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A cellular and molecular model of response kinetics and adaptation in primate cones and horizontal cells

机译:灵长类动物视锥细胞和水平细胞中反应动力学和适应的细胞和分子模型

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摘要

A model for the sensitivity regulation in the primate outer retina is developed and validated using horizontal cell measurements from the literature. The main conclusion is that the phototransduction of the cones is the key factor regulating sensitivity. The model consists of a nonlinearity cascaded with three feedback control loops. The nonlinearity is caused by the hydrolysis of cGMP by activated phosphodiesterase. The first feedback loop is divisive, with calcium regulating the photocurrent in the cone outer segment. The second feedback loop is also divisive, with voltage-sensitive channels regulating the membrane voltage of the cone inner segment. The final feedback loop is subtractive, where the membrane voltage of the horizontal cell is subtracted from that of the cone before the cone drives the horizontal and bipolar cells. The model describes adequately the major characteristics of the horizontal cell responses to wide field, spectrally white stimuli. In particular, it shows (1) sensitivity and bandwidth control as a function of background intensity; (2) the major nonlinearities observed in the horizontal cells; and (3) the transition from linear responses toward contrast constancy (Weber's law) for background illuminances ranging from 1-1000 td.
机译:使用文献中的水平细胞测量方法,开发并验证了灵长类动物外部视网膜中敏感性调节的模型。主要结论是视锥细胞的光转导是调节灵敏度的关键因素。该模型由非线性与三个反馈控制环级联组成。非线性是由活化的磷酸二酯酶水解cGMP引起的。第一反馈回路是分裂性的,其中钙调节锥体外部部分中的光电流。第二个反馈环路也是分开的,其电压敏感通道可调节锥体内部段的膜电压。最终的反馈环路为减法,其中在圆锥体驱动水平和双极电池之前,从圆锥体的膜电压中减去水平胞室的膜电压。该模型充分描述了水平细胞对广域光谱白色刺激的反应的主要特征。特别是,它显示(1)灵敏度和带宽控制与背景强度的关系; (2)在水平单元中观察到的主要非线性; (3)背景照度在1-1000 td范围内,从线性响应向对比度恒定(韦伯定律)过渡。

著录项

  • 作者

    Hateren Hans van;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 eng
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