Chiba M
J Hirnforsch. 1980;21(1):89-99.
Following lesions of various parts of the cat cerebral cortex, the distribution of degenerating fibers in the pontine nuclei was mapped in drawings of serial transverse and horizontal sections of Fink and Heimer. All parts of the cerebrum give rise to the corticopontine fibers and each functionally uniform area has its particular projection zones in the pons. Thus, it has been shown that the pontine projection zones from the sensorimotor, auditory, orbital, cingulate and "association" cortices are arranged in longitudinal columns throughout the pons, mostly in well delimited columns, while those from the visual cortex reveal columns oriented transversely in the rostral part of the pons. When the distribution of the pontine afferents from various parts of the cortex are compared in detail, it is evident that there are differences in locations of the columns, clustered in continuous zones of terminations, among different pontine projections, although there are partial overlaps among these projection zones. The present as well as the previous findings of the corticopontine projection are correlated with observations of the pontocerebellar projection obtained by other investigators with the horseradish peroxidase and the autoradiographic methods, and a possible propagation of different modalities of sensations from the cerebral cortex, via the pons, to the cerebellum is discussed with reference to some physiological data. The present study largely confirms and extends the previous data of the corticopontine projection and reveals that the cortico-ponto-cerebellar pathways are more cmplexly organized than was previously assumed.
在猫大脑皮层各部位受损后,通过芬克和海默连续横切和水平切片图,描绘了脑桥核中变性纤维的分布情况。大脑的所有部位都发出皮质脑桥纤维,每个功能统一的区域在脑桥都有其特定的投射区。因此,已经表明,来自感觉运动、听觉、眶、扣带回和“联合”皮层的脑桥投射区在整个脑桥中呈纵向排列,大多排列在界限分明的柱中,而来自视觉皮层的投射区在脑桥前部呈横向排列。当详细比较来自皮层各部位的脑桥传入纤维的分布时,很明显,不同脑桥投射之间,虽然这些投射区有部分重叠,但在柱的位置上存在差异,这些柱聚集在连续的终末区域。目前以及先前关于皮质脑桥投射的研究结果,与其他研究者通过辣根过氧化物酶和放射自显影方法获得的脑桥小脑投射的观察结果相关,并参照一些生理学数据讨论了从大脑皮层经脑桥向小脑传递不同感觉模式的可能性。本研究在很大程度上证实并扩展了先前关于皮质脑桥投射的数据,揭示了皮质 - 脑桥 - 小脑通路的组织比先前设想的更为复杂。