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通过亮度和颜色调制的双眼竞争光栅揭示单眼剥夺的长期影响。

Long-term effects of monocular deprivation revealed with binocular rivalry gratings modulated in luminance and in color.

作者信息

Lunghi Claudia, Burr David C, Morrone M Concetta

机构信息

Department of Neuroscience, Università Degli Studi di Firenze, Firenze, Italy.

出版信息

J Vis. 2013 May 1;13(6):1. doi: 10.1167/13.6.1.

Abstract

During development, within a specific temporal window called the critical period, the mammalian visual cortex is highly plastic and literally shaped by visual experience; to what extent this extraordinary plasticity is retained in the adult brain is still a debated issue. We tested the residual plastic potential of the adult visual cortex for both achromatic and chromatic vision by measuring binocular rivalry in adult humans following 150 minutes of monocular patching. Paradoxically, monocular deprivation resulted in lengthening of the mean phase duration of both luminance-modulated and equiluminant stimuli for the deprived eye and complementary shortening of nondeprived phase durations, suggesting an initial homeostatic compensation for the lack of information following monocular deprivation. When equiluminant gratings were tested, the effect was measurable for at least 180 minutes after reexposure to binocular vision, compared with 90 minutes for achromatic gratings. Our results suggest that chromatic vision shows a high degree of plasticity, retaining the effect for a duration (180 minutes) longer than that of the deprivation period (150 minutes) and twice as long as that found with achromatic gratings. The results are in line with evidence showing a higher vulnerability of the P pathway to the effects of visual deprivation during development and a slower development of chromatic vision in humans.

摘要

在发育过程中,在一个称为关键期的特定时间窗口内,哺乳动物的视觉皮层具有高度可塑性,实际上是由视觉经验塑造的;这种非凡的可塑性在成人大脑中保留的程度仍是一个有争议的问题。我们通过测量成年人单眼遮盖150分钟后的双眼竞争,测试了成年视觉皮层对非彩色和彩色视觉的残余可塑性潜力。矛盾的是,单眼剥夺导致被剥夺眼的亮度调制刺激和等亮度刺激的平均相位持续时间延长,以及未被剥夺相位持续时间的互补缩短,这表明单眼剥夺后对信息缺乏的一种初始稳态补偿。当测试等亮度光栅时,与非彩色光栅的90分钟相比,重新暴露于双眼视觉后至少180分钟该效应是可测量的。我们的结果表明,彩色视觉表现出高度的可塑性,其效应持续的时间(180分钟)比剥夺期(150分钟)更长,是在非彩色光栅中发现的持续时间的两倍。这些结果与以下证据一致:在发育过程中,P通路对视觉剥夺的影响更易受影响,并且人类彩色视觉的发育较慢。

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