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大鼠腹侧基底丘脑生理鉴定的丘脑皮质中继神经元的形态学

Morphology of physiologically identified thalamocortical relay neurons in the rat ventrobasal thalamus.

作者信息

Harris R M

出版信息

J Comp Neurol. 1986 Sep 22;251(4):491-505. doi: 10.1002/cne.902510405.

Abstract

The anatomical structure of physiologically identified neurons of the rat ventrobasal thalamus was studied in order to determine if there are morphologically distinct subsets of neurons that correlate with the somatosensory submodalities processed by these cells. Intracellular recordings were used to determine the modality and receptive field of a neuron, after which horseradish peroxidase was iontophoretically injected into the cell, allowing it to be histologically visualized. Computer-assisted measurements of the labeled cells were made to quantitatively analyze the dendritic structure. Cells were divided into physiological groups stimulated by whiskers, glabrous skin, furry skin, noxious stimulation, or joint rotation. Qualitatively, all cells appeared similar, with the same types of branching patterns. Dendritic spines and long, sinuous appendages were found on all distal dendrites. Quantitatively, no statistically significant differences in dendritic structure were found between functionally defined groups with the aid of a number of parameters, including a fitted dendritic ellipse. There was a weak correlation between somal cross-sectional area and receptive field size, suggesting larger cells processed larger receptive fields. In summary, the ventrobasal thalamus of the rat, in contrast to that of higher mammals, appears to contain only one major cell type and to have a very simple neuronal circuitry.

摘要

为了确定大鼠腹侧基底丘脑经生理学鉴定的神经元是否存在形态上不同的神经元亚群,这些亚群与这些细胞所处理的躯体感觉亚模态相关,我们对其解剖结构进行了研究。首先通过细胞内记录来确定神经元的模态和感受野,之后将辣根过氧化物酶离子导入该细胞,使其能够在组织学上被可视化。然后对标记细胞进行计算机辅助测量,以定量分析树突结构。细胞被分为受触须、无毛皮肤、有毛皮肤、有害刺激或关节旋转刺激的生理组。定性地说,所有细胞看起来都相似,具有相同类型的分支模式。在所有远端树突上都发现了树突棘和长而蜿蜒的附属物。定量分析方面,借助包括拟合树突椭圆在内的多个参数,在功能定义的组之间未发现树突结构有统计学上的显著差异。体细胞横截面积与感受野大小之间存在微弱的相关性,这表明较大的细胞处理较大的感受野。总之,与高等哺乳动物相比,大鼠的腹侧基底丘脑似乎只包含一种主要细胞类型,并且具有非常简单的神经元回路。

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