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闭眼时的皮层和皮层下视觉处理的差异。

Differential cortical and subcortical visual processing with eyes shut.

机构信息

Graduate Program in Neuroscience, Boston University, Boston, Massachusetts, United States.

Department of Biomedical Engineering, Boston University, Boston, Massachusetts, United States.

出版信息

J Neurophysiol. 2024 Jul 1;132(1):54-60. doi: 10.1152/jn.00073.2024. Epub 2024 May 29.

Abstract

Closing our eyes largely shuts down our ability to see. That said, our eyelids still pass some light, allowing our visual system to coarsely process information about visual scenes, such as changes in luminance. However, the specific impact of eye closure on processing within the early visual system remains largely unknown. To understand how visual processing is modulated when eyes are shut, we used functional magnetic resonance imaging (fMRI) to measure responses to a flickering visual stimulus at high (100%) and low (10%) temporal contrasts, while participants viewed the stimuli with their eyes open or closed. Interestingly, we discovered that eye closure produced a qualitatively distinct pattern of effects across the visual thalamus and visual cortex. We found that with eyes open, low temporal contrast stimuli produced smaller responses across the lateral geniculate nucleus (LGN), primary (V1) and extrastriate visual cortex (V2). However, with eyes closed, we discovered that the LGN and V1 maintained similar blood oxygenation level-dependent (BOLD) responses as the eyes open condition, despite the suppressed visual input through the eyelid. In contrast, V2 and V3 had strongly attenuated BOLD response when eyes were closed, regardless of temporal contrast. Our findings reveal a qualitatively distinct pattern of visual processing when the eyes are closed-one that is not simply an overall attenuation but rather reflects distinct responses across visual thalamocortical networks, wherein the earliest stages of processing preserve information about stimuli but are then gated off downstream in visual cortex. When we close our eyes coarse luminance information is still accessible by the visual system. Using functional magnetic resonance imaging, we examined whether eyelid closure plays a unique role in visual processing. We discovered that while the LGN and V1 show equivalent responses when the eyes are open or closed, extrastriate cortex exhibited attenuated responses with eye closure. This suggests that when the eyes are closed, downstream visual processing is blind to this information.

摘要

当我们闭上眼睛时,我们的视觉能力就会大幅下降。也就是说,我们的眼皮仍然会透过一些光线,使我们的视觉系统能够粗略地处理有关视觉场景的信息,例如亮度变化。然而,眼睛闭合对早期视觉系统内的处理的具体影响在很大程度上仍然未知。为了了解眼睛闭合时视觉处理是如何被调节的,我们使用功能磁共振成像(fMRI)来测量在高(100%)和低(10%)时间对比度下,当参与者睁开或闭上眼睛观看闪烁的视觉刺激时,对其的反应。有趣的是,我们发现眼睛闭合会在视丘脑和视觉皮层中产生一种截然不同的效应模式。我们发现,在睁开眼睛的情况下,低时间对比度刺激会使外侧膝状体(LGN)、初级(V1)和外视皮层(V2)的反应变小。然而,当闭上眼睛时,我们发现即使通过眼皮抑制了视觉输入,LGN 和 V1 仍然保持与睁眼条件相似的血氧水平依赖(BOLD)反应。相比之下,无论时间对比度如何,V2 和 V3 的 BOLD 反应都强烈减弱。我们的研究结果揭示了眼睛闭合时视觉处理的一种截然不同的模式——这不仅仅是一种整体衰减,而是反映了视觉丘脑皮质网络中不同的反应,其中处理的最早阶段保留了有关刺激的信息,但随后在视觉皮层中被关闭。当我们闭上眼睛时,视觉系统仍然可以获取粗略的亮度信息。使用功能磁共振成像,我们研究了眼睑闭合是否在视觉处理中起独特作用。我们发现,当眼睛睁开或闭合时,LGN 和 V1 显示出等效的反应,而外视皮层在闭眼时表现出减弱的反应。这表明当眼睛闭合时,下游视觉处理对该信息是盲目的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99f5/11381112/811313aae69d/jn-00073-2024r01.jpg

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