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人类扫视抑制的神经关联

Neural correlates of saccadic suppression in humans.

作者信息

Kleiser Raimund, Seitz Rüdiger J, Krekelberg Bart

机构信息

Department of Neurology, University Hospital, Moorenstr. 5, 40591 Düsseldorf, Germany.

出版信息

Curr Biol. 2004 Mar 9;14(5):386-90. doi: 10.1016/j.cub.2004.02.036.

Abstract

When you look into a mirror and move your eyes left to right, you will see that you cannot observe your own eye movements. This demonstrates the phenomenon of saccadic suppression: during saccadic eye movements, visual sensitivity is much reduced. Given that humans make more than 100,000 eye movements each day, it is clear why suppression is needed: without it, the motion on the retina would prevent us from seeing anything at all. Psychophysical data show that suppression is stimulus selective: it is strongest for the kind of stimuli that preferentially activate magnocellular thalamic neurons. This has led to the hypothesis that saccadic suppression selectively targets the magnocellular stream. We used fMRI to find brain areas with a stimulus-selective suppression of the BOLD signal that matches the psychophysical data. We found such a neural correlate of saccadic suppression in the dorsal stream (hMT+, V7) and in ventral area V4. These areas receive magnocellular input; hence our findings are consistent with the magnocellular hypothesis. The range of effects in our data and in single cell data, however, argues against a single thalamic mechanism that suppresses all cortical input. Instead, we speculate that saccadic suppression relies on multiple mechanisms operating in different cortical areas.

摘要

当你看着镜子并将眼睛从左向右移动时,你会发现自己无法观察到自己的眼球运动。这展示了扫视抑制现象:在眼球扫视运动期间,视觉敏感度会大幅降低。鉴于人类每天会进行超过10万次眼球运动,很明显为什么需要抑制:没有它,视网膜上的运动将使我们根本无法看到任何东西。心理物理学数据表明,抑制是刺激选择性的:对于优先激活丘脑大细胞神经元的那种刺激,抑制作用最强。这导致了一种假设,即扫视抑制选择性地针对大细胞通路。我们使用功能磁共振成像(fMRI)来寻找大脑中具有与心理物理学数据相匹配的对血氧水平依赖(BOLD)信号进行刺激选择性抑制的区域。我们在背侧通路(hMT +、V7)和腹侧区域V4中发现了这种扫视抑制的神经关联。这些区域接收大细胞输入;因此我们的发现与大细胞假说一致。然而,我们数据中的效应范围以及单细胞数据中的效应范围表明,并不存在一种单一的丘脑机制来抑制所有皮层输入。相反,我们推测扫视抑制依赖于在不同皮层区域起作用的多种机制。

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