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视觉选择性行为可以由前馈过程触发。

Visual selective behavior can be triggered by a feed-forward process.

作者信息

VanRullen Rufin, Koch Christof

机构信息

California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

J Cogn Neurosci. 2003 Feb 15;15(2):209-17. doi: 10.1162/089892903321208141.

Abstract

The ventral visual pathway implements object recognition and categorization in a hierarchy of processing areas with neuronal selectivities of increasing complexity. The presence of massive feedback connections within this hierarchy raises the possibility that normal visual processing relies on the use of computational loops. It is not known, however, whether object recognition can be performed at all without such loops (i.e., in a purely feed-forward mode). By analyzing the time course of reaction times in a masked natural scene categorization paradigm, we show that the human visual system can generate selective motor responses based on a single feed-forward pass. We confirm these results using a more constrained letter discrimination task, in which the rapid succession of a target and mask is actually perceived as a distractor. We show that a masked stimulus presented for only 26 msec - and often not consciously perceived - can fully determine the earliest selective motor responses: The neural representations of the stimulus and mask are thus kept separated during a short period corresponding to the feed-forward "sweep." Therefore, feedback loops do not appear to be "mandatory" for visual processing. Rather, we found that such loops allow the masked stimulus to reverberate in the visual system and affect behavior for nearly 150 msec after the feed-forward sweep.

摘要

腹侧视觉通路在具有越来越复杂的神经元选择性的处理区域层次结构中实现物体识别和分类。该层次结构中存在大量反馈连接,这增加了正常视觉处理依赖于计算循环的可能性。然而,尚不清楚在没有这种循环的情况下(即纯前馈模式)是否根本无法进行物体识别。通过分析掩蔽自然场景分类范式中反应时间的时间进程,我们表明人类视觉系统可以基于单次前馈传递产生选择性运动反应。我们使用更具限制性的字母辨别任务证实了这些结果,在该任务中,目标和掩蔽的快速连续呈现实际上被视为干扰物。我们表明,仅呈现26毫秒且通常未被有意识感知的掩蔽刺激可以完全决定最早的选择性运动反应:因此,在对应于前馈“扫描”的短时间内,刺激和掩蔽的神经表征保持分离。因此,反馈循环似乎并非视觉处理的“必需”。相反,我们发现这种循环允许掩蔽刺激在视觉系统中回荡,并在前馈扫描后近150毫秒内影响行为。

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