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被动伸展时比目鱼肌 H 反射的时间抑制。

Temporal depression of the soleus H-reflex during passive stretch.

机构信息

Department of Sport and Exercise Science, Jacksonville University, Jacksonville, FL 32211, USA.

出版信息

Exp Brain Res. 2012 Jun;219(2):217-25. doi: 10.1007/s00221-012-3080-1. Epub 2012 Mar 31.

Abstract

Synaptic efficacy associated with muscle spindle feedback is regulated via depression at the Ia-motoneurone synapse. The inhibitory effects of repetitive Ia afferent discharge on target motoneurones of different sizes were investigated during a passive stretch of ankle extensors in humans. H-reflex recruitment curves were collected from the soleus muscle for two conditions in ten subjects. H-reflexes were elicited during passive stretch at latencies of 50, 100, 300, and 500 ms after a slow (20°/s) dorsiflexion about the right ankle (from 100 to 90°). Control H-reflexes were recorded at corresponding static (without movement) ankle angles of 99, 98, 94, and 90° of flexion. The slope of the H-reflex recruitment curves (Hslp) was then calculated for both conditions. H-reflex values were similar for the static and passive stretch conditions prior to 50-100 ms, not showing the early facilitation typical of increased muscle spindle discharge rates. However, the H-reflex was significantly depressed by 300 ms and persisted through 500 ms. Furthermore, less than 300 ms into the stretch, there was significantly greater H-reflex depression with a lower stimulus intensity (20 % Mmax) versus a higher stimulus intensity (Hmax), though the effects begin to converge at later latencies (>300 ms). This suggests there is a distinct two-stage temporal process in the depression observed in the Ia afferent pathway for all motoneurones during a passive stretch. Additionally, there is not a single mechanism responsible for the depression, but rather both heterosynaptic presynaptic inhibition and homosynaptic post-activation depression are independently influencing the Ia-motoneurone pathway temporally during movement.

摘要

与肌梭反馈相关的突触效能受 Ia 运动神经元突触抑制的调节。在人体踝关节伸展的被动伸展过程中,研究了重复 Ia 传入放电对不同大小靶运动神经元的抑制作用。在 10 名受试者的两种情况下,从比目鱼肌中收集 H 反射募集曲线。在 20°/s 的右踝关节背屈(从 100°至 90°)后,H 反射在 50、100、300 和 500 ms 的潜伏期下被动伸展时被引出。在相应的静态(无运动)踝关节角度 99、98、94 和 90°下记录对照 H 反射。然后计算两种情况下 H 反射募集曲线的斜率(Hslp)。在 50-100 ms 之前,静态和被动伸展条件下的 H 反射值相似,没有表现出增加肌梭放电率的典型早期易化。然而,H 反射在 300 ms 时显著抑制,并持续到 500 ms。此外,在伸展开始后不到 300 ms 时,用较低的刺激强度(20% Mmax)与较高的刺激强度(Hmax)相比,H 反射抑制显著增加,尽管在后期潜伏期(>300 ms)开始收敛。这表明,在被动伸展期间,所有运动神经元的 Ia 传入通路中观察到的抑制存在明显的两阶段时间过程。此外,不是单一机制负责抑制,而是异突触前抑制和同突触后激活抑制都在运动期间独立地影响 Ia 运动神经元通路的时间进程。

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