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对从小鼠初级体感皮层(SmI)投射到尾状核-壳核的锥体细胞第四层中丘脑皮质及其他突触的定量研究。

A quantitative study of the thalamocortical and other synapses in layer IV of pyramidal cells projecting from mouse SmI cortex to the caudate-putamen nucleus.

作者信息

Hersch S M, White E L

出版信息

J Comp Neurol. 1982 Nov 1;211(3):217-25. doi: 10.1002/cne.902110302.

Abstract

The thalamocortical and other synapses of the apical dendrites of corticostriatal projection neurons in mouse primary somatosensory cortex (SmI) were examined by combining anterograde degeneration with the retrograde transport of horseradish peroxidase (HRP). Electrolytic lesions were made in the ventrobasal thalamus, followed 3 days later by injections of 40% HRP into the ipsilateral caudate-putamen nucleus. The next day, the mice were perfused and the SmI cortex ipsilateral to the lesion and injection sites was chopped at 125-micrometer and reacted for HRP using a CoCl2-DAB method. HRP-labeled corticostriatal cells in SmI cortex were medium-sized pyramidal cells, having somata located in the superficial portion of layer V and apical dendrites extending into layer I. Seven corticostriatal cells were serially thin sectioned and the layer IV portions of their apical dendrites were reconstructed. Each apical dendrite formed only one or two thalamocortical synapses (0.3 to 0.9% of their synapses in layer IV) indicating that corticostriatal neurons may be minimally responsive to direct synaptic input from the specific thalamic nuclei. Each apical dendrite formed about 12.6 asymmetrical synapses for every symmetrical synapse, suggesting that the relative numbers of excitatory and inhibitory synapses impinging on apical dendrites belonging to an individual class of neurons may be specified.

摘要

通过将顺行性变性与辣根过氧化物酶(HRP)的逆行运输相结合,对小鼠初级体感皮层(SmI)中皮质纹状体投射神经元顶树突的丘脑皮质及其他突触进行了研究。在腹侧基底丘脑进行电解损伤,3天后向同侧尾状壳核注射40%的HRP。第二天,对小鼠进行灌注,将损伤和注射部位同侧的SmI皮层切成125微米厚的切片,并用氯化钴-二氨基联苯胺(CoCl2-DAB)法对HRP进行反应。SmI皮层中HRP标记的皮质纹状体细胞为中等大小的锥体细胞,其胞体位于V层的浅层,顶树突延伸至I层。对7个皮质纹状体细胞进行连续超薄切片,并重建其顶树突的IV层部分。每个顶树突仅形成一两个丘脑皮质突触(占其在IV层突触的0.3%至0.9%),这表明皮质纹状体神经元可能对来自特定丘脑核的直接突触输入反应极小。每个顶树突每一个对称突触大约形成12.6个不对称突触,这表明作用于属于单个神经元类别的顶树突的兴奋性和抑制性突触的相对数量可能是特定的。

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