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猫胫骨前肌自我再支配后运动单位特性神经控制不完整的证据。

Evidence of incomplete neural control of motor unit properties in cat tibialis anterior after self-reinnervation.

作者信息

Unguez G A, Bodine-Fowler S, Roy R R, Pierotti D J, Edgerton V R

机构信息

Department of Physiological Science, University of California at Los Angeles 90024-1527.

出版信息

J Physiol. 1993 Dec;472:103-25. doi: 10.1113/jphysiol.1993.sp019939.

Abstract
  1. The mechanical, morphological and biochemical properties of single motor units from the anterior compartment of the tibialis anterior muscle in adult cats were studied six months after the nerve branches to that compartment were cut and resutured in close proximity to the muscle. 2. In these self-reinnervated muscles, the maximum tetanic tensions were lower in slow than fast units, a relationship similar to that observed among motor units from control adult muscles. The maximum tetanic tensions produced by the fast units were larger than those produced by the same motor unit types in control muscles. Direct counts of muscle fibres belonging to a motor unit showed that factors controlling the number of muscle fibres innervated by a motoneurone type persist during the reinnervation process in that fast motoneurones reinnervated more muscle fibres than slow motoneurones. Thus, the number of muscle fibres reinnervated by a motoneurone principally accounted for the difference in the maximum tension outputs among motor unit types, a relationship similar to that observed in control tibialis anterior muscles. 3. Monoclonal antibodies for specific myosin heavy chains were used to differentiate fibre types. By this criterion, motor units from control muscles were found to contain a homogeneous fibre type composition. In contrast, a heterogeneous, yet markedly biased, fibre type composition was observed in each unit analysed from self-reinnervated muscles. 4. Although not all of the muscle fibres of a motor unit developed the same type-associated parameters after reinnervation, the relationships among myosin heavy chain profile, succinate dehydrogenase activity and the fibre size were similar in fibres of control and self-reinnervated muscles. 5. The processes which dictate both motor unit size and the matching between motoneurone and muscle fibre type during the reinnervation process must be interdependent and result from a hierarchy of decisions which reflects their relative importance. The mechanisms responsible for these two processes may be a combination of: (1) selective innervation which may or may not incorporate a pruning process if multiple synaptic connections are initially formed and/or (2) conversion of enough fibres of a motor unit to form a predominant type.
摘要
  1. 在成年猫胫前肌前侧肌间隔的神经分支被切断并在靠近肌肉处重新缝合六个月后,对其单个运动单位的机械、形态和生化特性进行了研究。2. 在这些自我重新支配的肌肉中,慢运动单位的最大强直张力低于快运动单位,这一关系与在对照成年肌肉的运动单位中观察到的相似。快运动单位产生的最大强直张力大于对照肌肉中相同运动单位类型产生的张力。对属于一个运动单位的肌纤维进行直接计数表明,在重新支配过程中,控制由一种运动神经元类型支配的肌纤维数量的因素依然存在,即快运动神经元重新支配的肌纤维比慢运动神经元多。因此,运动神经元重新支配的肌纤维数量主要解释了运动单位类型之间最大张力输出的差异,这一关系与在对照胫前肌中观察到的相似。3. 使用针对特定肌球蛋白重链的单克隆抗体来区分纤维类型。根据这一标准,发现对照肌肉的运动单位包含均匀的纤维类型组成。相比之下,在从自我重新支配的肌肉中分析的每个单位中观察到了异质性但明显有偏差的纤维类型组成。4. 尽管运动单位的并非所有肌纤维在重新支配后都发展出相同的类型相关参数,但对照肌肉和自我重新支配肌肉的纤维中,肌球蛋白重链谱、琥珀酸脱氢酶活性和纤维大小之间的关系是相似的。5. 在重新支配过程中决定运动单位大小以及运动神经元与肌纤维类型匹配的过程必须是相互依存的,并且是由反映其相对重要性的决策层次结构导致的。负责这两个过程的机制可能是以下两者的组合:(1) 选择性支配,如果最初形成多个突触连接,可能会或可能不会包含修剪过程;和/或 (2) 将运动单位的足够多纤维转化以形成主要类型。

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