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Differentiation of motoneurones and skeletal muscles in kittens.

机译:小猫中运动神经元和骨骼肌的分化。

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摘要

1. Isometric contractions of the medial gastrocnemius (fast switch) and soleus (slow twitch) muscles were recorded in kittens ranging in age from 3 to 112 days, as well as in adult cats. 2. It was confirmed that the speed of contraction of the gastrocnemius muscle becomes progressively faster during the first few weeks after birth, whereas contraction times of the soleus muscle show little changes or a slight prolongation during the period of post-natal development. 3. The properties of gastrocnemius (fast alpha) and soleus (slow alpha) motoneurons were examined with intracellular electrodes in kittens at three different stages; 16-20, 61-71 and 100-112 days in age. 4. The axonal conduction velocities of both gastrocnemius and soleus motoneurones increased monotonically throughout the period of development and showed no correlation with post-natal changes in contraction times of the innervated muscles. 5. The duration of after-hyperpolarization in soleus motoneurones became progressively longer with age, while that in gastrocnemius motoneurones remained virtually unchanged during development. 6. The relation between the duration of after-hyperpolarization and the axonal conduction velocity in kitten motoneurones was similar to that observed in axotomized motoneurones of adult cats. 7. It is suggested that fast and slow alpha motoneurones show postnatal differentiation in terms of the duration of after-hyperpolarization and that axotomy leads to 'dedifferentiation' of the motoneurone properties. 8. Post-natal changes in the contractile properties of skeletal muscles were independent of the changes in the duration of after-hyperpolarization of the innervating motoneurones. However, it remains uncertain whether muscle differentiation is independent of the discharge pattern of the innervating motoneurones.
机译:1.在3至112天的成年猫和成年猫中,记录了腓肠肌内侧(等速)和比目鱼肌(等速肌)的等长收缩。 2.证实了腓肠肌的收缩速度在出生后的最初几周内逐渐变快,而比目鱼肌的收缩时间在产后发育期间几乎没有变化或略有延长。 3.用细胞内电极在三个不同阶段对小猫的腓肠肌(快α)和比目鱼(慢α)运动神经元进行了检查。 16-20、61-71和100-112日龄。 4.腓肠肌和比目鱼运动神经元的轴突传导速度在整个发育过程中单调增加,并且与产后神经支配肌肉收缩时间的变化无关。 5.比目鱼比运动神经元的超极化后持续时间随着年龄的增长而逐渐变长,而腓肠肌比运动神经元的发展过程中则几乎保持不变。 6.小猫运动神经元中超极化后的持续时间与轴突传导速度之间的关系与成年猫的轴突化运动神经元中观察到的关系相似。 7.建议快速和慢速α-运动神经元在超极化后的持续时间方面表现出出生后的分化,而轴突切开术会导致运动神经元特性的“去分化”。 8.产后骨骼肌收缩特性的变化与支配性运动神经元的超极化后持续时间的变化无关。然而,仍不确定肌肉分化是否独立于神经支配的运动神经元的放电模式。

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