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Plantar feedback contributes to the regulation of leg stiffness.

机译:足底反馈有助于调节腿部僵硬。

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BACKGROUND: Running and hopping involve moving in a bouncing fashion during which the limbs behave as springs. The ability to alter the stiffness of these leg springs is essential to maintaining an efficient gait. Since the plantar surface of the foot is the only part of the body to encounter the ground during bipedal locomotion, it would seem logical that some aspect of the neurological functioning of the foot is responsible for transmission of information about the surface characteristics to the central nervous system, resulting in changes in leg stiffness. METHODS: Ten subjects (9 males, 1 female) participated in this experiment. Lidocaine was injected inferior and posterior to the lateral malleolus in order to achieve tibial nerve block at the level of the ankle. Subjects hopped at 2.2 Hz on a force plate while data were collected at 1000 Hz. Data were analyzed for peak force and leg stiffness and compared using a repeated measures ANOVA. FINDINGS: Tactile sensation, deep pressure sensation, and abductor hallucis activity displayed significant decreases following the injection, as did postural stability. Subjects demonstrated a significantly decreased leg stiffness after the nerve block (P<.01). INTERPRETATION: Plantar sensation has an effect on regulating leg mechanics in hopping. A loss of sensation in this region can exert a significant impact on the properties of the leg in gait, and future research should determine the specific pathways by which plantar feedback exerts this effect.
机译:背景:奔跑和跳跃涉及弹跳运动,在此期间,肢体表现为弹簧。改变这些腿部弹簧的刚度的能力对于维持有效步态至关重要。由于脚的足底表面是双足运动期间身体接触地面的唯一部分,因此逻辑上,足部神经功能的某些方面负责将有关表面特征的信息传递给中枢神经系统,导致腿部僵硬的变化。方法:十名受试者(男9例,女1例)参加了该实验。利多卡因注射在外踝下方和后方,以达到踝关节水平的胫骨神经阻滞。受试者在测力板上以2.2 Hz的频率跳动,同时以1000 Hz的频率收集数据。分析数据的峰值力和腿部僵硬,并使用重复测量方差分析进行比较。结果:注射后,触觉,深度压力感觉和外展幻觉活动均显着降低,姿势稳定性也明显降低。受试者在神经阻滞后表现出明显的腿部僵硬(P <.01)。解释:足底感觉对调节跳跃中的腿部力学有影响。在该区域失去知觉可能会对步态中腿部的特性产生重大影响,未来的研究应确定脚底反馈发挥这种作用的具体途径。

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