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Observations on the automatic compensation of reflex gain on varying the pre-existing level of motor discharge in man.

机译:在改变人体现有的放电水平时对反射增益的自动补偿的观察。

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摘要

The human stretch reflex is well known to show 'automatic gain compensation'; in other words, the electromyographic (e.m.g.) response evoked by a given disturbance increases progressively with the level of pre-existing voluntary activity, and so remains an approximately constant proportion of the background. Such behaviour has now been observed using vibration as the stimulus to Ia action and recording the reflexly developed force, in addition to the e.m.g. Inhibition was studied as well as excitation by vibrating the antagonist as well as the agonist, and found to be similarly regulated. The experiments were performed on the elbow flexors while they were contracting isometrically under voluntary drive. The vibration was either square-wave modulated at 5 Hz or delivered in bursts of one to five pulses. The latency of the e.m.g. responses produced by the latter was sufficiently short to show that gain compensation was a feature of spinal reflex action. In the Discussion, it is concluded that in principle 'automatic gain compensation' can be readily attributed to the known organization of the motoneurone pool. As the background force increases so does the number of active motoneurones available to be frequency-modulated by a given input, and the larger and stronger will be those motor units which are on the verge of recruitment or de-recruitment.
机译:众所周知,人体伸展反射会表现出“自动增益补偿”。换句话说,由给定干扰引起的肌电图(例如,m.g。)响应随着预先存在的自愿活动的水平而逐渐增加,因此保持背景的大致恒定比例。现在已经观察到了这样的行为,除了例如通过使用振动作为对Ia作用的刺激并记录了反射产生的力。研究了抑制作用以及通过振动拮抗剂和激动剂引起的兴奋,并发现其被类似地调节。在肘部屈肌在自愿驱动下等距收缩时对它们进行实验。振动要么以5 Hz的方波调制,要么以1到5个脉冲的突发形式传递。 e.m.g.的延迟后者产生的反应足够短,以表明增益补偿是脊柱反射动作的特征。在讨论中得出的结论是,原则上“自动增益补偿”可以容易地归因于运动神经元池的已知组织。随着背景力的增加,可用于由给定输入进行频率调制的有源运动神经元的数量也将增加,并且那些处于招募或取消招募边缘的电动机单元将变得越来越大。

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