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猫腓肠肌运动单位的生理类型和组织化学特征

Physiological types and histochemical profiles in motor units of the cat gastrocnemius.

作者信息

Burke R E, Levine D N, Tsairis P, Zajac F E

出版信息

J Physiol. 1973 Nov;234(3):723-48. doi: 10.1113/jphysiol.1973.sp010369.

Abstract
  1. A variety of physiological properties of single motor units have been studied in the gastrocnemius muscle (primarily in the medial head) of pentobarbitone-anaesthetized cats. Intracellular stimulation of individual motoneurones ensured functional isolation of the muscle units innervated by them.2. A system for muscle unit classification was developed using a combination of two physiological properties. Almost all of the units studied could be classified into one of three major types, including two groups with relatively short twitch contraction times (types FF and FR, which were differentiable from one another on the basis of sensitivity to fatigue) and one group with relatively long contraction times (type S, which were extremely resistant to fatigue and were differentiable from FF and FR units on the basis of the shape of unfused tetani). Post-tetanic potentiation of twitch responses was observed in all three muscle unit types. The distributions of axonal conduction velocities for motoneurones innervating FF and FR muscle units were essentially the same, while conduction velocities for motoneurones innervating type S units were, in general, slower.3. Histochemical profiles of muscle units representative of each of the physiological classes present in the gastrocnemius pool were determined using a method of glycogen depletion for muscle unit identification. Each of the physiological categories of muscle units exhibited a corresponding unique set of muscle fibre staining reactions, or histochemical profile. Within each physiological type, all of the units examined had the same histochemical profile. The results generally support the hypothesis that the histochemical characteristics of muscle fibres are meaningfully related to the physiological properties of the same fibres. However, certain limitations in the detailed application of the hypothesis were also apparent.4. Systematic assessment of the histochemical profiles of relatively large numbers of fibres belonging to single muscle units provided strong support for the hypothesis that all of the muscle fibres innervated by a single alpha-motoneurone are histochemically identical.
摘要
  1. 已在戊巴比妥麻醉猫的腓肠肌(主要是内侧头)中研究了单个运动单位的多种生理特性。对单个运动神经元进行细胞内刺激可确保由它们支配的肌肉单位功能分离。

  2. 利用两种生理特性的组合开发了一种肌肉单位分类系统。几乎所有研究的单位都可分为三种主要类型之一,包括两组具有相对较短抽搐收缩时间的类型(FF型和FR型,它们根据对疲劳的敏感性彼此区分)和一组具有相对较长收缩时间的类型(S型,它们对疲劳极具抵抗力,并且根据不完全强直收缩的形状与FF型和FR型单位区分)。在所有三种肌肉单位类型中均观察到抽搐反应的强直后增强。支配FF型和FR型肌肉单位的运动神经元的轴突传导速度分布基本相同,而支配S型单位的运动神经元的传导速度通常较慢。

  3. 使用糖原耗竭法来识别肌肉单位,确定了腓肠肌池中代表每种生理类别的肌肉单位的组织化学特征。肌肉单位的每个生理类别都表现出一组相应的独特肌肉纤维染色反应,即组织化学特征。在每种生理类型中,所有检查的单位都具有相同的组织化学特征。结果总体上支持了肌肉纤维的组织化学特征与相同纤维的生理特性有意义地相关的假设。然而,该假设详细应用中的某些局限性也很明显。

  4. 对属于单个肌肉单位的相对大量纤维的组织化学特征进行系统评估,为单个α运动神经元支配的所有肌肉纤维在组织化学上相同的假设提供了有力支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b357/1350696/55b02807345d/jphysiol00951-0250-a.jpg

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