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Flux not retinal illumination is what cat retinal ganglion cells really care about

机译:猫视网膜神经节细胞真正关心的是助焊剂而不是视网膜照明

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摘要

1. Evidence was obtained that the impulse/quantum (I/Q) ratio of the central response mechanism of retinal ganglion cells in the cat is controlled by the steady effective retinal flux of the background.2. One experiment revealed that the I/Q ratio was decreased as the area of an adapting spot, of constant illumination, was increased. The curve relating the I/Q ratio to background flux was the same regardless of the size of the adapting spot.3. The effective central summing area of many retinal ganglion cells was determined. For the same cells, the transition level (Enroth-Cugell & Shapley, 1973) of the impulse/quantum curve was also measured. Diffuse illumination at the transition level was inversely proportional to the effective summing area, when variation in dark-adapted sensitivity between cells was taken into account.4. Therefore, retinal ganglion cells with large central summing areas are more light-adapted by any given diffuse background than cells with small centres.
机译:1.有证据表明,猫视网膜神经节细胞中央反应机制的脉冲/量子(I / Q)比受背景稳定的有效视网膜通量控制。一项实验表明,随着恒定照明的适应点面积的增加,I / Q比降低。无论适配点的大小如何,将I / Q比与背景通量相关的曲线都是相同的。3。确定了许多视网膜神经节细胞的有效中央总面积。对于相同的电池,还测量了脉冲/量子曲线的跃迁水平(Enroth-Cugell&Shapley,1973)。当考虑细胞之间暗适应灵敏度的变化时,过渡水平的漫射照明与有效求和面积成反比。4。因此,具有较大中央总和区域的视网膜神经节细胞比具有较小中央的细胞更适合任何给定的漫射背景。

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