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海马切片CA2-CA3区癫痫样活动传播的细胞机制模型。

Models of the cellular mechanism underlying propagation of epileptiform activity in the CA2-CA3 region of the hippocampal slice.

作者信息

Traub R D, Knowles W D, Miles R, Wong R K

出版信息

Neuroscience. 1987 May;21(2):457-70. doi: 10.1016/0306-4522(87)90135-7.

Abstract

We have shown experimentally in the previous paper that spontaneous epileptiform activity, as recorded by extracellular field potentials, propagates smoothly across the CA2-CA3 region of the convulsant-treated hippocampal slice of the guinea pig at velocities of about 0.1 m/s. In the present paper, we used computer simulations of either 500 or 1000 cell arrays of model neurons to examine possible mechanisms underlying this propagation. We show that propagation of epileptiform field potentials can be explained plausibly by slow conduction along axons interconnecting CA2-CA3 neurons, provided that there are sufficiently many interconnections. This propagation can take place even if the interconnections occur randomly. The number of interconnections required decreases as the number of synchronously activated cells initiating a population burst increases. Axonal propagation at 0.1 m/s appears to be a plausible assumption, since conduction velocities along Schaffer collaterals have been experimentally estimated to be as slow as 0.2 m/s, and small recurrent collaterals are likely to conduct more slowly than the main axonal branches. If spontaneous synchronized population bursts are initiated by activity in four or fewer cells, then our model requires, for smooth field potential propagation, more interconnections than are believed to occur on the basis of dual intracellular recording.

摘要

我们在前一篇论文中通过实验表明,如细胞外场电位所记录的那样,自发性癫痫样活动以约0.1 m/s的速度在豚鼠惊厥处理海马切片的CA2 - CA3区域平稳传播。在本文中,我们使用了由500个或1000个模型神经元组成的细胞阵列进行计算机模拟,以研究这种传播背后的可能机制。我们表明,癫痫样场电位的传播可以通过沿着连接CA2 - CA3神经元的轴突的缓慢传导得到合理的解释,前提是存在足够多的连接。即使连接是随机发生的,这种传播也可能发生。随着引发群体爆发的同步激活细胞数量的增加,所需的连接数量会减少。以0.1 m/s的速度进行轴突传播似乎是一个合理的假设,因为沿谢弗侧支的传导速度经实验估计低至0.2 m/s,并且小的回返侧支可能比主要轴突分支传导得更慢。如果自发性同步群体爆发由四个或更少细胞的活动引发,那么对于场电位的平稳传播,我们的模型需要比基于双细胞内记录所认为存在的更多连接。

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