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折返假说:额叶眼区、腹外侧前额叶皮层以及V4区、颞下回在注意力和眼球运动方面的假定相互作用。

The reentry hypothesis: the putative interaction of the frontal eye field, ventrolateral prefrontal cortex, and areas V4, IT for attention and eye movement.

作者信息

Hamker Fred H

机构信息

Allgemeine Psychologie, Psychologisches Institut II, Westf. Wilhelms-Universität, Fliednerstrasse 21, 48149 Münster, Germany.

出版信息

Cereb Cortex. 2005 Apr;15(4):431-47. doi: 10.1093/cercor/bhh146.

Abstract

Attention is known to play a key role in perception, including action selection, object recognition and memory. Despite findings revealing competitive interactions among cell populations, attention remains difficult to explain. The central purpose of this paper is to link up a large number of findings in a single computational approach. Our simulation results suggest that attention can be well explained on a network level involving many areas of the brain. We argue that attention is an emergent phenomenon that arises from reentry and competitive interactions. We hypothesize that guided visual search requires the usage of an object-specific template in prefrontal cortex to sensitize V4 and IT cells whose preferred stimuli match the target template. This induces a feature-specific bias and provides guidance for eye movements. Prior to an eye movement, a spatially organized reentry from occulomotor centers, specifically the movement cells of the frontal eye field, occurs and modulates the gain of V4 and IT cells. The processes involved are elucidated by quantitatively comparing the time course of simulated neural activity with experimental data. Using visual search tasks as an example, we provide clear and empirically testable predictions for the participation of IT, V4 and the frontal eye field in attention. Finally, we explain a possible physiological mechanism that can lead to non-flat search slopes as the result of a slow, parallel discrimination process.

摘要

众所周知,注意力在感知过程中起着关键作用,包括动作选择、物体识别和记忆。尽管有研究结果揭示了细胞群体之间的竞争性相互作用,但注意力仍然难以解释。本文的核心目的是用一种单一的计算方法将大量研究结果联系起来。我们的模拟结果表明,注意力可以在涉及大脑多个区域的网络层面得到很好的解释。我们认为注意力是一种由折返和竞争性相互作用产生的涌现现象。我们假设,引导式视觉搜索需要在前额叶皮层使用特定物体模板,以使V4和IT细胞(其偏好刺激与目标模板匹配)敏感化。这会引发特定特征的偏差,并为眼球运动提供指导。在眼球运动之前,会发生从眼球运动中枢,特别是额叶眼区的运动细胞进行的空间组织折返,并调节V4和IT细胞的增益。通过将模拟神经活动的时间进程与实验数据进行定量比较,阐明了其中涉及的过程。以视觉搜索任务为例,我们对IT、V4和额叶眼区在注意力中的参与提供了清晰且可实证检验的预测。最后,我们解释了一种可能的生理机制,该机制可导致作为缓慢平行辨别过程结果的非平坦搜索斜率。

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