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Effect of eccentricity and light level on the timing of light adaptation mechanisms

机译:偏心和光线水平对光适应机构时序的影响

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We explored the complexity of the light adaptation process, assessing adaptation recovery (Ar) at different eccentricities and light levels. Luminance thresholds were obtained with transient background fields at mesopic and photopic light levels for temporal retinal eccentricities (0 degrees-15 degrees) with test/background stimulus size of 0.5 degrees/1 degrees using a staircase procedure in a two-channel Maxwellian view optical system. Ar was obtained in comparison with steady data [Vis. Res. 125, 12 (2016)]. Light level proportionally affects Ar only at fovea. Photopic extrafoveal thresholds were one log unit higher for transient conditions. Adaptation was equally fast at low light levels for different retinal locations with variations mainly affected by noise. These results evidence different timing in the mechanisms of adaptation involved. (C) 2018 Optical Society of America
机译:我们探讨了光适应过程的复杂性,评估了不同偏心和光水平的适应恢复(AR)。 在颞型和光学光线水平的瞬态背景领域获得亮度阈值,用于时间视网膜偏心(0度-15度),测试/背景刺激尺寸为0.5度/ 1度,在双通道Maxwellian视图光学系统中使用楼梯过程 。 与稳定数据相比获得了AR [VIS。 res。 125,12(2016)]。 光水平比例地影响了Fovea的ar。 Photopic IntrafoOveal阈值是一个瞬态条件较高的Log单位。 适应在低光水平上同样快速,不同的视网膜位置主要受到噪声影响的变化。 这些结果证据了涉及适应机制的不同时间。 (c)2018年光学学会

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