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Properties of fast and slow alpha motoneurones following motor reinnervation

机译:运动神经支配后快速和慢速α运动神经元的性质

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摘要

1. The properties of medial gastrocnemius (fast alpha) and soleus (slow alpha) motoneurones of the cat were examined with intracellular electrodes 33-154 days after self- or cross-union of the muscle nerves.2. The original properties of fast and slow alpha motoneurones measured in terms of the axonal conduction velocity, the duration of after-hyperpolarization and the overshoot amplitude were restored at least in part after self-union of the muscle nerves.3. Slow alpha motoneurones recovered their original properties whether the muscle nerve was united to the original, slow red muscle or to the fast pale muscle. In two animals, some of the fast muscle fibres seemed to be doubly innervated by both fast and slow alpha motoneurones.4. The degree of restoration of the original motoneurone properties was closely related to the degree of motor reinnervation of the muscle.5. At a given stage of motor reinnervation, the degree of recovery of the motoneurone properties was approximately the same regardless of the presence or absence of functional motor connexions of the motoneurone under study.6. When the dorsal root ganglia were removed immediately before self-union of the muscle nerves, recovery of the conduction velocity of motoneurones was impeded without significant effect upon the process of motor reinnervation or upon recovery of the overshoot amplitude and the duration of after-hyperpolarization.7. It is concluded that the `dedifferentiated' properties of fast and slow alpha motoneurones after nerve section may be `redifferentiated' following motor reinnervation to any muscle. The possible signal for restoration of the motoneurone properties is discussed.
机译:1.在肌肉神经自交或交叉后33-154天,用细胞内电极检查猫的内侧腓肠肌(快速α)和比目鱼肌(缓慢α)运动神经元的性质。用轴突传导速度,超极化后的持续时间和超调幅度来测量快和慢速α运动神经元的原始特性,至少在部分肌肉神经自交后得以恢复。3。无论肌肉神经与原始的慢速红色肌肉还是快速的苍白肌肉联合,慢速α运动神经元都能恢复其原始特性。在两只动物中,一些快肌纤维似乎被快速和慢速α运动神经元双重支配。4。原始运动神经元特性的恢复程度与肌肉的运动神经支配程度密切相关。5。在运动神经支配的给定阶段,无论是否研究运动神经元的功能性运动连接,运动神经元性能的恢复程度大致相同。6。当在肌肉神经自愈合之前立即移除背根神经节时,运动神经元的传导速度恢复受到阻碍,而对运动神经支配过程或过冲幅度的恢复以及超极化后的持续时间没有明显影响。 7。结论是,在对任何肌肉进行运动神经支配后,神经节后快速和慢速α运动神经元的“去分化”特性可能会“重新分化”。讨论了恢复运动神经元特性的可能信号。

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