图活动的变化和外围输入的改变引起,也可能反映了所涉及的反射途径中传递的中央调节。建议进行反射的目的是确保在中等到较高的步行速度下膝盖的稳定性。

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