Malbouisson A M, Ghabriel M N, Allt G
J Neurol Sci. 1985 Mar;67(3):307-18. doi: 10.1016/0022-510x(85)90155-8.
Using computer-aided morphometric methods, axonal degeneration following nerve crush was analysed to reassess whether small fibres degenerate before large fibres or vice versa, or simultaneously. Axonal microtubule density was used as the criterion for determining the extent of fibre degeneration. Axonal areas and axonal microtubule numbers were recorded from a large sample of myelinated fibres in the right unoperated rat sural nerve and distal to crush in the left sural nerve. Both samples were divided into small and large fibre groups, according to axonal areas. Statistical analysis of the data confirmed a significant loss of microtubules from the left crushed nerve fibres but no significant difference in the relative loss of microtubules from small and large fibres. It is concluded, therefore, that in Wallerian degeneration, axonal breakdown, as assessed by microtubule loss, occurs simultaneously in small and large fibres. The findings are related to the electrophysiological changes which occur in Wallerian degeneration.
运用计算机辅助形态测量方法,对神经挤压后的轴突退变进行分析,以重新评估小纤维是否比大纤维先发生退变,或者反之,还是同时发生退变。轴突微管密度被用作确定纤维退变程度的标准。从右侧未手术的大鼠腓肠神经的大量有髓纤维样本以及左侧腓肠神经挤压部位远端记录轴突面积和轴突微管数量。根据轴突面积,将两个样本都分为小纤维组和大纤维组。数据的统计分析证实,左侧挤压神经纤维的微管显著丢失,但小纤维和大纤维微管的相对丢失没有显著差异。因此得出结论,在华勒氏变性中,以微管丢失评估的轴突崩解在小纤维和大纤维中同时发生。这些发现与华勒氏变性中发生的电生理变化有关。