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Dark Adaptation and Visual Pigment Regeneration in Human Cones

机译:人锥的黑暗适应和视觉色素再生

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Foveal threshold elevation and red-green cone pigment regeneration have been studied in the dark after a wide range of bleaches in normal man with a view to probing the limits of the application of the Dowling-Rushton relation: i.e., the direct proportionality between log threshold elevation and fraction of unregenerated pigment. Cone pigment regeneration (and threshold recovery) is much faster after short bleaches than expected from the kinetics of a simple monomolecular reaction. Recovery is faster after a fixed (short) duration bleach the weaker it is. Except for the first 30 s after relatively weak bleaches and the entire recovery after a very brief (0.001 s) saturating bright flash which bleaches a little more than 50%, the results are accurately fit by the Dowling-Rushton relation over the entire range tested with only one arbitrary constant (the proportionality factor). Theory predicts too low threshold in comparison with what is obtained, for both of these exceptions
机译:为了探究道林-拉斯顿关系应用的局限性,即对数阈值之间的正比关系,在正常人中经过广泛的漂白后,在黑暗中研究了中央凹阈值升高和红绿色锥状色素再生。未再生颜料的高度和分数。短时间漂白后,锥形颜料的再生(和阈值恢复)比简单的单分子反应动力学所预期的要快得多。固定(短)持续时间的漂白越弱,恢复速度就越快。除了相对较弱的漂白后的最初30 s和非常短暂的(<0.001 s)饱和明亮闪光(漂白略超过50%)后的全部恢复之外,结果在整个范围内都可以通过Dowling-Rushton关系精确拟合仅使用一个任意常数(比例因子)进行测试。对于这两种例外情况,理论预测与获得的结果相比阈值都太低

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