Fabricius C, Berthold C H, Rydmark M
Department of Anatomy, University of Göteborg, Sweden.
J Anat. 1994 Apr;184 ( Pt 2)(Pt 2):319-33.
Using light and electron microscopy, axon diameter, myelin sheath thickness (measured as number of myelin lamellae) and internodal length of alpha and gamma motor axons of the L7 ventral root and spinal cord segment were investigated in serial cross-sections. The CNS internodes of the alpha motor fibres had, on average, an axon diameter of 8.6 microns, 105 myelin lamellae and a length of about 560 microns. The CNS internodes of the gamma motor fibres had, on average, an axon diameter of 3.4 microns, 66 myelin lamellae and a length of about 440 microns. Axon diameter at the nodes of Ranvier was 30-40% of the internodal axon diameter. Axon diameter, number of myelin lamellae and internodal length varied considerably between consecutive internodes. Statistical analysis showed no systematic increases or decreases. Regression analyses of the scatter plots of the number of myelin lamellae and internodal length against axon diameter showed large variations and correlation coefficients of r < 0.50. In conformity with ventral root (PNS) internodes (Nilsson & Berthold, 1988) the plotting of intrafunicular (CNS) internodal myelin volume against internodal axon mantle area showed linear correlations with correlation coefficients of r > 0.90. The mean axon diameter of the investigated CNS internodes was similar to, the mean number of myelin lamellae somewhat lower than, and the mean internodal length considerably shorter than that of internodes of axons of the L7 ventral root (Nilsson & Berthold, 1988). In contrast to the ventral root, the intrafunicular alpha motor fibres had higher g values (axon diameter/fibre diameter value) and lower il/d ratios (internodal length/axon diameter ratio) than is considered optimal for conduction. We consider that these deviations from the theoretical optimum are not large enough to impair the conduction properties of the CNS parts of the motor axons in a significant way.
利用光学显微镜和电子显微镜,在连续横切面上研究了L7腹根和脊髓节段的α和γ运动轴突的轴突直径、髓鞘厚度(以髓鞘板层数衡量)和结间长度。α运动纤维的中枢神经系统结间段平均轴突直径为8.6微米,有105层髓鞘板,长度约为560微米。γ运动纤维的中枢神经系统结间段平均轴突直径为3.4微米,有66层髓鞘板,长度约为440微米。郎飞结处的轴突直径为结间轴突直径的30 - 40%。连续结间段之间的轴突直径、髓鞘板层数和结间长度差异很大。统计分析显示没有系统性的增加或减少。髓鞘板层数和结间长度与轴突直径的散点图的回归分析显示变化很大,相关系数r < 0.50。与腹根(外周神经系统)结间段一致(尼尔森和贝托尔德,1988年),束内(中枢神经系统)结间髓鞘体积与结间轴突套膜面积的绘图显示线性相关,相关系数r > 0.90。所研究的中枢神经系统结间段的平均轴突直径与之相似,平均髓鞘板层数略低于,且平均结间长度明显短于L7腹根轴突结间段的(尼尔森和贝托尔德,1988年)。与腹根相反,束内α运动纤维的g值(轴突直径/纤维直径值)较高,il/d比值(结间长度/轴突直径比值)较低,而这被认为对传导而言并非最佳。我们认为这些与理论最佳值的偏差还不足以显著损害运动轴突中枢神经系统部分的传导特性。