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丘脑网状核神经元和内在中间神经元对投射至运动皮层的丘脑神经元抑制作用的相对贡献。

Relative contributions of thalamic reticular nucleus neurons and intrinsic interneurons to inhibition of thalamic neurons projecting to the motor cortex.

作者信息

Ando N, Izawa Y, Shinoda Y

机构信息

Department of Physiology, School of Medicine, Tokyo Medical and Dental University, Japan.

出版信息

J Neurophysiol. 1995 Jun;73(6):2470-85. doi: 10.1152/jn.1995.73.6.2470.

Abstract
  1. Intracellular responses to stimulation of the cerebral cortex (Cx) and cerebellum were analyzed in thalamocortical neurons (TCNs) in the ventroanterior-ventrolateral (VA-VL) complex of the thalamus and neurons in the thalamic reticular nuclei (RNs) of anesthetized cats, and the contribution of reticular nucleus neurons (RNNs) and thalamic interneurons (TINs) to cerebral and cerebellar inhibition of TCNs was determined. 2. Single TCNs projecting to area 4 or 6 received convergent monosynaptic excitatory and disynaptic inhibitory inputs from both the dentate nucleus (DN) and the interpositus nucleus (IN). These TCNs also received monosynaptic excitatory postsynaptic potentials (EPSPs) and disynaptic inhibitory postsynaptic potentials (IPSPs) from the pericruciate cortex (areas 4 and 6). Each TCN received the strongest excitatory and inhibitory inputs from the cortical area to which that TCN projected, and weaker inhibitory inputs from adjacent cortical areas. 3. RNNs were identified morphologically by intracellular injection of horseradish peroxidase (HRP). Stimulation of the brachium conjunctivum (BC) evoked disynaptic EPSPs with a long decay phase in RNNs in the anterior ventrolateral part of the RN. Single RNNs received convergent disynaptic excitatory inputs from both the DNA and the IN. Stimulation of the Cx produced monosynaptic long-lasting EPSPs with two different latencies in these RNNs: early EPSPs with latencies of 0.9-2.1 ms and late EPSPs with latencies of 1.8-3.5 ms. Collision experiments with BC- and Cx-evoked EPSPs in RNNs indicated that BC-evoked disynaptic EPSPs and Cx-evoked early EPSPs were produced by axon collaterals of TCNs to RNNs. The latencies of the Cx-evoked late EPSPs in RNNs were almost identical to those of Cx-evoked monosynaptic EPSPs in TCNs, indicating that corticothalamic neurons (CTNs) exert monosynaptic excitatory effects on RNNs and TCNs. 4. Stimulation of the Cx produced IPSPs in TCNs with short latencies of 1.8-2.7 ms and longer latencies of > or = 2.8 ms. The Cx-evoked early IPSPs with latencies of 1.8-2.7 ms were mediated by RNNs. The origin of Cx-evoked late IPSPs with latencies of > or = 2.8 ms in TCNs was twofold, Cx-induced early IPSPs in TCNs were facilitated by conditioning cortical stimulation that induced late IPSPs in the TCNs. The same conditioning cortical stimulation also facilitated BC-evoked disynaptic IPSPs. The time course of this facilitatation indicated that CTNs produce long-lasting excitation in TINs. These results indicated that Cx-evoked IPSPs with latencies of > 2.7 ms were mediated at least in part by RNNs and inhibitory TINs in the VA-VL complex.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 对麻醉猫丘脑腹前 - 腹外侧(VA - VL)复合体中的丘脑皮质神经元(TCNs)以及丘脑网状核(RNs)中的神经元,分析其对大脑皮质(Cx)和小脑刺激的细胞内反应,并确定网状核神经元(RNNs)和丘脑中间神经元(TINs)对大脑和小脑对TCNs抑制作用的贡献。2. 投射至4区或6区的单个TCNs接受来自齿状核(DN)和间位核(IN)的汇聚单突触兴奋性和双突触抑制性输入。这些TCNs还接受来自中央沟周围皮质(4区和6区)的单突触兴奋性突触后电位(EPSPs)和双突触抑制性突触后电位(IPSPs)。每个TCN从其投射的皮质区域接受最强的兴奋性和抑制性输入,并从相邻皮质区域接受较弱的抑制性输入。3. 通过细胞内注射辣根过氧化物酶(HRP)在形态上鉴定RNNs。刺激结合臂(BC)在RN前腹外侧部分的RNNs中诱发具有长衰减期的双突触EPSPs。单个RNNs接受来自DNA和IN的汇聚双突触兴奋性输入。刺激Cx在这些RNNs中产生具有两种不同潜伏期的单突触长时程EPSPs:潜伏期为0.9 - 2.1毫秒的早期EPSPs和潜伏期为1.8 - 3.5毫秒的晚期EPSPs。在RNNs中对BC和Cx诱发的EPSPs进行碰撞实验表明,BC诱发的双突触EPSPs和Cx诱发的早期EPSPs是由TCNs至RNNs的轴突侧支产生的。RNNs中Cx诱发的晚期EPSPs的潜伏期与TCNs中Cx诱发的单突触EPSPs的潜伏期几乎相同,表明皮质丘脑神经元(CTNs)对RNNs和TCNs发挥单突触兴奋性作用。4. 刺激Cx在TCNs中产生潜伏期为1.8 - 2.7毫秒的短潜伏期IPSPs和潜伏期≥2.8毫秒的较长潜伏期IPSPs。潜伏期为1.8 - 2.7毫秒的Cx诱发的早期IPSPs由RNNs介导。TCNs中潜伏期≥2.8毫秒的Cx诱发的晚期IPSPs的起源是双重的,Cx诱导的TCNs中的早期IPSPs通过条件性皮质刺激得到促进,该刺激在TCNs中诱导晚期IPSPs。相同的条件性皮质刺激也促进了BC诱发的双突触IPSPs。这种促进作用的时间进程表明CTNs在TINs中产生长时程兴奋。这些结果表明,潜伏期> 2.7毫秒的Cx诱发的IPSPs至少部分由VA - VL复合体中的RNNs和抑制性TINs介导。(摘要截短至400字)

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