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大鼠三条后肢肌肉中纺锤体的神经组织

Neural organization of spindles in three hindlimb muscles of the rat.

作者信息

Kucera J, Walro J M, Reichler J

机构信息

Department of Neurology School of Medicine, Boston University 02118.

出版信息

Am J Anat. 1991 Jan;190(1):74-88. doi: 10.1002/aja.1001900107.

Abstract

The neuroanatomical organization of the dynamic (bag1) and static (bag2 and chain) intrafusal systems was compared by light and electron microscopy of serial sections among 71 poles of muscle spindle in soleus (SOL), extensor digitorum longus (EDL), and lumbrical (LUM) muscles in the rat. Eighty-four percent of 195 fusimotor (gamma) axons to the spindles innervated either the dynamic bag1 fiber or the static bag2 and/or chain fibers. Sixteen percent of the gamma axons coinnervated the dynamic and static intrafusal fibers. Some of these nonselective axons were branches of effernts that also gave rise to axons selective to either the dynamic or static types of intrafusal fibers in one or more spindles. Thus activation of individual stem gamma efferents might not have a purely dynamic or purely static effect on the integrated afferent outflow from spindles of a hindlimb muscles in the rat. In addition, primary afferents in all muscles had terminations that cross-innervated the dynamic bag1 and static bag1 and/or chain intrafusal fibers in individual spindles, an arrangement that may enhance the mixed dynamic/static behavior of afferents when different intrafusal fibers are activated concurrent. Spindles of the slow SOL and fast EDL muscles had similar features, whereas differences were observed in the organization of the proximal (SOL and EDL) and distal (LUM) muscles. Spindles in LUM muscles had fewer static intrafusal fibers, a higher ratio of dynamic to static gamma axons, and a higher incidence of skeletofusimotor (beta) innervation to intrafusal fibers than spindles in the SOL or EDL muscles. Thus, the relative contribution of dynamic and static systems to muscle afferent outflow may differ among spindles located in different segments of the rat hindlimb. However, the dynamic and static intrafusal systems of spindle were less sharply demarcated in each of the three hindlimb rat muscles than in the cat tenuissimus muscle.

摘要

通过对大鼠比目鱼肌(SOL)、趾长伸肌(EDL)和蚓状肌(LUM)中71个肌梭极的连续切片进行光镜和电镜观察,比较了动态(袋1)和静态(袋2和链)肌梭内系统的神经解剖组织。支配肌梭的195条肌梭运动(γ)轴突中,84%支配动态袋1纤维或静态袋2和/或链纤维。16%的γ轴突共同支配动态和静态肌梭内纤维。其中一些非选择性轴突是传出纤维的分支,这些传出纤维在一个或多个肌梭中也会发出对动态或静态类型肌梭内纤维具有选择性的轴突。因此,单个γ传出纤维的激活可能不会对大鼠后肢肌肉肌梭整合的传入输出产生纯粹的动态或纯粹的静态影响。此外,所有肌肉中的初级传入纤维在单个肌梭中有交叉支配动态袋1和静态袋1和/或链肌梭内纤维的终末,这种排列可能会在不同的肌梭内纤维同时被激活时增强传入纤维的动态/静态混合行为。慢肌SOL和快肌EDL的肌梭具有相似的特征,而在近端(SOL和EDL)和远端(LUM)肌肉的组织中观察到差异。LUM肌肉中的肌梭比SOL或EDL肌肉中的肌梭具有更少的静态肌梭内纤维、更高的动态与静态γ轴突比例以及更高的骨骼肌梭运动(β)神经支配肌梭内纤维的发生率。因此,动态和静态系统对肌肉传入输出的相对贡献可能在大鼠后肢不同节段的肌梭之间有所不同。然而,与猫的薄肌相比,大鼠后肢的这三块肌肉中肌梭的动态和静态肌梭内系统划分不那么明显。

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