Mihailoff G A, Kosinski R J, Border B G, Lee H S
Department of Cell Biology and Anatomy, University of Texas Health Science Center, Dallas 75235.
J Electron Microsc Tech. 1988 Nov;10(3):229-46. doi: 10.1002/jemt.1060100303.
Ultrastructural studies are described that have identified in the basilar pontine nuclei (BPN), the synaptic boutons formed by the corticopontine, cerebellopontine, tectopontine, and dorsal column nuclei-pontine afferent projection systems. In addition, immunocytochemical studies visualized neuronal somata, dendrites, and synaptic boutons that contain immunoreactivity for GABA or the synthesizing enzyme glutamic acid decarboxylase (GAD). Based upon differences in the mode of degeneration and postsynaptic locus of degenerative synaptic boutons in the BPN, it is suggested that two types of cortical neurons and three classes of deep cerebellar nuclear cells project to the BPN. For similar reasons, it appears that two types of neurons in the dorsal column nuclei project to the BPN while only one type of afferent synaptic bouton takes origin from the superior colliculus. Furthermore it appears that the population of BPN neurons projecting to the paramedian lobule receives convergent inputs from the cutaneous periphery and the corresponding region of sensorimotor cortex. Studies employing GAD immunohistochemistry indicate that GABA-ergic neurons and axon terminals are present in the BPN and thus support the suggestion that a local inhibitory interneuron is present within the BPN. Taken together these observations suggest that basilar pontine neurons might play a more active role in the integration of various types of information destined for the cerebellar cortex than has previously been recognized.
本文描述了超微结构研究,这些研究在脑桥基底核(BPN)中鉴定出了由皮质脑桥、小脑脑桥、顶盖脑桥和薄束核 - 脑桥传入投射系统形成的突触小体。此外,免疫细胞化学研究显示了神经元胞体、树突和突触小体,这些结构对γ-氨基丁酸(GABA)或合成酶谷氨酸脱羧酶(GAD)具有免疫反应性。基于BPN中变性突触小体的变性方式和突触后位点的差异,有人提出两种类型的皮质神经元和三类小脑深部核细胞投射到BPN。出于类似原因,似乎薄束核中的两种类型神经元投射到BPN,而只有一种类型的传入突触小体起源于上丘。此外,似乎投射到旁中央小叶的BPN神经元群体接受来自皮肤外周和感觉运动皮质相应区域的汇聚输入。采用GAD免疫组织化学的研究表明,BPN中存在GABA能神经元和轴突终末,因此支持了BPN中存在局部抑制性中间神经元的观点。综合这些观察结果表明,脑桥基底神经元在整合各种发往小脑皮质的信息方面可能比以前认为的发挥更积极的作用。