Heinsen H, Heinsen Y L
Anat Embryol (Berl). 1983;168(3):361-70. doi: 10.1007/BF00304274.
Volume densities, surface densities, length densities and numerical densities of several structures in the neocerebellar lobule VIa and the archicerebellar lobule X of six-month old male Han: WIST-rats were estimated by point- and intersection-counting. The volume densities of dendritic spines (ca. 6.5%), parallel fiber varicosities (ca. 25%) and processes of Bergmann glial cells (ca. 21%) were similar in the upper third of the molecular layer of lobule VIa and X respectively. The surface density of the spine membrane was 31 mm2/mm3 in lobule X and 32 mm2/mm3 in lobule VIa (p = 0.4375; paired Pitman permutation test). The length density of dendritic spines varied from 793 meters/mm3 in lobule VIa to 675 meters/mm3 in lobule X (p = 0.0938). The mean caliper diameter of parallel fiber-Purkinje cell synapses was estimated by Mayhew's (1979) method and calculated by Cruz-Orive's (1983) computer program. Both tests yielded nearly identical numerical densities of parallel fiber synapses in lobule VIa (6.558 X 10(8)/mm3) and in lobule X (4.892 X 10(8)/mm3; p = 0.0313). The area of synaptic apposition relative to the postsynaptic dendritic spine surface was higher in lobule VIa (13.3%) than in lobule X (10.4%; p = 0.0313). The data provide electron microscopic evidence of regional differences in spine morphology, which together with different spiny branchlet diameter and numerical density of parallel fiber synapses may be of importance in Purkinje cell physiology.
通过点计数和交点计数法,估算了6月龄雄性Han:WIST大鼠新小脑小叶VIa和原小脑小叶X中几种结构的体积密度、表面密度、长度密度和数量密度。小叶VIa和X分子层上三分之一中树突棘(约6.5%)、平行纤维膨体(约25%)和伯格曼胶质细胞突起(约21%)的体积密度分别相似。小叶X中棘膜的表面密度为31mm2/mm3,小叶VIa中为32mm2/mm3(p = 0.4375;配对皮特曼置换检验)。树突棘的长度密度从小叶VIa中的793米/mm3到小叶X中的675米/mm3不等(p = 0.0938)。采用Mayhew(1979年)的方法并通过Cruz-Orive(1983年)的计算机程序估算平行纤维-浦肯野细胞突触的平均卡尺直径。两种测试得出小叶VIa(6.558×10(8)/mm3)和平行纤维突触在小叶X中的数量密度几乎相同(4.892×10(8)/mm3;p = 0.0313)。相对于突触后树突棘表面的突触附着面积在小叶VIa中(13.3%)高于小叶X中(10.4%;p = 0.0313)。这些数据提供了棘形态区域差异的电子显微镜证据,其与不同的棘状小分支直径和平行纤维突触的数量密度一起,可能对浦肯野细胞生理学具有重要意义。