Norita M, Katoh Y
Department of Anatomy, School of Medicine, Fujita-Gakuen Health University, Toyoake, Japan.
J Comp Neurol. 1987 Sep 1;263(1):54-67. doi: 10.1002/cne.902630105.
In order to get more detailed information on the neural circuit of the lateralis medialis-suprageniculate nuclear (LM-Sg) complex of the cat, the GABAergic innervation of this complex was studied by GABA immunohistochemical techniques. Small immunoreactive cells were found throughout the LM-Sg complex. On the basis of their ultrastructural features, these GABAergic cells were identified as Golgi type II interneurons. The neuropil of this nucleus displayed a conspicuous granular immunoreactivity. Ultrastructurally, the immunoreactive neural profiles in the neuropil were identified as the presynaptic dendrites of interneurons, myelinated axons, or axon terminals. The GABAergic dendritic profiles, containing pleomorphic synaptic vesicles, were involved in synaptic glomeruli. Additionally, GABAergic axon terminals containing pleomorphic synaptic vesicles formed symmetric axodendritic synaptic contacts mainly in the extraglomerular neuropil. They appeared to correspond to either axon terminals from the thalamic reticular nucleus (TRN) or the axon terminals of interneurons. The projections from the TRN to the LM-Sg complex were studied by using wheat germ agglutinin-conjugated horseradish peroxidase (WGA-HRP). Following injection of WGA-HRP into the LM-Sg complex, a number of retrogradely labeled cells were observed in the TRN. The connections between the TRN and the LM-Sg complex appeared to be topographically organized, the dorsal TRN being connected mainly with the dorsomedial portion of the LM-Sg complex, and the ventral TRN being connected chiefly with the ventrolateral portion of the LM-Sg complex. Following injection of the tracer into the TRN, ultrastructural examination of anterograde labeling in the LM-Sg complex revealed that labeled terminals contain pleomorphic vesicles and make symmetric synaptic contacts mainly with small to medium-sized dendrites. The labeled terminals were not involved in synaptic glomeruli. The present results provide anatomic support for the contention that the projection cells of the LM-Sg complex may be inhibited by both the TRN axons and interneurons, probably through the mediation of GABA.
为了获取关于猫内侧外侧-上膝核(LM-Sg)复合体神经回路的更详细信息,运用GABA免疫组织化学技术研究了该复合体的GABA能神经支配。在整个LM-Sg复合体内发现了小的免疫反应性细胞。根据其超微结构特征,这些GABA能细胞被鉴定为高尔基II型中间神经元。该核的神经毡呈现出明显的颗粒状免疫反应性。在超微结构上,神经毡中的免疫反应性神经轮廓被鉴定为中间神经元的突触前树突、有髓轴突或轴突终末。含有多形性突触小泡的GABA能树突轮廓参与了突触小球。此外,含有多形性突触小泡的GABA能轴突终末主要在小球外神经毡形成对称的轴-树突触联系。它们似乎对应于来自丘脑网状核(TRN)的轴突终末或中间神经元的轴突终末。通过使用小麦胚凝集素结合辣根过氧化物酶(WGA-HRP)研究了从TRN到LM-Sg复合体的投射。将WGA-HRP注入LM-Sg复合体后,在TRN中观察到许多逆行标记的细胞。TRN与LM-Sg复合体之间的连接似乎是按拓扑结构组织的,TRN的背侧主要与LM-Sg复合体的背内侧部分相连,而TRN的腹侧主要与LM-Sg复合体的腹外侧部分相连。将示踪剂注入TRN后,对LM-Sg复合体中顺行标记的超微结构检查显示,标记的终末含有多形性小泡,主要与中小型树突形成对称的突触联系。标记的终末不参与突触小球。目前的结果为以下观点提供了解剖学支持:LM-Sg复合体的投射细胞可能受到TRN轴突和中间神经元的抑制,可能是通过GABA介导的。