Spann B M, Grofova I
Department of Anatomy, Michigan State University, East Lansing 48824-1316.
J Comp Neurol. 1991 Sep 15;311(3):375-88. doi: 10.1002/cne.903110308.
The termination of the substantia nigra pars reticulata efferents in the nucleus tegmenti pedunculopontinus was studied in the rat by using the anterograde tracer Phaseolus vulgaris-leucoagglutinin (PHA-L). Both large and small injections of PHA-L in various portions of the substantia nigra pars reticulata labeled varicose fibers in the ipsilateral and contralateral nucleus tegmenti pedunculopontinus, subnucleus dissipatus as well as in the ipsilateral nucleus tegmenti pedunculopontinus, subnucleus compactus. However, the bulk of the nigral fibers appeared to terminate in the medial two-thirds of the ipsilateral subnucleus dissipatus of the pedunculopontine nucleus and exhibited a discrete dorsoventral topographical pattern. The terminal plexus displayed patches of uneven density, which was partly due to the numerous fiber bundles passing through the pedunculopontine nucleus, but also to an obvious preference of nigral fibers for some cells. Electron microscopic examination confirmed that nearly all of the varicosities observed in the light microscope contained synaptic vesicles and represented either terminal boutons or boutons en passant. The labeled boutons were elongated (average length: 1.5 microns) and consistently contained a prominent group of mitochondria. The results suggest that the nigral input to the nucleus tegmenti pedunculopontinus may be directed toward specific subpopulation(s) of pedunculopontine neurons and may influence not only cells in the subnucleus dissipatus, but also in the subnucleus compactus.
运用顺行示踪剂菜豆凝集素(PHA-L),在大鼠中研究了黑质网状部传出纤维在脚桥被盖核的终末分布。在黑质网状部不同部位进行大小不同的PHA-L注射后,同侧和对侧脚桥被盖核、散在亚核以及同侧脚桥被盖核致密亚核中均出现了标记的曲张纤维。然而,大部分黑质纤维似乎终止于脚桥核同侧散在亚核的内侧三分之二,并呈现出离散的背腹向拓扑模式。终末丛显示出密度不均匀的斑块,这部分是由于众多纤维束穿过脚桥核,也由于黑质纤维明显偏好某些细胞。电子显微镜检查证实,在光学显微镜下观察到的几乎所有曲张体都含有突触小泡,代表终末 boutons 或过路 boutons。标记的 boutons 呈细长形(平均长度:1.5微米),并始终含有一组突出的线粒体。结果表明,黑质向脚桥被盖核的输入可能针对脚桥核神经元的特定亚群,不仅可能影响散在亚核中的细胞,还可能影响致密亚核中的细胞。