首页> 美国卫生研究院文献>The Journal of Physiology >Factors causing difference in force output among motor units in the rat medial gastrocnemius muscle.
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Factors causing difference in force output among motor units in the rat medial gastrocnemius muscle.

机译:引起大鼠内侧腓肠肌运动单位之间力输出差异的因素。

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摘要

1. The isometric contractile properties and morphological characteristics of the muscle unit portion of motor units were investigated in the medial gastrocnemius (MG) muscle of Fischer 344 rats. Individual motor units were functionally isolated by stimulating single MG axons in finely dissected ventral root filaments. 2. To study the mechanical properties of the motor units in the rat MG muscle, ninety-six motor units in five animals were classified into three categories (type FF, FR and S units) using two physiological criteria: presence or absence of the 'sag' property and fatigability. The relative distribution of the different motor unit types in the sample was 35.4% for type FF, 47.9% for type FR, and 16.7% for type S units. 3. There was little overlap in the distribution of twitch contraction time between type F (including types FF and FR) and type S units. The mean value was 17.1 ms for type FF, 15.7 ms for type FR, and 28.0 ms for type S units. Type FF units produced the largest tetanic tension (mean +/- S.D.; 201 +/- 75 mN). Tension output of type S units was the smallest (15 +/- 6 mN), and that of type FR units was intermediate (100 +/- 45 mN). These values were significantly different. 4. A muscle unit portion of twenty-three motor units (8 FF, 6 FR, and 9 S units) was depleted of its glycogen through repetitive stimulation after characterization of its mechanical properties. Cross-sectional areas of units fibres and innervation ratio were directly measured in sections stained for glycogen using a periodic and acid-Schiff (PAS) reaction. Specific tension of unit fibres was calculated by dividing the maximum tetanic tension of a unit by its total fibre area. 5. The number of unit fibres ranged from 44 to 77 for type S, 116 to 198 for type FR, and 221 to 356 for type FF units, and differences among their means (66, 154 and 271, respectively) were significant. Tetanic tension was correlated with innervation ratio for all of the twenty-three units, or units within a particular type. 6. Mean fibre area for type S units (1983 microns2) was significantly smaller than that for type FF units (3489 microns2). Fibres belonging to type FR units had an intermediate size (2648 microns2). Correlation between tetanic tension and fibre area was significant for either all units or units within a particular type. 7. Total cross-sectional area was significantly different among the motor unit types, and was highly correlated to the maximum tetanic tension.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.在Fischer 344大鼠的内侧腓肠肌(MG)肌肉中研究了运动单位的肌肉单位部分的等距收缩特性和形态特征。通过刺激细切的腹根细丝中的单个MG轴突,功能性分离各个运动单位。 2.为了研究大鼠MG肌肉中运动单位的机械性能,使用两个生理标准将五只动物中的96个运动单位分为三类(FF,FR和S型),即是否存在'松弛性和易疲劳性。样品中不同电机单元类型的相对分布对于FF型为35.4%,对于FR型为47.9%,对于S型为16.7%。 3. F型(包括FF和FR型)和S型单位之间的抽搐收缩时间分布几乎没有重叠。 FF型平均值为17.1 ms,FR型平均值为15.7 ms,S型单位平均值为28.0 ms。 FF型装置产生最大的强直张力(平均+/-标准偏差; 201 +/- 75 mN)。 S型单元的张力输出最小(15 +/- 6 mN),而FR型单元的张力输出中等(100 +/- 45 mN)。这些值明显不同。 4.在表征其机械特性之后,通过重复刺激消耗了23个运动单位(8 FF,6 FR和9 S单位)的肌肉单位部分的糖原。使用周期性和酸-席夫(PAS)反应,在糖原染色的切片中直接测量单位纤维的横截面积和神经支配率。单位纤维的比张力通过将单位的最大破伤张力除以其总纤维面积来计算。 5.对于S型,单位纤维的数量范围为44至77,对于FR型,单位纤维的数量为116至198,对于FF型单位,纤维的范围为221至356,它们的均值差异很大(分别为66、154和271)。二十三个单位或特定类型内的单位的破伤风张力与神经支配率相关。 6. S型装置(1983微米2)的平均纤维面积明显小于FF型装置(3489微米2)的平均纤维面积。属于FR型单元的纤维具有中等尺寸(2648微米2)。对于所有单位或特定类型中的单位,强直张力与纤维面积之间的相关性均显着。 7.总截面积在电机类型之间存在显着差异,并且与最大张紧度高度相关。(抽象截断为400字)

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