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我们能用黑素视蛋白视物吗?

Can We See with Melanopsin?

作者信息

Lucas Robert J, Allen Annette E, Milosavljevic Nina, Storchi Riccardo, Woelders Tom

机构信息

Centre for Biological Timing and Division of Neuroscience and Experimental Psychology, Faculty of Biology, Medicine and Health, University of Manchester, Manchester M13 9PT, United Kingdom; email:

出版信息

Annu Rev Vis Sci. 2020 Sep 15;6:453-468. doi: 10.1146/annurev-vision-030320-041239. Epub 2020 Jun 3.

Abstract

A small fraction of mammalian retinal ganglion cells are directly photoreceptive thanks to their expression of the photopigment melanopsin. These intrinsically photosensitive retinal ganglion cells (ipRGCs) have well-established roles in a variety of reflex responses to changes in ambient light intensity, including circadian photoentrainment. In this article, we review the growing evidence, obtained primarily from laboratory mice and humans, that the ability to sense light via melanopsin is also an important component of perceptual and form vision. Melanopsin photoreception has low temporal resolution, making it fundamentally biased toward detecting changes in ambient light and coarse patterns rather than fine details. Nevertheless, melanopsin can indirectly impact high-acuity vision by driving aspects of light adaptation ranging from pupil constriction to changes in visual circuit performance. Melanopsin also contributes directly to perceptions of brightness, and recent data suggest that this influences the appearance not only of overall scene brightness, but also of low-frequency patterns.

摘要

一小部分哺乳动物的视网膜神经节细胞由于表达了光色素黑视蛋白而具有直接感光能力。这些内在光敏性视网膜神经节细胞(ipRGCs)在对环境光强度变化的各种反射反应中,包括昼夜节律光同步化,发挥着已被充分证实的作用。在本文中,我们综述了主要从实验室小鼠和人类身上获得的越来越多的证据,即通过黑视蛋白感知光的能力也是感知视觉和形态视觉的一个重要组成部分。黑视蛋白光感受具有低时间分辨率,这使其从根本上倾向于检测环境光的变化和粗略模式,而不是精细细节。然而,黑视蛋白可以通过驱动从瞳孔收缩到视觉回路性能变化等多种光适应方面,间接影响高敏锐度视觉。黑视蛋白也直接影响亮度感知,最近的数据表明,这不仅影响整体场景亮度的外观,还影响低频模式的外观。

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