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大鼠胫骨前肌运动神经元与肌肉单位之间平均但不连续的速度匹配。

Average but not continuous speed match between motoneurons and muscle units of rat tibialis anterior.

作者信息

Bakels R, Kernell D

机构信息

Graduate School Neurosciences Amsterdam, Department of Neurophysiology, University of Amsterdam, The Netherlands.

出版信息

J Neurophysiol. 1993 Oct;70(4):1300-6. doi: 10.1152/jn.1993.70.4.1300.

Abstract
  1. Properties of single motoneuron/muscle-unit combinations were determined for tibialis anterior (TA) in rats anesthetized with pentobarbital. The TA observations were systematically compared with those obtained earlier by the use of the same techniques from rat medial gastrocnemius (MG). 2. TA motoneurons were investigated with regard to afterhyperpolarization (AHP; total duration 32-74 ms, amplitude 0.39-4.96 mV) and axonal conduction velocity (41-79 m/s). TA muscle-unit measurements included the time course of the isometric twitch (time-to-peak force 10.8-18.0 ms; total duration 42-92 ms), the maximum tetanic force (22-217 mN), and a measure of fatigue sensitivity (fatigue index 5-100%). The range of twitch and AHP durations ("speed range") was markedly smaller in the present TA material than for MG. 3. The mean duration of the TA motoneuronal AHP (49 +/- 8 ms, mean +/- SD) was close to that of its muscle-unit twitch (56 +/- 12 ms). Thus an "average" speed match existed between TA motoneurons and their muscle fibers. 4. For TA there was no correlation between the time courses of AHP and twitch. Thus there was for TA no "continuous" speed match between the motoneurons and their muscle fibers. 5. For TA twitches or AHPs studied separately, there was a significant correlation between different time course measures. Furthermore, compared with TA units having relatively fast twitches, those with slower twitches tended to show 1) a smaller maximum tetanic force and 2) a greater AHP amplitude. Fatigue-resistant units tended to have slower twitches than fatigue-sensitive ones.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 在用戊巴比妥麻醉的大鼠中,测定了胫前肌(TA)单个运动神经元/肌肉单位组合的特性。将TA的观察结果与早期使用相同技术从大鼠内侧腓肠肌(MG)获得的结果进行了系统比较。2. 研究了TA运动神经元的超极化后电位(AHP;总持续时间32 - 74毫秒,幅度0.39 - 4.96毫伏)和轴突传导速度(41 - 79米/秒)。TA肌肉单位测量包括等长收缩的时间过程(峰值力时间10.8 - 18.0毫秒;总持续时间42 - 92毫秒)、最大强直力(22 - 217毫牛)以及疲劳敏感性测量(疲劳指数5 - 100%)。与MG相比,当前TA材料中收缩和AHP持续时间的范围(“速度范围”)明显更小。3. TA运动神经元AHP的平均持续时间(49±8毫秒,平均值±标准差)与其肌肉单位收缩的平均持续时间(56±12毫秒)相近。因此,TA运动神经元与其肌肉纤维之间存在“平均”速度匹配。4. 对于TA,AHP和收缩的时间过程之间没有相关性。因此,TA运动神经元与其肌肉纤维之间不存在“连续”速度匹配。5. 对于单独研究的TA收缩或AHP,不同时间过程测量之间存在显著相关性。此外,与收缩相对较快的TA单位相比,收缩较慢的单位往往表现出:1)最大强直力较小;2)AHP幅度较大。抗疲劳单位的收缩往往比疲劳敏感单位的收缩慢。(摘要截断于250字)

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