首页> 美国卫生研究院文献>Journal of Anatomy and Physiology >The development of alpha and gamma motoneuron fibres in the rat. II. A comparative ultrastructural study of their central and peripheral myelination.
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The development of alpha and gamma motoneuron fibres in the rat. II. A comparative ultrastructural study of their central and peripheral myelination.

机译:大鼠中α和γ运动神经元纤维的发育。二。他们的中央和周围髓鞘的比较超微结构研究。

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摘要

The abnodal myelin sheaths of the internodes immediately central and peripheral to the transitional node possess a decremental segment over which sheath thickness gradually decreases in the direction of the paranode. This may represent a sustained morphological immaturity of the sheath. Alpha and gamma fibre groups have different sheath thickness to axon circumference relationships at each age during development and at maturity. Gamma fibres have relatively thicker sheaths than alpha fibres. In both groups the relationship is different for central and peripheral fibre segments and also changes during maturation. It is therefore not permissible to make inferences from the adult relationship regarding the relationship during development. Changes in the relationship follow similar patterns for central and peripheral fibre segments, suggesting that the control mechanisms are closely linked in both locations. Sheath thickness growth both peripherally and centrally lags behind axon calibre growth for alpha fibres. The two keep pace for gamma fibres. The strength of the correlation between sheath thickness and axon circumference changes little with maturation in either group. The morphological differences between central and peripheral segments of ventral motoneuron fibres suggest that conduction velocity increases when the impulse enters the peripheral nervous system.
机译:中间节的紧邻过渡节的中央和周围的异常髓鞘具有递减的节段,在该节段上鞘厚度沿节旁的方向逐渐减小。这可能代表了鞘的持续的形态不成熟。在发育和成熟的每个年龄段,α和γ纤维组的鞘厚度与轴突周长关系都不同。伽玛纤维的皮层比阿尔法纤维要厚。在这两组中,中央和周围纤维段的关系都不同,并且在成熟过程中也会发生变化。因此,不允许从成人关系中推断出发展过程中的关系。关系的变化遵循中央和外围纤维段的相似模式,表明控制机制在两个位置都紧密相连。鞘层厚度的周围和中央都落后于α纤维的轴突口径增长。两者保持同步。两组的鞘厚度和轴突周长之间的相关强度随成熟而变化不大。腹侧运动神经元纤维的中央部分和周围部分之间的形态学差异表明,当冲动进入周围神经系统时,传导速度增加。

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