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Gap junctions with amacrine cells provide a feedback pathway for ganglion cells within the retina.

机译:与无长突细胞的间隙连接为视网膜内的神经节细胞提供了反馈途径。

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摘要

In primates, one type of retinal ganglion cell, the parasol cell, makes gap junctions with amacrine cells, the inhibitory, local circuit neurons. To study the effects of these gap junctions, we developed a linear, mathematical model of the retinal circuitry providing input to parasol cells. Electrophysiological studies have indicated that gap junctions do not enlarge the receptive field centres of parasol cells, but our results suggest that they make other contributions to their light responses. According to our model, the coupled amacrine cells enhance the responses of parasol cells to luminance contrast by disinhibition. We also show how a mixed chemical and electrical synapse between two sets of amacrine cells presynaptic to the parasol cells might make the responses of parasol cells more transient and, therefore, more sensitive to motion. Finally, we show how coupling via amacrine cells can synchronize the firing of parasol cells. An action potential in a model parasol cell can excite neighbouring parasol cells, but only when the coupled amacrine cells also fire action potentials. Passive conduction was ineffective due to low-pass temporal filtering. Inhibition from the axons of the coupled amacrine cells also produced oscillations that might synchronize the firing of more distant ganglion cells.
机译:在灵长类动物中,一种类型的视网膜神经节细胞,即阳伞细胞,与无长突神经元细胞,即抑制性局部回路神经元,形成间隙连接。为了研究这些间隙连接的影响,我们开发了视网膜电路的线性数学模型,为阳伞细胞提供输入。电生理研究表明,缝隙连接不会扩大阳伞细胞的感受野中心,但我们的结果表明它们对光反应做出了其他贡献。根据我们的模型,偶联的无长突细胞通过去抑制作用增强了阳伞细胞对亮度对比度的响应。我们还展示了如何在两组与突触前突触的无长突细胞之间混合的化学和电突触,如何使阳伞细胞的反应更短暂,因此对运动更敏感。最后,我们展示了通过无长突细胞的偶联如何同步遮阳伞细胞的发射。模型阳伞细胞中的动作电位可以激发相邻的阳伞细胞,但是仅当偶合的无长突细胞也具有动作电位时才起作用。由于低通时间滤波,被动传导无效。来自偶合的无长突细胞轴突的抑制作用还产生振荡,该振荡可能与更远的神经节细胞的发射同步。

著录项

  • 作者

    Kenyon, G T; Marshak, D W;

  • 作者单位
  • 年度 1998
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  • 原文格式 PDF
  • 正文语种 en
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