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清醒大鼠后肢运动单位的激活模式及其与运动神经元内在特性的关系。

Activation patterns of hindlimb motor units in the awake rat and their relation to motoneuron intrinsic properties.

作者信息

Gorassini M, Bennett D J, Kiehn O, Eken T, Hultborn H

机构信息

Section of Neurophysiology, Department of Medical Physiology, University of Copenhagen, Copenhagen 2200N, Denmark.

出版信息

J Neurophysiol. 1999 Aug;82(2):709-17. doi: 10.1152/jn.1999.82.2.709.

Abstract

The activity of hindlimb motor units from the lateral gastrocnemius and tibialis anterior muscles in the awake rat was compared during locomotion and during slow, sinusoidal muscle stretch. The majority of units were activated with high initial frequencies and often commenced firing with an initial doublet or triplet, even when activated by slow muscle stretch. The high firing rates at recruitment occurred without jumps in the firing rates of other concurrently activated units, the firing rate profiles of which were used as a measure of the net synaptic drive onto the motoneuronal pool. This suggested that the sharp recruitment jumps were not due to an abrupt increase in synaptic drive but rather due to intrinsic properties of the motoneuron. In addition, motor units that were activated phasically by the muscle stretch fired more action potentials during muscle shortening than during muscle lengthening, resulting in rightwardly skewed, asymmetrical firing profiles. In contrast, when the same units fired tonically during the imposed muscle stretch, the frequency profiles were modulated symmetrically and no nonlinearities were observed. Tonically firing units were modulated symmetrically throughout a wide range of firing frequencies, and discrete jumps in rate (i.e., bistable firing) were not observed. The sharp recruitment jumps during locomotion and muscle stretch are proposed to have resulted from the additional depolarization produced by the activation of plateau potentials at recruitment. Likewise, the sustained activation of plateaus subsequent to recruitment may have produced the prolonged firing of the motor units during sinusoidal muscle stretch.

摘要

在清醒大鼠中,比较了运动期间以及缓慢正弦肌肉拉伸期间,来自外侧腓肠肌和胫骨前肌的后肢运动单位的活动。即使在缓慢肌肉拉伸激活时,大多数运动单位也以高初始频率激活,并且常常以初始双峰或三峰开始放电。募集时的高放电率出现时,其他同时激活的运动单位的放电率并没有跳跃,这些运动单位的放电率曲线被用作衡量运动神经元池净突触驱动的指标。这表明急剧的募集跳跃不是由于突触驱动的突然增加,而是由于运动神经元的内在特性。此外,被肌肉拉伸相位激活的运动单位在肌肉缩短期间比在肌肉拉长期间发放更多的动作电位,导致放电曲线向右偏斜、不对称。相反,当相同的运动单位在施加的肌肉拉伸期间持续放电时,频率曲线被对称调制,并且未观察到非线性。持续放电的运动单位在很宽的放电频率范围内被对称调制,并且未观察到放电率的离散跳跃(即双稳态放电)。运动和肌肉拉伸期间急剧的募集跳跃被认为是由于募集时平台电位激活产生的额外去极化所致。同样,募集后平台的持续激活可能导致了运动单位在正弦肌肉拉伸期间的持续放电。

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