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Adaptation of cutaneous stumble correction when tripping is part of the locomotor environment.

机译:绊倒时适应皮肤绊倒矫正是运动环境的一部分。

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We recently showed that cutaneous reflexes evoked by stimulating the superficial peroneal (SP; innervates foot dorsum) nerve are modulated according to the level of postural threat. Context-related modulation was observed mainly in contralateral (c) responses but not in the ipsilateral responses. This lack of effect on ipsilateral (i) cutaneous reflexes might have been caused by the general nature of the whole body perturbation. We therefore hypothesized that context-relevant mechanical perturbations applied to the dorsum of the foot by an instrumented rod at early swing during walking would produce differences in ipsilateral cutaneous reflex amplitudes, consistent with the functional relevance of the SP nerve in stumble correction responses. Subjects walked on a motorized treadmill under four conditions: 1) normal, 2) normal with mechanical perturbations at the foot dorsum, 3) arms crossed, and 4) arms crossed with mechanical perturbations at the foot dorsum. Electrical stimulation of the SP nerve wasdelivered at five phases of the step cycle, and cutaneous reflexes were compared between all conditions for each phase of the step cycle. Reflex responses were generally found to be modulated in amplitude during walking conditions in which mechanical perturbations were delivered, particularly in ipsilateral tibialis anterior (iTA), which showed a marked reduction in inhibition. The results indicated cutaneous reflexes in iTA and contralateral medial gastrocnemius (cMG) were influenced by the threat of a trip, induced by applying mechanical perturbations to the foot dorsum during walking. This task-related gating of cutaneous reflexes was not generalized to all muscles, thus suggesting a functional role in the maintenance of stability during locomotion.
机译:我们最近发现,通过刺激腓浅神经引起的皮肤反射会根据姿势的威胁程度进行调节。与上下文相关的调节主要在对侧(c)反应中观察到,而在同侧反应中则没有观察到。对同侧(i)皮肤反射的这种缺乏作用可能是由全身微扰引起的。因此,我们假设,在步行过程中的早期挥杆过程中,通过器械杆对足背施加的与上下文相关的机械扰动会产生同侧皮肤反射幅度的差异,这与SP神经在跌倒校正反应中的功能相关性一致。受试者在以下四种情况下在电动跑步机上行走:1)正常,2)正常,在脚背有机械性扰动,3)手臂交叉,和4)交叉在脚背有机械性扰动的手臂。在步周期的五个阶段对SP神经进行电刺激,并在每个周期的所有条件下比较皮肤反射。通常发现,在步行状态下,反射反应的幅度被调节,在步行状态下会产生机械干扰,特别是在同侧胫骨前(iTA)中,抑制作用明显降低。结果表明,iTA和对侧内侧腓肠肌(cMG)的皮肤反射受到旅行威胁的影响,该威胁是由于步行过程中对脚背施加机械干扰而引起的。皮肤反射的这种与任务相关的门控功能并不适用于所有肌肉,因此暗示了运动过程中维持稳定性的功能性作用。

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