McMullen N T, Glaser E M, Tagamets M
J Comp Neurol. 1984 Jan 20;222(3):383-95. doi: 10.1002/cne.902220306.
A study of the morphometry and laminar distribution of spine-free nonpyramidal neurons in electrophysiologically verified primary auditory cortex was carried out in adult rabbits. By using image-combining computer microscopy, the locations of all impregnated neurons in 300-micrometers Golgi-Cox Nissl sections through the auditory cortex were determined. Spine-free non-pyramidal neurons constitute nearly 72% of the nonpyramidal neurons present. They are distributed in a band extending from 450 to 750 micrometers beneath the pial surface corresponding to laminae III and IV. A combination of dendritic stick, Fourier, and statistical analyses revealed a highly significant spatial orientation of their dendrite systems along a vertical axis parallel to the apical dendrites of pyramidal neurons. A significant tangential orientation of dendrites along a dorsal-ventral axis was also found. A radial analysis of the dendrite systems revealed that the pronounced vertical orientation of spine-free nonpyramidal neurons is due to (1) directed dendritic growth along the vertical axis, (2) decreased branching and rapid termination of tangentially oriented dendrites, and (3) increased branching of vertically growing dendrites. The radial analysis also revealed that the longest branches are those directed toward the white matter.
在成年兔中,对经电生理验证的初级听觉皮层中无棘非锥体神经元的形态测量和分层分布进行了研究。通过使用图像合成计算机显微镜,确定了穿过听觉皮层的300微米厚高尔基-考克斯尼氏染色切片中所有被浸染神经元的位置。无棘非锥体神经元占非锥体神经元总数的近72%。它们分布在软膜表面下方450至750微米的带状区域,对应于第III和第IV层。通过树突棒、傅里叶和统计分析相结合的方法发现,它们的树突系统沿与锥体神经元顶树突平行的垂直轴具有高度显著的空间取向。还发现树突沿背腹轴有明显的切向取向。对树突系统的径向分析表明,无棘非锥体神经元明显的垂直取向是由于:(1)树突沿垂直轴定向生长;(2)切向取向的树突分支减少并迅速终止;(3)垂直生长的树突分支增加。径向分析还表明,最长的分支是指向白质的那些分支。