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小脑蚓部的攀爬纤维微区及其向前庭外侧核不同细胞群的投射。

Climbing fiber microzones in cerebellar vermis and their projection to different groups of cells in the lateral vestibular nucleus.

作者信息

Andersson G, Oscarsson O

出版信息

Exp Brain Res. 1978 Aug 15;32(4):565-79. doi: 10.1007/BF00239553.

Abstract
  1. The projections from one of the paths (b-VF-SOCP) in the ventral spino-olivocerebellar system to the cortical b-zone located in the lateral part of the anterior lobe vermis and to the lateral vestibular nucleus (LVN) have been studied in cats with the spinal cord transected at C3 sparing only the contralateral ventral funiculus. The projection to the b-zone was studied by recording climbing fiber responses in single Purkinje cells on stimulation of limb nerves. The projections to the LVN, direct through climbing fiber collaterals and indirect through Purkinje cells, were studied by recordings EPSPs and IPSPs in LVN neurons. 2. The Purkinje cells in the b-zone were arbitrarily divided into five groups with different inputs and occupying different microzones each with a width of about 200 micron. On passing medially across the b-zone the microzones had the following input characteristics: 1. activation exclusively from hindlimb nerves, 2. short-latency activation from hindlimb and long-latency activation from forelimb nerves, 3. short-latency activation from hindlimb and forelimb nerves, 4. short-latency activation from forelimb and long-latency activation from hindlimb nerves, and 5. activation exclusively from forelimb nerves. 3. The five microzones projected to different groups of LVN neurons which occurred intermingled throughout the nucleus. The LVN neurons inhibited from a certain microzone were activated by the collaterals of the climbing fibers projecting to that microzone. 4. The organization of the spino-olivo-cerebello-vestibulo-spinal path is discussed. It is suggested that the microzone and collection of subcortical neurons represent the basic computational unit of the cerebellum.
摘要
  1. 在脊髓于C3水平横断、仅保留对侧腹侧索的猫中,研究了腹侧脊髓 - 橄榄 - 小脑系统中一条通路(b - 腹侧脊髓小脑束 - 橄榄小脑复合体通路,b - VF - SOCP)向前叶蚓部外侧的皮质b区以及外侧前庭核(LVN)的投射。通过在刺激肢体神经时记录单个浦肯野细胞的攀缘纤维反应,研究了向b区的投射。通过记录LVN神经元中的兴奋性突触后电位(EPSP)和抑制性突触后电位(IPSP),研究了通过攀缘纤维侧支直接和通过浦肯野细胞间接向LVN的投射。2. b区的浦肯野细胞被任意分为五组,每组具有不同的输入并占据不同的微区,每个微区宽度约为200微米。从内侧穿过b区时,这些微区具有以下输入特征:1. 仅由后肢神经激活;2. 后肢神经短潜伏期激活和前肢神经长潜伏期激活;3. 后肢和前肢神经短潜伏期激活;4. 前肢神经短潜伏期激活和后肢神经长潜伏期激活;5. 仅由前肢神经激活。3. 这五个微区投射到LVN中不同组的神经元,这些神经元在整个核中相互交织。从某个微区受到抑制的LVN神经元被投射到该微区的攀缘纤维侧支激活。4. 讨论了脊髓 - 橄榄 - 小脑 - 前庭 - 脊髓通路的组织。有人提出微区和皮质下神经元集合代表小脑的基本计算单元。

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