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蟾蜍慢肌运动单位中张力的非线性总和

Non-linear summation of tension in motor units of toad slow muscle.

作者信息

Morgan D L, Proske U

出版信息

J Physiol. 1984 Apr;349:95-105. doi: 10.1113/jphysiol.1984.sp015145.

Abstract

Tension developed by single motor units and bundles of motor units has been recorded from the slow, non-twitch portion of the iliofibularis muscle of the toad Bufo marinus. Evidence was sought for the presence of individual muscle fibres within a motor unit which remained less than fully activated when the axon was maximally stimulated, i.e. at a rate and duration sufficient to produce maximum tension. When two motor units were stimulated separately and together, one at a low rate and the other at a maximal rate, the tension recorded on combined stimulation was greater than the sum of individual tensions, i.e. combined stimulation acted to 'facilitate' tension in a proportion of fibres. Adding the anticholinesterase eserine to the solution bathing the muscle produced a large increase in individual motor unit tensions but a rather smaller increase during combined stimulation of several axons. This suggested that in normal solution, maximally stimulating a single axon left many muscle fibres less than fully activated. When the local anaesthetic lignocaine was added to the bathing solution, tension in response to nerve stimulation fell, presumably because of impulse blockade in small terminal branches of the axon. However tension fell more steeply for single motor units than for combinations of motor units, again, we propose, because single motor units contain a larger fraction of incompletely activated fibres whose tension output depends critically on the level of activation. Overlap between two motor units is a measure of the proportion of fibres innervated by both axons. When overlap was measured over a range of different muscle lengths and using contractions of different durations, evidence was obtained in support of the notion that tension output of some muscle fibres was less than maximum not only because the fibre received too sparse an innervation to achieve a sufficient over-all level of depolarization but because they had been non-uniformly activated, leading to internal motion within the fibre and a consequent further drop in tension.

摘要

已从海蟾蜍(Bufo marinus)的髂腓肌慢肌、非抽搐部分记录了单个运动单位和运动单位束所产生的张力。研究人员寻找证据,以证明运动单位内存在个别肌纤维,当轴突受到最大刺激时,即刺激频率和持续时间足以产生最大张力时,这些肌纤维仍未完全激活。当分别和同时刺激两个运动单位时,一个以低频率刺激,另一个以最大频率刺激,联合刺激时记录到的张力大于单个张力之和,即联合刺激起到了“促进”部分纤维张力的作用。向浸泡肌肉的溶液中添加抗胆碱酯酶毒扁豆碱,会使单个运动单位的张力大幅增加,但在多个轴突联合刺激时增加幅度较小。这表明在正常溶液中,最大程度刺激单个轴突会使许多肌纤维未完全激活。当向浸泡溶液中添加局部麻醉剂利多卡因时,对神经刺激的反应张力下降,推测是由于轴突小终末分支中的冲动传导受阻。然而,单个运动单位的张力下降幅度比运动单位组合的更大,我们再次提出,这是因为单个运动单位包含较大比例的未完全激活纤维,其张力输出关键取决于激活水平。两个运动单位之间的重叠是由两个轴突共同支配的纤维比例的一种度量。当在一系列不同肌肉长度上并使用不同持续时间的收缩来测量重叠时,获得的证据支持了这样一种观点,即一些肌纤维张力输出未达到最大值,不仅是因为纤维的神经支配过于稀疏,无法实现足够的总体去极化水平,还因为它们的激活不均匀,导致纤维内部运动,进而使张力进一步下降。

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