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在自愿运动过程中人体肘关节的牵张反射反应。

Stretch reflex responses in the human elbow joint during a voluntary movement.

作者信息

Bennett D J

机构信息

Department of Brain and Cognitive Sciences, Massachusetts Institute of Technology, Cambridge 01239.

出版信息

J Physiol. 1994 Jan 15;474(2):339-51. doi: 10.1113/jphysiol.1994.sp020026.

Abstract
  1. The responsiveness of the stretch reflex is modulated during human voluntary limb movements. The influence of this modulation on the limb mechanical properties (stiffness) was investigated. 2. Subjects were taught to replicate accurately a rapid (4.0 rad s-1) targeted elbow flexion movement of 1 rad. From the onset of 12% of the trials a sinusoidal position disturbance (0.05 rad) was superimposed on the normal (trained) movement trajectory. The net joint torque (muscle torque) resisting these stretches was computed from measurements of applied torque, acceleration and limb inertia. Electromyographic (EMG) responses in the triceps brachii (TB), brachialis (Br) and biceps brachii (BB) were monitored. 3. The EMG responses to sinusoidal stretches applied early in the movement were less than those responses to perturbations applied when the arm neared the target (especially in the antagonist muscle TB). These EMG responses caused fluctuations in the resistance to the perturbation (stiffness), as described below. 4. When the perturbation frequency was low (< 4 Hz) the resistance of the elbow muscles to the stretch increased as the arm approached the target (48% increase). In contrast, when the stretch frequency was 7 Hz the resistance decreased by 63%. This decrease can be explained by the increased reflex response, since at 7 Hz the reflex response is probably timed so that it assists, rather than resists, the stretching as a result of loop delays. This reflex timing was confirmed by observing that, after abruptly stopping the sinusoidal stretch, the reflex response persisted for 100 ms and was indeed in a direction that would have reduced the resistance, had the perturbation continued. 5. The time course of the net muscle stiffness was estimated for frequencies ranging from 4 to 8 Hz and for each 40 ms interval a Nyquist plot was constructed, forming a C-shaped curve as frequency was varied. The size of this curve gave a measure of the stiffness resulting from reflex activity. When the arm neared the target this reflexive stiffness reached a maximum, and was probably comparable in size to the intrinsic (non-reflexive) muscle stiffness. Also, in four of the five subjects the viscous component of stiffness at 7 Hz dropped significantly below zero when the arm neared the target, again indicating that at this frequency the reflex was large and acted inappropriately.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在人类自愿进行肢体运动期间,牵张反射的反应性会受到调节。研究了这种调节对肢体机械特性(刚度)的影响。2. 受试者被教导要准确复制一个快速(4.0弧度/秒)、幅度为1弧度的目标肘部屈曲运动。在12%的试验开始时,一个正弦位置扰动(0.05弧度)被叠加在正常(训练过的)运动轨迹上。通过测量施加的扭矩、加速度和肢体惯性来计算抵抗这些拉伸的净关节扭矩(肌肉扭矩)。监测肱三头肌(TB)、肱肌(Br)和肱二头肌(BB)的肌电图(EMG)反应。3. 在运动早期施加正弦拉伸时的EMG反应小于手臂接近目标时施加扰动时的反应(尤其是在拮抗肌TB中)。如下所述,这些EMG反应导致了对扰动的抵抗(刚度)的波动。4. 当扰动频率较低(<4赫兹)时,随着手臂接近目标,肘部肌肉对拉伸的抵抗增加(增加48%)。相反,当拉伸频率为7赫兹时,抵抗下降了63%。这种下降可以通过反射反应的增加来解释,因为在7赫兹时,反射反应的时间可能使得由于环路延迟,它协助而不是抵抗拉伸。通过观察到在突然停止正弦拉伸后,反射反应持续100毫秒,并且如果扰动继续,其方向确实会降低抵抗,从而证实了这种反射时间。5. 估计了频率范围从4到8赫兹的净肌肉刚度的时间进程,并且对于每个40毫秒间隔构建了一个奈奎斯特图,随着频率变化形成一条C形曲线。这条曲线的大小给出了反射活动产生的刚度的量度。当手臂接近目标时,这种反射性刚度达到最大值,并且其大小可能与内在(非反射性)肌肉刚度相当。此外,在五名受试者中的四名中,当手臂接近目标时,7赫兹时刚度的粘性成分显著降至零以下,再次表明在这个频率下反射很大且作用不当。(摘要截取自400字)

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