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低强度光遗传学刺激在灵长类动物 V1 中产生类似的神经和感知掩蔽效应。

Similar neural and perceptual masking effects of low-power optogenetic stimulation in primate V1.

机构信息

Department of Neurosurgery, Rutgers University, New Brunswick, United States.

Center for Perceptual Systems, The University of Texas at Austin, Austin, United States.

出版信息

Elife. 2022 Jan 4;11:e68393. doi: 10.7554/eLife.68393.

Abstract

Can direct stimulation of primate V1 substitute for a visual stimulus and mimic its perceptual effect? To address this question, we developed an optical-genetic toolkit to 'read' neural population responses using widefield calcium imaging, while simultaneously using optogenetics to 'write' neural responses into V1 of behaving macaques. We focused on the phenomenon of visual masking, where detection of a dim target is significantly reduced by a co-localized medium-brightness mask (Cornsweet and Pinsker, 1965; Whittle and Swanston, 1974). Using our toolkit, we tested whether V1 optogenetic stimulation can recapitulate the perceptual masking effect of a visual mask. We find that, similar to a visual mask, low-power optostimulation can significantly reduce visual detection sensitivity, that a sublinear interaction between visual- and optogenetic-evoked V1 responses could account for this perceptual effect, and that these neural and behavioral effects are spatially selective. Our toolkit and results open the door for further exploration of perceptual substitutions by direct stimulation of sensory cortex.

摘要

直接刺激灵长类动物 V1 能否替代视觉刺激并模拟其感知效果?为了解决这个问题,我们开发了一种光学遗传学工具包,使用宽场钙成像来“读取”神经群体反应,同时使用光遗传学将神经反应“写入”行为猕猴的 V1。我们专注于视觉掩蔽现象,其中,一个暗淡目标的检测会因局部中等亮度掩蔽(Cornsweet 和 Pinsker,1965;Whittle 和 Swanston,1974)而显著降低。使用我们的工具包,我们测试了 V1 光遗传学刺激是否可以再现视觉掩蔽的感知效果。我们发现,类似于视觉掩蔽,低功率光刺激可以显著降低视觉检测灵敏度,视觉和光遗传学诱发的 V1 反应之间的次线性相互作用可以解释这种感知效果,并且这些神经和行为效应具有空间选择性。我们的工具包和结果为通过直接刺激感觉皮层来进一步探索感知替代打开了大门。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ffa/8765749/a012e2aff73f/elife-68393-fig1.jpg

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