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θ节律产生的双偶极子模型:大鼠背侧海马层状场电位分布的模拟

The double dipole model of theta rhythm generation: simulation of laminar field potential profiles in dorsal hippocampus of the rat.

作者信息

Holsheimer J, Boer J, Lopes da Silva F H, van Rotterdam A

出版信息

Brain Res. 1982 Mar 4;235(1):31-50. doi: 10.1016/0006-8993(82)90194-9.

Abstract

A set of compartmental models of CA1 pyramidal, granular and polymorph cells of the dorsal hippocampus have been used to simulate membrane potentials generated by synaptic activation at various levels along these cells. From the membrane potential distributions the field potentials in dorsal CA1 and the dorsal blade of the dentate area have been simulated using a model based on volume conduction theory. Field potential profiles similar to laminar profiles, found experimentally in the dorsal hippocampus during theta rhythm, could only be simulated by assuming (almost) simultaneous synaptic excitation of the 3 cell types at given sites. The results lead to 2 alternative models for the simultaneous excitation of CA1 pyramidal cells and dentate granular cells during theta rhythm. Other electrophysiological evidence favours the model in which the two neuronal populations are activated distally near the fissure.

摘要

一组用于模拟背侧海马体CA1锥体细胞、颗粒细胞和多形细胞的房室模型,已被用来模拟这些细胞不同水平上突触激活所产生的膜电位。根据膜电位分布,利用基于容积传导理论的模型模拟了背侧CA1区和齿状回背侧叶片的场电位。类似于在θ节律期间在背侧海马体中通过实验发现的层状分布的场电位分布,只有在假设给定部位的三种细胞类型(几乎)同时发生突触兴奋的情况下才能被模拟出来。这些结果引出了两种关于在θ节律期间CA1锥体细胞和齿状颗粒细胞同时兴奋的替代模型。其他电生理证据支持这样一种模型,即两个神经元群体在靠近海马裂的远端被激活。

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