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Contractile characteristics and innervation ratio of rat soleus motor units.

机译:比目鱼运动单位的收缩特性和神经支配率。

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摘要

1. Physiological properties of motor units in the soleus muscle were studied in anaesthetized rats using ventral root splitting to isolate single units. 2. Motor unit types were classified by the same criteria used to classify cat hindlimb motor units into types FR (fast-twitch, fatigue-resistant) and type S (slow-twitch, fatigue-resistant). Type FR units were estimated to generate 10% of whole-muscle tension and type S 90%. All FR units showed sag in the unfused tetanus at frequencies with interpulse intervals greater than 175% of twitch time to peak, but not at 125% (Burke, Levine, Tsairis & Zajac, 1973). 3. The muscle fibres belonging to twelve single motor units were depleted of glycogen by prolonged stimulation, permitting analysis of their histochemical profiles. Type FR units were found to consist of type IIA muscle fibres and type S units of type I muscle fibres. 4. Direct determinations were made of fibre area, innervation ratio (number of muscle fibres supplied by one motoneurone) and hence specific tension (tetanic tension generated per unit cross-sectional area) of individually identified motor units. Motoneurons were found to innervate between 84 and 178 muscle fibres (mean 110) in type S units and between 126 and 161 fibres in type FR units (mean 142). Fibre areas were larger for type FR units and there was a significant difference in specific tension of the two unit types (type S lower). 5. Indirect estimates of innervation ratio and specific tension were obtained from counts of muscle fibre types, and relative frequencies of motor unit types in the soleus unit pool. Observations agreed well with results of direct measurements. 6. The evidence provided suggests that differences in tension generated by type FR and S units in rat soleus muscle are primarily due to differences in innervation ratio and fibre area, with a small contribution from differences in specific tension.
机译:1.在麻醉大鼠的比目鱼肌中,使用腹侧根分裂法分离单个单位,研究其比目鱼肌运动单位的生理特性。 2.电机单元类型的分类采用与将猫后肢电机单元分为FR型(快速抽动,耐疲劳)和S型(慢速抽动,耐疲劳)相同的标准。估计FR型单位可产生10%的全肌张力,S型单位可产生90%的全肌肉张力。所有FR单位在未融合的破伤风中均出现下垂,其间断间隔大于抽动时间达到峰值的175%,但未达到125%(Burke,Levine,Tsairis&Zajac,1973)。 3.长时间刺激后,属于十二个单个运动单位的肌肉纤维中的糖原消耗permit尽,可以对其组织化学特征进行分析。发现FR型单位由IIA型肌纤维和I型肌纤维的S型单位组成。 4.直接确定纤维面积,神经支配率(由一个运动神经元提供的肌肉纤维的数量),以及因此确定的个别确定的电机单元的比张力(每单位横截面积产生的张紧度)。发现单质子神经以S型单位支配84至178条肌纤维(平均110),而FR型单位支配于126至161条纤维(平均142)。 FR型单元的纤维面积较大,并且两种单元型的比张力存在显着差异(S型较低)。 5.从比肌单位池中肌肉纤维类型的计数以及运动单位类型的相对频率,间接获得神经支配率和比张力的估计值。观察结果与直接测量的结果非常吻合。 6.提供的证据表明,大鼠比目鱼肌中FR型和S型单位产生的张力差异主要是由于神经支配率和纤维面积的差异所致,而比张力的差异很小。

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