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持续自主收缩过程中纺锤体对α运动神经元支持作用的下降。

Decline in spindle support to alpha-motoneurones during sustained voluntary contractions.

作者信息

Macefield G, Hagbarth K E, Gorman R, Gandevia S C, Burke D

机构信息

Department of Clinical Neurophysiology, Institute of Neurological Sciences, Prince Henry Hospital, Sydney, Australia.

出版信息

J Physiol. 1991;440:497-512. doi: 10.1113/jphysiol.1991.sp018721.

Abstract
  1. To address whether the muscle spindle support to alpha-motoneurones is maintained during prolonged isometric voluntary contractions, the discharge of eighteen muscle spindle afferents, originating in the dorsiflexors of the ankle or toes, was recorded from the common peroneal nerve in eight subjects. Isometric contractions were generally sustained for 1 min, usually below 30% of the maximal voluntary dorsiflexion force. 2. Once the afferent had been identified, subjects were instructed to dorsiflex the foot slowly to recruit the spindle ending, to continue the ramp contraction until a predetermined target force was reached, and then to hold that force until requested to relax. 3. Five muscle spindle afferents maintained a constant discharge frequency during the hold phase of the isometric contraction. Following relaxation of the contraction two spindle afferents from tibialis anterior, exhibited a post-contraction discharge despite the absence of detectable electromyographic activity (EMG). 4. The discharge frequency of most of the spindle afferents (72%) declined progressively during the isometric contraction. The mean firing rates had declined to two-thirds of those at the onset of the contraction by 30 s, and to half after 1 min. The decline in spindle firing rate commenced during the ramp phase of the contraction and was statistically significant by 10 s, when force was held constant. The extent of the decline was greater for those units with the higher initial firing rates and for those units studied after many preceding contractions. 5. In the same contractions a progressive increase in EMG was required to maintain force and consequently the change in EMG was inversely related to the change in spindle discharge. While many mechanisms may contribute to the decline in spindle discharge during a sustained isometric contraction, it is argued that the result will be a progressive disfacilitation of alpha-motoneurones, which may contribute to the decline in motor unit firing rates during a sustained contraction.
摘要
  1. 为了探究在长时间等长自主收缩过程中肌肉梭对α运动神经元的支持是否得以维持,在8名受试者的腓总神经上记录了源自踝或趾背屈肌的18条肌肉梭传入纤维的放电情况。等长收缩通常持续1分钟,通常低于最大自主背屈力的30%。2. 一旦识别出传入纤维,就指示受试者缓慢背屈足部以募集梭末梢,继续进行斜坡收缩直至达到预定目标力,然后保持该力直至被要求放松。3. 5条肌肉梭传入纤维在等长收缩的保持阶段维持恒定的放电频率。收缩放松后,尽管没有可检测到的肌电图活动(EMG),但来自胫骨前肌的两条梭传入纤维仍表现出收缩后放电。4. 大多数梭传入纤维(72%)的放电频率在等长收缩过程中逐渐下降。到30秒时,平均放电频率已降至收缩开始时的三分之二,1分钟后降至一半。梭放电频率的下降在收缩的斜坡阶段开始,当力保持恒定时,10秒时具有统计学意义。初始放电频率较高的单位以及在多次先前收缩后研究的单位,下降程度更大。5. 在相同的收缩过程中,需要逐渐增加EMG来维持力,因此EMG的变化与梭放电的变化呈负相关。虽然许多机制可能导致持续等长收缩过程中梭放电的下降,但有人认为结果将是α运动神经元的逐渐去易化,这可能导致持续收缩过程中运动单位放电频率的下降。

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