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暗视觉在人类外纹状皮层的厚型柱中被选择性处理。

Scotopic Vision Is Selectively Processed in Thick-Type Columns in Human Extrastriate Cortex.

机构信息

Athinoula A. Martinos Center for Biomedical Imaging, Massachusetts General Hospital, Boston, MA 02114, USA.

Department of Radiology, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Cereb Cortex. 2021 Jan 5;31(2):1163-1181. doi: 10.1093/cercor/bhaa284.

Abstract

In humans, visual stimuli can be perceived across an enormous range of light levels. Evidence suggests that different neural mechanisms process different subdivisions of this range. For instance, in the retina, stimuli presented at very low (scotopic) light levels activate rod photoreceptors, whereas cone photoreceptors are activated relatively more at higher (photopic) light levels. Similarly, different retinal ganglion cells are activated by scotopic versus photopic stimuli. However, in the brain, it remains unknown whether scotopic versus photopic information is: 1) processed in distinct channels, or 2) neurally merged. Using high-resolution functional magnetic resonance imaging at 7 T, we confirmed the first hypothesis. We first localized thick versus thin-type columns within areas V2, V3, and V4, based on photopic selectivity to motion versus color, respectively. Next, we found that scotopic stimuli selectively activated thick- (compared to thin-) type columns in V2 and V3 (in measurements of both overlap and amplitude) and V4 (based on overlap). Finally, we found stronger resting-state functional connections between scotopically dominated area MT with thick- (compared to thin-) type columns in areas V2, V3, and V4. We conclude that scotopic stimuli are processed in partially segregated parallel streams, emphasizing magnocellular influence, from retina through middle stages of visual cortex.

摘要

在人类中,视觉刺激可以在非常大的光强范围内被感知。有证据表明,不同的神经机制处理这个范围的不同细分部分。例如,在视网膜中,非常低(暗视)光强下的刺激激活视杆感光细胞,而相对更高(明视)光强下的刺激则激活视锥感光细胞。同样,不同的视网膜神经节细胞被暗视或明视刺激激活。然而,在大脑中,仍然不清楚暗视与明视信息是:1)在不同的通道中处理,还是 2)在神经上合并。我们使用 7T 高分辨率功能磁共振成像证实了第一个假设。我们首先根据对运动与颜色的明视选择性,在 V2、V3 和 V4 区内定位厚型与薄型柱。接下来,我们发现暗视刺激选择性地激活 V2 和 V3 中的厚型(与薄型相比)柱(在重叠和幅度测量中)和 V4(基于重叠)。最后,我们发现暗视优势区 MT 与 V2、V3 和 V4 中的厚型柱之间的静息状态功能连接更强。我们的结论是,暗视刺激在部分分离的平行流中被处理,强调了从视网膜到视觉皮层中期的大细胞影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/323b/7786355/80fa4c0dcb97/bhaa284f1.jpg

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