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首页> 外文期刊>The Journal of Comparative Neurology >Morphological and electrophysiological properties of lateral entorhinal cortex layers II and III principal neurons.
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Morphological and electrophysiological properties of lateral entorhinal cortex layers II and III principal neurons.

机译:外侧内嗅皮质第二和第三层主要神经元的形态和电生理特性。

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The intrinsic electrophysiology and morphology of neurons from layers II and III of the lateral entorhinal cortex (EC) was investigated in a rat brain slice preparation by intracellular recording and biocytin labeling. Morphologically, we distinguished three groups of layer II principal neurons. The most numerous group included cells with multiple radiating dendrites that spread over layers II and I in a fan-like fashion. While morphologically "fan" neurons were similar to the "stellate" cells of the medial EC, electrophysiologically the fan cells lacked the persistent rhythmic subthreshold oscillations and the very pronounced time-dependent inward rectification typical of the stellate cells. The second group consisted of pyramidal cells that manifested regular spike firing and had a more negative resting potential and a longer spike duration than the fan cells. In the third group we included all those neurons that had diverse multipolar appearances distinct from the fan cells. Neurons in this group had electrophysiological profiles intermediate between those of the fan and pyramidal cells. All neurons recorded in layer III were pyramidal in shape with a basal dendritic tree that could extend into layer V and an axon that could also give off collaterals into layer V. Electrophysiologically, layer III pyramidal cells were very similar to those of layer II. On the basis of these and other data we suggest that in different EC regions layer II neurons may be conducting more input-dependent specialized processing, while cells from layer III may perform a more global or generalized function. J. Comp. Neurol. 491:123-140, 2005. (c) 2005 Wiley-Liss, Inc.
机译:在大鼠脑切片制备中,通过细胞内记录和生物素标记研究了外侧内嗅皮质(EC)II和III层神经元的内在电生理学和形态。在形态上,我们区分了三组第二层主要神经元。数量最多的组包括具有多个辐射树突的细胞,这些树突呈扇形分布在II和I层上。虽然形态上的“扇形”神经元与内侧EC的“星状”细胞相似,但在电生理学上,扇形细胞缺乏持续的节律性亚阈振荡和星状细胞典型的非常明显的时间依赖性向内整流。第二组由锥体细胞组成,这些锥体细胞表现出规则的尖峰发射,并且比扇形细胞具有更大的负静息电位和更长的尖峰持续时间。在第三组中,我们包括所有具有不同于风扇细胞的多极外观的神经元。这组神经元的电生理特征介于扇形和锥体细胞之间。在III层中记录的所有神经元的形状均为锥体状,具有可以延伸至V层的基底树突状树和也可以向V层释放侧支的轴突。在电生理上,III层的锥体细胞与II层非常相似。根据这些数据和其他数据,我们建议在不同的EC区域中,第II层神经元可能会进行更多的输入依赖的专门处理,而来自第III层的细胞可能会执行更全局的或广义的功能。 J.比较神经元。 491:123-140,2005.(c)2005 Wiley-Liss,Inc.

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