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揭示由绕过初级视觉皮层的通路介导的人类大脑V5/MT+区域的运动处理活动。

Unmasking motion-processing activity in human brain area V5/MT+ mediated by pathways that bypass primary visual cortex.

作者信息

Schoenfeld M A, Heinze H-J, Woldorff M G

机构信息

Department of Neurology II, University of Magdeburg, Magdeburg, Germany.

出版信息

Neuroimage. 2002 Oct;17(2):769-79.

Abstract

Most models of the human visual system argue that higher-order motion-processing cortical regions receive their inputs only via the primary visual cortex (striate cortex), rather than also via direct projections from the thalamus that bypass primary visual cortex. However, recent evidence in non-human primates, along with some evidence in humans with damaged primary visual cortex (e.g., "blindsight" for motion in the blind visual hemifield), have argued for the existence of a direct thalamic-to-extrastriate projection for motion processing. This evidence remains controversial. Here we tested the idea that direct thalamic input to extrastriate motion processing areas exists in humans but might be masked in scalp recordings by activity from early visual areas. To do this, we employed stimuli that induced strong refractory effects in primary visual cortex--thereby creating a brief "reversable lesion" in primary visual cortex--immediately before the presentation of a motion stimulus. Under these conditions, we then assessed whether motion areas of cortex were still able to process the motion stimuli by recording event-related potentials (ERPs) and event-related magnetic fields (ERFs/MEG). We found robust motion-related activity in extrastriate motion processing areas in the ERP and MEG signals even when primary visual cortex was heavily suppressed by our manipulation. This finding provides evidence for a direct thalamic functional pathway to extrastriate visual cortical motion processing areas in the human that bypasses primary visual cortex.

摘要

大多数人类视觉系统模型认为,高阶运动处理皮层区域仅通过初级视觉皮层(纹状皮层)接收输入,而非也通过绕过初级视觉皮层的丘脑直接投射接收输入。然而,最近在非人类灵长类动物中的证据,以及一些在初级视觉皮层受损的人类中的证据(例如,盲侧视野中对运动的“盲视”),都支持存在用于运动处理的丘脑到纹外区域的直接投射。这一证据仍存在争议。在这里,我们测试了这样一种观点,即人类存在丘脑向纹外运动处理区域的直接输入,但在头皮记录中可能会被早期视觉区域的活动所掩盖。为此,我们在呈现运动刺激之前,采用能在初级视觉皮层诱发强烈不应期效应的刺激——从而在初级视觉皮层中制造一个短暂的“可逆性损伤”。在这些条件下,我们随后通过记录事件相关电位(ERP)和事件相关磁场(ERF/MEG)来评估皮层的运动区域是否仍能处理运动刺激。我们发现,即使初级视觉皮层被我们的操作严重抑制,在ERP和MEG信号中,纹外运动处理区域仍存在与运动相关的强烈活动。这一发现为人类中存在一条绕过初级视觉皮层的、从丘脑到纹外视觉皮层运动处理区域的直接功能通路提供了证据。

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