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人类暗视觉敏感性通过改变暗视觉反应的速度在感受器后进行调节。

Human scotopic sensitivity is regulated postreceptorally by changing the speed of the scotopic response.

作者信息

Stockman Andrew, Candler Toby, Sharpe Lindsay T

机构信息

Institute of Ophthalmology, University College London, London, UK.

出版信息

J Vis. 2010 Feb 16;10(2):12.1-19. doi: 10.1167/10.2.12.

Abstract

Sensitivity regulation enables the visual system to function effectively from the absorption of a few photons at the lowest visual threshold to the absorption of enough photons to bleach nearly all the light-sensitive photopigment in the eye. Here, we investigate sensitivity regulation in the rod (or scotopic) range from -3.8 to -0.8 log(10) scotopic trolands. Over most of this range, the rate of photon absorption per rod is too low for sensitivity regulation to be practicable within the rod photoreceptor itself, so that regulation must occur postreceptorally. We measured adaptation-dependent changes in visual sensitivity and visual delay, which together provide a much more complete characterization of the effects of light adaptation than the usual method of measuring sensitivity changes alone. Our results demonstrate clearly that changes in scotopic sensitivity with increasing light levels are achieved in large part by a speeding up of the scotopic response and a decrease in the temporal integration time. Thus, the scotopic and the photopic systems both regulate their steady-state sensitivity using the same strategy, even though the scotopic system does it largely postreceptorally and the photopic system largely receptorally.

摘要

灵敏度调节使视觉系统能够有效地发挥功能,从在最低视觉阈值下吸收少量光子,到吸收足够的光子以使眼睛中几乎所有的光敏色素漂白。在这里,我们研究了在-3.8至-0.8 log(10)暗视托兰斯的视杆(或暗视)范围内的灵敏度调节。在这个范围的大部分区域,每个视杆的光子吸收速率过低,以至于在视杆光感受器自身内部进行灵敏度调节是不切实际的,因此调节必须在感受器后发生。我们测量了与适应相关的视觉灵敏度和视觉延迟的变化,与仅测量灵敏度变化的常规方法相比,这两者共同提供了对光适应效果更完整的表征。我们的结果清楚地表明,随着光照水平的增加,暗视灵敏度的变化在很大程度上是通过加快暗视反应和减少时间积分时间来实现的。因此,暗视系统和明视系统都使用相同的策略来调节它们的稳态灵敏度,尽管暗视系统主要在感受器后进行调节,而明视系统主要在感受器处进行调节。

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