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猫大脑皮层对小脑齿状核神经元的兴奋性输入。

Excitatory inputs to cerebellar dentate nucleus neurons from the cerebral cortex in the cat.

作者信息

Shinoda Y, Sugiuchi Y, Futami T

出版信息

Exp Brain Res. 1987;67(2):299-315. doi: 10.1007/BF00248551.

Abstract
  1. In anesthetized cats, we investigated excitatory and inhibitory inputs from the cerebral cortex to dentate nucleus neurons (DNNs) and determined the pathways responsible for mediating these inputs to DNNs. 2. Intracellular recordings were made from 201 DNNs whose locations were histologically determined. These neurons were identified as efferent DNNs by their antidromic responses to stimulation of the contralateral red nucleus (RN). Stimulation of the contralateral pericruciate cortex produced excitatory postsynaptic potentials (EPSPs) followed by long-lasting inhibitory postsynaptic potentials (IPSPs) in DNNs. The most effective stimulating sites for inducing these responses were observed in the medial portion (area 6) and its adjacent middle portion (area 4) of the precruciate gyrus. Convergence of cerebral inputs from area 4 and area 6 to single DNNs was rare. 3. To determine the precerebellar nuclei responsible for mediation of the cerebral inputs to the dentate nucleus (DN), we examined the effects of stimulation of the pontine nucleus (PN), the nucleus reticularis tegmenti pontis (NRTP) and the inferior olive (IO). Systematic mapping was made in the NRTP and the PN to find effective low-threshold stimulating sites for evoking monosynaptic EPSPs in DNNs. Stimulation of either the PN or the NRTP produced monosynaptic EPSPs and polysynaptic IPSPs in DNNs. Using a conditioning-testing paradigm (a conditioning stimulus to the cerebral peduncle (CP) and a test stimulus to the PN or the NRTP) and intracellular recordings from DNNs, we tested cerebral effects on neurons in the PN and the NRTP making a monosynaptic connection with DNNs. Conditioning stimulation of the CP facilitated PN- and NRTP-induced monosynaptic EPSPs in DNNs. This spatial facilitation indicated that the excitatory inputs from the cerebral cortex to DNNs are at least partly relayed via the PN and the NRTP. 4. Stimulation of the contralateral IO produced monosynaptic EPSPs and polysynaptic IPSPs in DNNs. These monosynaptic EPSPs were facilitated by conditioning stimulation of the CP, strongly suggesting that the IO is partly responsible for mediating excitatory inputs from the cerebral cortex to the DN. A comparison was made between the latencies of IO-evoked IPSPs in DNNs and the latencies of IO-evoked complex spikes in Purkinje cells. Such a comparison indicated that the shortest-latency IPSPs evoked from the IO were not mediated via the Purkinje cells and suggested the pathway mediated by inhibitory interneurons in the DN.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在麻醉猫中,我们研究了大脑皮层向齿状核神经元(DNNs)的兴奋性和抑制性输入,并确定了介导这些输入至DNNs的通路。2. 对201个DNNs进行了细胞内记录,其位置通过组织学方法确定。通过对侧红核(RN)刺激的逆向反应,这些神经元被鉴定为传出DNNs。刺激对侧中央前回皮层在DNNs中产生兴奋性突触后电位(EPSPs),随后是持久的抑制性突触后电位(IPSPs)。诱导这些反应的最有效刺激部位出现在中央前回的内侧部分(6区)及其相邻的中间部分(4区)。来自4区和6区的大脑输入汇聚到单个DNNs的情况很少见。3. 为了确定负责介导大脑向齿状核(DN)输入的小脑前核,我们研究了刺激脑桥核(PN)、脑桥被盖网状核(NRTP)和下橄榄核(IO)的作用。在NRTP和PN中进行系统绘图,以找到在DNNs中诱发单突触EPSPs的有效低阈值刺激部位。刺激PN或NRTP在DNNs中产生单突触EPSPs和多突触IPSPs。使用条件-测试范式(对大脑脚(CP)进行条件刺激,对PN或NRTP进行测试刺激)以及来自DNNs的细胞内记录,我们测试了大脑对与DNNs有单突触连接的PN和NRTP中神经元的影响。CP的条件刺激促进了PN和NRTP在DNNs中诱导的单突触EPSPs。这种空间促进表明,从大脑皮层到DNNs的兴奋性输入至少部分通过PN和NRTP中继。4. 刺激对侧IO在DNNs中产生单突触EPSPs和多突触IPSPs。这些单突触EPSPs通过CP的条件刺激得到促进,强烈表明IO部分负责介导从大脑皮层到DN的兴奋性输入。对DNNs中IO诱发的IPSPs潜伏期与浦肯野细胞中IO诱发的复合峰潜伏期进行了比较。这样的比较表明,从IO诱发的最短潜伏期IPSPs不是通过浦肯野细胞介导的,并提示了由DN中抑制性中间神经元介导的通路。(摘要截断于400字)

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