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首页> 外文期刊>Journal of Applied Biomechanics >Strain In The Tibial And Plantar Nerves With Foot and Ankle Movements And The Influence of Adjacent Joint Positions
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Strain In The Tibial And Plantar Nerves With Foot and Ankle Movements And The Influence of Adjacent Joint Positions

机译:足踝运动引起的胫骨和足底神经应变以及相邻关节位置的影响

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摘要

We studied the influence of different positions in neighboring joints on strain in the tibial and plantar nerves during ankle and toe movements. Tibial nerve strain at the ankle was measured during ankle dorsiflexion in ten cadavers; plantar nerve strain was measured during toe extension. Tibial nerve strain increased with ankle dorsiflexion (mean increase: 3.9%) and strain was higher when the nervous system was pretensioned by either knee extension or hip flexion (p ≤ .011). Strain was even higher when the nerve bed was elongated at both the hip and knee (p ≤ .006) before performing dorsiflexion. A similar trend was observed for the plantar nerves with ankle positioning. In conclusion, the change in nerve strain is strongly influenced by positions in neighboring joints. This insight into nerve bio-mechanics provides a foundation for progressive mobilization exercises for disorders such as tarsal tunnel syndrome.
机译:我们研究了踝关节和脚趾运动过程中相邻关节不同位置对胫骨和plant神经应变的影响。在十只尸体的脚踝背屈期间测量脚踝处的胫骨神经张力。在脚趾伸展过程中测量足底神经张力。胫骨神经张力随着踝背屈而增加(平均增加:3.9%),而当神经系统通过膝盖伸展或髋部屈曲而预拉伸时,张力会更高(p≤.011)。在进行背屈之前,在臀部和膝盖的神经床都拉长时,应变甚至更高(p≤.006)。对于脚踝定位的the神经也观察到类似的趋势。总之,神经张力的变化强烈受邻近关节位置的影响。对神经生物力学的了解为逐步开展动员运动(例如管综合征)提供了基础。

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