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基于收缩和组织化学特性的运动单位分类:正常和再支配大鼠胫前肌的糖原耗竭分析

Motor-unit categorization based on contractile and histochemical properties: a glycogen depletion analysis of normal and reinnervated rat tibialis anterior muscle.

作者信息

Tötösy de Zepetnek J E, Zung H V, Erdebil S, Gordon T

机构信息

Department of Pharmacology, Heritage Medical Research Center, University of Alberta, Edmonton, Canada.

出版信息

J Neurophysiol. 1992 May;67(5):1404-15. doi: 10.1152/jn.1992.67.5.1404.

Abstract
  1. Isolated and glycogen-depleted motor units (MUs) have been studied in normal and reinnervated tibialis anterior (TA) muscles of the rat to examine 1) the correspondence between physiological and histochemical classifications, 2) the extent to which unit properties cluster according to type, 3) the relation between unit force and fatigability, and 4) the extent to which reinnervated MUs recover their former properties. 2. MUs were isolated by ventral root dissection and stimulation in reinnervated and normal TA muscles, 3.5-8 mo after common peroneal (CP) nerve section and resuture and in age-matched control rats, respectively. The units were characterized physiologically for classification into four types: slow twitch (S), fast twitch, fatigue resistant (FR), fast twitch fatigue intermediate (FI), and fast twitch fatigue sensitive (FF). Four muscle fiber types were identified histochemically with the use of a modification of the techniques of Brooke and Kaiser, and Guth and Samaha to delineate fiber subtypes on the basis of the pH sensitivity of myofibrillar adenosine triphosphatase (ATPase). 3. Neither the time-to-peak twitch force development nor the profile of unfused tetanus ("sag test") was unambiguous in separating fast from slow MUs. However, all units with a time to peak greater than 22 ms were fatigue resistant, and this time was chosen to delineate fast from slow. The fast unit population was further subdivided on the basis of their fatigability. There is normally a small proportion of S units (6% S) that increased to 20% after reinnervation. Although the fast population was subdivided, there was a continuous distribution of fatigue indexes in normal and reinnervated muscles with the highest number of fast units falling into the FI category. The proportions of fast units were 28% FR, 45% FI, and 21% FF in normal muscles and 29% FR, 38% FI, and 13% FF in reinnervated muscles. 4. In normal muscles, delineation of fast and slow fibers and subdivision of fast fiber types on the basis of acid and alkali stability of myofibrillar ATPase provided a histochemical classification that showed 78% correspondence with physiological classification of the same identified units. In reinnervated muscles the correspondence between physiological and histochemical classifications was reduced to 72%. 5. The normal correlation between MU fatigability and isometric force in TA muscles was not seen in reinnervated muscles that contained more FR MUs. Mean fatigue index from normal units was significantly less at 0.55 +/- 0.03 (mean +/- SE) compared with 0.68 +/- 0.03 from reinnervated units.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 已对大鼠正常和重新支配的胫前肌(TA)中分离出的糖原耗竭运动单位(MUs)进行了研究,以检验:1)生理分类与组织化学分类之间的对应关系;2)单位特性根据类型聚类的程度;3)单位力量与疲劳性之间的关系;4)重新支配的运动单位恢复其先前特性的程度。2. 分别在腓总神经(CP)切断并重新缝合后3.5 - 8个月的重新支配和正常TA肌肉中,以及年龄匹配的对照大鼠中,通过腹根解剖和刺激来分离运动单位。这些单位通过生理特征分类为四种类型:慢肌纤维(S)、快肌纤维、抗疲劳型(FR)、快肌纤维疲劳中间型(FI)和快肌纤维疲劳敏感型(FF)。使用对Brooke和Kaiser、Guth和Samaha技术的改进,通过肌原纤维三磷酸腺苷酶(ATPase)的pH敏感性来组织化学鉴定四种肌肉纤维类型,以划分纤维亚型。3. 无论是达到峰值抽搐力发展的时间,还是不完全强直收缩的曲线(“下垂试验”),都无法明确区分快肌和慢肌运动单位。然而,所有达到峰值时间大于22毫秒的单位都是抗疲劳的,因此选择这个时间来区分快肌和慢肌。快速单位群体根据其疲劳性进一步细分。正常情况下,一小部分S单位(6% S)在重新支配后增加到20%。尽管快速单位群体被细分,但在正常和重新支配的肌肉中,疲劳指数呈连续分布,其中数量最多的快速单位属于FI类别。正常肌肉中快速单位的比例为28% FR、45% FI和21% FF,重新支配肌肉中为29% FR、38% FI和13% FF。4. 在正常肌肉中,根据肌原纤维ATPase的酸碱稳定性来划分快肌和慢肌纤维以及细分快肌纤维类型,所提供的组织化学分类与相同已鉴定单位的生理分类显示出78%的对应关系。在重新支配的肌肉中,生理分类与组织化学分类之间的对应关系降至72%。5. 在含有更多FR运动单位的重新支配肌肉中,未观察到TA肌肉中运动单位疲劳性与等长力量之间的正常相关性。正常单位的平均疲劳指数显著较低,为0.55±0.03(平均值±标准误),而重新支配单位的为0.68±0.03。(摘要截断于400字)

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