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哺乳动物外周神经萎缩过程中轴突直径、髓鞘厚度与传导速度之间的关系。

The relationship between axon diameter, myelin thickness and conduction velocity during atrophy of mammalian peripheral nerves.

作者信息

Gillespie M J, Stein R B

出版信息

Brain Res. 1983 Jan 17;259(1):41-56. doi: 10.1016/0006-8993(83)91065-x.

Abstract

The atrophy of cutaneous (sural) and muscle (medial gastrocnemius) nerves proximal to a ligation were studied in cats for periods up to 9 months, using light and electron microscopy, conduction velocity measurements and computer simulations. As atrophy proceeds, nerve fibres become increasingly non-circular. Cross-sectional areas of axons and fibres (axon + myelin) were measured. The diameters of equivalent circles (having the same axon and fibre cross-sectional area) were then calculated. A linear relation was found between axon diameter and fibre diameter, but the slope decreased as atrophy continued. This indicates that the axon cross-sectional area decreases relatively more than the total fibre area. Reduction in conduction velocity correlates more closely with reduction in axon diameter than fibre (axon + myelin) diameter. The ratio of the inner (axon) perimeter to the outer (myelin) perimeter remains constant at or near the optimal value of 0.6 for conduction in all groups of fibres at all periods of atrophy. Furthermore, the thickness of the myelin remains constant for a given perimeter over the entire period of atrophy studied. This suggests that the number of turns of myelin and the length of each turn remain unchanged during peripheral nerve atrophy. A simple geometric model explains how this can occur without gaps developing between the axon and myelin or between the turns of myelin. The Frankenhaeuser-Huxley equations for conduction in myelinated nerve fibres predict changes in conduction velocity similar to those observed, if the axons atrophy without changes in myelin. The advantages of this mode of atrophy are discussed.

摘要

利用光学显微镜、电子显微镜、传导速度测量和计算机模拟,对猫结扎部位近端的皮神经(腓肠神经)和肌神经(腓肠内侧肌神经)萎缩情况进行了长达9个月的研究。随着萎缩的进展,神经纤维越来越不呈圆形。测量了轴突和纤维(轴突+髓鞘)的横截面积。然后计算出具有相同轴突和纤维横截面积的等效圆的直径。发现轴突直径与纤维直径之间存在线性关系,但随着萎缩的持续,斜率下降。这表明轴突横截面积的减少相对大于总纤维面积的减少。传导速度的降低与轴突直径的降低比与纤维(轴突+髓鞘)直径的降低更密切相关。在萎缩的所有阶段,所有纤维组中,内部(轴突)周长与外部(髓鞘)周长的比值在传导的最佳值0.6或接近0.6时保持恒定。此外,在所研究的整个萎缩期间,对于给定的周长,髓鞘厚度保持恒定。这表明在周围神经萎缩期间,髓鞘的匝数和每一匝的长度保持不变。一个简单的几何模型解释了在轴突与髓鞘之间或髓鞘匝之间不产生间隙的情况下如何发生这种情况。如果轴突萎缩而髓鞘无变化,髓鞘神经纤维传导的弗兰肯海泽-赫胥黎方程预测的传导速度变化与观察到的变化相似。讨论了这种萎缩模式的优点。

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