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Invisible light inside the natural blind spot alters brightness at a remote location.


ABSTRACT: The natural blind spot in the visual field has been known as a large oval region that cannot receive any optical input because it corresponds to the retinal optic disk containing no rod/cone-photoreceptors. Recently, stimulation inside the blind spot was found to enhance, but not trigger, the pupillary light reflex. However, it is unknown whether blind-spot stimulation also affects visual perception. We addressed this question using psychophysical brightness-matching experiments. We found that a test stimulus outside the blind spot was judged as darker when it was accompanied by a consciously unexperienced blue oval inside the blind spot; moreover, the pupillary light reflex was enhanced. These findings suggested that a photo-sensitive mechanism inside the optic disk, presumably involving the photopigment melanopsin, contributes to our image-forming vision and provides a 'reference' for calibrating the perceived brightness of visual objects.

SUBMITTER: Saito M 

PROVIDER: S-EPMC5954096 | biostudies-literature | 2018 May

REPOSITORIES: biostudies-literature

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Invisible light inside the natural blind spot alters brightness at a remote location.

Saito Marina M   Miyamoto Kentaro K   Uchiyama Yusuke Y   Murakami Ikuya I  

Scientific reports 20180515 1


The natural blind spot in the visual field has been known as a large oval region that cannot receive any optical input because it corresponds to the retinal optic disk containing no rod/cone-photoreceptors. Recently, stimulation inside the blind spot was found to enhance, but not trigger, the pupillary light reflex. However, it is unknown whether blind-spot stimulation also affects visual perception. We addressed this question using psychophysical brightness-matching experiments. We found that a  ...[more]

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