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节律性下颌运动期间,肌梭传入输入效应的模式发生器控制的证据。

Evidence for pattern generator control of the effects of spindle afferent input during rhythmical jaw movements.

作者信息

Goldberg L J, Chandler S H

出版信息

Can J Physiol Pharmacol. 1981 Jul;59(7):707-12. doi: 10.1139/y81-107.

Abstract

The following recordings were made during spontaneous rhythmic jaw movements in the anesthetized guinea pig: jaw movement in the vertical plane, electromyograms from the digastric muscle (a jaw opener), and intracellular recordings from motoneurons and spindle afferent fibers of the jaw-closer muscles. The rapid jaw-opening phase of these rhythmic movements is characterized by a marked increase in activity in the spindle afferent fibers of the jaw-closer muscles and a coincident pronounced hyperpolarization of the membranes of the jaw-closer motoneurons. It is proposed that the excitatory spindle afferent input evoked by passive stretch of the jaw-closer muscles resulting from a centrally programmed contraction of the jaw-opener muscles impinges upon closer motoneurons that have been hyperpolarized as part of te central program. The hyperpolarization inhibits the motoneurons and nullifies the effect of the spindle afferent input thereby assuring relaxation of the closer muscles and an unimpeded rapid jaw-opening movement.

摘要

在麻醉的豚鼠进行自发节律性下颌运动期间进行了以下记录

垂直平面内的下颌运动、二腹肌(一种下颌张开肌)的肌电图,以及下颌闭合肌运动神经元和梭内传入纤维的细胞内记录。这些节律性运动的快速下颌张开阶段的特征是,下颌闭合肌的梭内传入纤维活动显著增加,同时下颌闭合肌运动神经元的膜出现明显的超极化。有人提出,由下颌张开肌的中枢程序性收缩导致下颌闭合肌被动拉伸所诱发的兴奋性梭内传入输入,作用于作为中枢程序一部分而发生超极化的闭合肌运动神经元。这种超极化抑制运动神经元,并抵消梭内传入输入的作用,从而确保闭合肌放松以及下颌快速张开运动不受阻碍。

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