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Simulation of rabbit A-type retinal horizontal cell that generates repetitive action potentials.

机译:模拟产生重复动作电位的兔A型视网膜水平细胞。

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摘要

Rabbit A-type retinal horizontal cells are classified into at least two types: cells that generate repetitive action potentials and those that do not. A mathematical model of these two types of cells based on the ionic current mechanisms has been proposed. Although the response of the former cell to 1-s positive current injection has so far been investigated by both electrophysiological and computational approaches, how this cell responds to much longer current injection has not been investigated. In the present study, I use this model to investigate the response of the former cell to a much longer current injection. Computer simulation indicates that when the stimulation period is relatively short, the membrane potential returns to the resting potential after current injection. In this case, the cell can repeatedly generate repetitive action potentials in response to stimulation. In contrast, when the stimulation period is relatively long, the membrane potential does not return to the resting potential but maintains the depolarized level even after current injection. In this case, the cell cannot repeatedly generate repetitive action potentials. When the present results were compared with those of the previous study, the difference in the response pattern after stimulation between the two types of horizontal cells was revealed.
机译:兔A型视网膜水平细胞至少分为两种:产生重复动作电位的细胞和不产生重复动作电位的细胞。已经提出了基于离子电流机制的这两种类型的电池的数学模型。尽管到目前为止,已经通过电生理和计算方法研究了前一细胞对1-s正电流注入的响应,但尚未研究该细胞如何响应更长的电流注入。在本研究中,我使用此模型研究前一个细胞对更长电流注入的反应。计算机模拟表明,当刺激周期相对较短时,电流注入后膜电位恢复到静息电位。在这种情况下,细胞可以响应刺激而反复产生重复动作电位。相反,当刺激周期相对较长时,即使在注入电流之后,膜电位也不会恢复到静止电位,而是保持去极化水平。在这种情况下,细胞不能重复产生重复动作电位。当将当前结果与先前研究的结果进行比较时,发现两种类型的水平细胞在刺激后的反应模式有所不同。

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