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大鼠丘脑腹前-腹外侧复合体中的小脑反应性神经元:光镜和电镜观察

Cerebellar-responsive neurons in the thalamic ventroanterior-ventrolateral complex of rats: light and electron microscopy.

作者信息

Sawyer S F, Tepper J M, Groves P M

机构信息

Department of Physiology and Pharmacology, Bowman Gray School of Medicine, Wake Forest University, Winston-Salem, NC 27157.

出版信息

Neuroscience. 1994 Dec;63(3):725-45. doi: 10.1016/0306-4522(94)90518-5.

Abstract

The morphology and synaptic organization of neurons in the ventroanterior-ventrolateral nucleus of rats was examined using in vivo intracellular staining techniques. Neurons were characterized electrophysiologically based on intrinsic membrane properties and synaptic responses to stimulation of motor cortex and cerebellar nuclei, as described in the companion paper. Cerebellar-responsive neurons were stained intracellularly with either horseradish peroxidase or biocytin. All stained ventroanterior-ventrolateral nucleus neurons were identified as thalamocortical neurons on anatomical (and often electrophysiological) grounds, consistent with previous findings that rat ventroanterior-ventrolateral nucleus is interneuron-sparse. Ventroanterior-ventrolateral nucleus neurons had three to eight thick primary dendrites. Proximal dendrites often exhibited a tufted branching pattern, from which many thinner, higher order dendrites arose. Dendrites branched to form a funnel-like infiltration of the neuropil that resulted in a spherical, roughly homogeneous dendritic field. The axon originated from the cell body or a proximal dendrite and coursed laterally and dorsally to innervate motor cortex. One to five axon collaterals were emitted in the rostral dorsolateral sector of the thalamic reticular nucleus; collaterals were not observed in the ventroanterior-ventrolateral nucleus or other nuclei in dorsal thalamus. The synaptic organization of the ventroanterior-ventrolateral nucleus was examined with electron microscopy, including two intracellularly labeled ventroanterior-ventrolateral nucleus neurons that were shown electrophysiologically to receive monosynaptic inputs from the cerebellum. The neuropil of rat ventroanterior-ventrolateral nucleus lacked the complexity and diversity found in corresponding thalamic nuclei of felines and primates, due to the paucity of interneurons. Vesicle-containing dendrites, dendrodendritic synapses and glomeruli were not observed. Three broad classes of presynaptic terminals were identified. (1) Small round boutons: small boutons containing densely-packed, small round vesicles that formed asymmetric synapses predominantly with the distal dendrites of thalamocortical neurons. These were the most prevalent type of bouton in the ventroanterior-ventrolateral nucleus (78% of presynaptic elements) and likely arose from the cerebral cortex. (2) Large round boutons: large terminals with loosely packed small round vesicles that made multiple asymmetric synapses with proximal and intermediate dendrites. Large round boutons comprised 8% of the neuropil, and likely arose from the cerebellar nuclei. (3) Medium size boutons with pleomorphic vesicles: medium-sized profiles containing pleomorphic vesicles that formed symmetric synapses with proximal, intermediate and distal dendrites and, less frequently, with cell bodies.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

采用活体胞内染色技术对大鼠腹前 - 腹外侧核神经元的形态和突触组织进行了研究。如配套论文所述,根据神经元的内在膜特性以及对运动皮层和小脑核刺激的突触反应,对神经元进行了电生理特征分析。对小脑有反应的神经元用辣根过氧化物酶或生物胞素进行胞内染色。根据解剖学(通常还有电生理学)依据,所有染色的腹前 - 腹外侧核神经元均被鉴定为丘脑皮质神经元,这与之前关于大鼠腹前 - 腹外侧核中间神经元稀少的研究结果一致。腹前 - 腹外侧核神经元有三到八条粗大的初级树突。近端树突通常呈现簇状分支模式,从中产生许多更细的高阶树突。树突分支形成一种漏斗状的神经毡浸润,形成一个大致均匀的球形树突场。轴突起源于细胞体或近端树突,向外侧和背侧走行以支配运动皮层。在丘脑网状核的嘴侧背外侧区发出一到五条轴突侧支;在腹前 - 腹外侧核或背侧丘脑的其他核中未观察到侧支。用电子显微镜检查了腹前 - 腹外侧核的突触组织,包括两个经电生理显示接受来自小脑单突触输入的胞内标记的腹前 - 腹外侧核神经元。由于中间神经元稀少,大鼠腹前 - 腹外侧核的神经毡缺乏在猫和灵长类动物相应丘脑核中发现的复杂性和多样性。未观察到含囊泡的树突、树突 - 树突突触和小球。鉴定出三类主要的突触前终末。(1)小圆形终扣:含有密集排列的小圆形囊泡的小终扣,主要与丘脑皮质神经元的远端树突形成不对称突触。这些是腹前 - 腹外侧核中最常见的终扣类型(占突触前成分的78%),可能起源于大脑皮层。(2)大圆形终扣:具有松散排列的小圆形囊泡的大终末,与近端和中间树突形成多个不对称突触。大圆形终扣占神经毡的8%,可能起源于小脑核。(3)具有多形性囊泡的中等大小终扣:含有多形性囊泡的中等大小结构,与近端、中间和远端树突形成对称突触,较少与细胞体形成突触。(摘要截于400字)

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