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Reproducing retinal rod bipolar cell light response by mathematical model including neurotransmitter receptors

机译:通过包括神经递质受体在内的数学模型再现视网膜杆双极细胞的光反应

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Detailed mathematical model of retinal cells is useful for the quantitative understanding of the subcellular processes of the visual system. Retinal bipolar cells receive information from photoreceptor cells, horizontal cells and amacrine cells, thus it can be considered as information integration system. Despite its importance, bipolar cell model including inputs and outputs has not been proposed. In this paper, we propose a rod bipolar cell model which can reproduce voltage response of light. The model includes TRPM1 channel which receives signal from photoreceptor cells, GABA channel which receives signal from surrounding amacrine cells, and cell body model which is based on the model proposed by Ishihara et al. The model was evaluated with several light signals, where experimentally obtained photoreceptor cell responses were used as TRPM1 channel input. Resulting bipolar cell membrane potential showed good agreement with the reported experimental results.
机译:视网膜细胞的详细数学模型对于定量了解视觉系统的亚细胞过程很有用。视网膜双极细胞从感光细胞,水平细胞和无长突细胞中接收信息,因此可以被认为是信息集成系统。尽管它很重要,但尚未提出包括输入和输出的双极电池模型。在本文中,我们提出了一种棒状双极细胞模型,该模型可以重现光的电压响应。该模型包括从感光细胞接收信号的TRPM1通道,从周围无长突细胞接收信号的GABA通道,以及基于Ishihara等人提出的模型的细胞体模型。用几个光信号评估模型,其中将实验获得的感光细胞反应用作TRPM1通道输入。产生的双极细胞膜电位与报道的实验结果显示出良好的一致性。

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