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Gain control and hyperpolarization level in cat horizontal cells as a function of light and dark adaptation

机译:作为光和暗适应的函数,在猫水平细胞中获得对照和超极化水平

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摘要

First a model is presented that accurately summarizes the dynamic properties of cat horizontal (H-) cells under photopic conditions as measured in our previous work. The model predicts that asymmetries in response to dark as compared to light flashes are flash-duration dependent. This somewhat surprising prediction is tested and confirmed in intracellular recordings from the optically intact in vivo eye of the cat (Experiment 1). The model implies that the gain of H-cells should be related rather directly to the sustained (baseline) membrane potential. We performed three additional experiments to test this idea. Experiment 2 concerns response vs intensity (R-I-) curves for various flash-diameters and background-sizes with background luminance varying over a 4 log unit range. Results support the assumption of a rather strict coupling between flash sensitivity (gain) and the sustained level of hyperpolarization. In Experiment 3 we investigate this relation for both dark and light flashes given on each of four background light levels. The results suggest that there are fixed minimum and maximum hyperpolarization levels, and that the baseline hyperpolarization for a given illumination thus also sets the available range for dark and light flash-responses. The question then arises whether, or how this changes during dark adaptation, when the rod contribution to H-cell responses gradually increases. The fourth experiment therefore studies the relationship between gain and hyperpolarization level during prolonged dark-adaptation. The results show that the rod contribution increases the polarization range of H-cells, but that the gain and polarization level nevertheless remain directly coupled. H-cell models relying on a close coupling between polarization level and gain thus remain attractive options.
机译:首先,我们提供了一个模型,该模型可以准确总结猫水平(H-)细胞在可见光条件下的动态特性,这是我们先前的工作所测量的。该模型预测,与暗闪光相比,对暗的响应不对称与闪光持续时间有关。从猫的光学完整的体内眼睛的细胞内记录中测试并证实了这种令人惊讶的预测(实验1)。该模型暗示H细胞的增益应与持续的(基线)膜电位直接相关。我们执行了三个附加的实验来测试这个想法。实验2涉及各种闪光直径和背景尺寸的响应-强度(R-I-)曲线,背景亮度在4 log单位范围内变化。结果支持了闪光灵敏度(增益)和超极化持续水平之间相当严格的耦合的假设。在实验3中,我们研究了在四个背景光级别上分别给出的暗闪光和亮闪光的关系。结果表明存在固定的最小和最大超极化水平,因此给定照明的基线超极化也设置了暗和亮闪光响应的可用范围。然后出现的问题是,当杆对H细胞反应的贡献逐渐增加时,它在黑暗适应过程中是否或如何改变。因此,第四个实验研究了长时间暗适应期间增益与超极化水平之间的关系。结果表明,棒贡献增加了H细胞的极化范围,但是增益和极化水平仍然保持直接耦合。依靠极化水平和增益之间紧密耦合的H单元模型仍然是有吸引力的选择。

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