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空间中物体的神经表征:一种双重编码解释。

Neural representation of objects in space: a dual coding account.

作者信息

Humphreys G W

机构信息

Cognitive Science Research Centre, School of Psychology, University of Birmingham, Edgbaston, UK.

出版信息

Philos Trans R Soc Lond B Biol Sci. 1998 Aug 29;353(1373):1341-51. doi: 10.1098/rstb.1998.0288.

Abstract

I present evidence on the nature of object coding in the brain and discuss the implications of this coding for models of visual selective attention. Neuropsychological studies of task-based constraints on: (i) visual neglect; and (ii) reading and counting, reveal the existence of parallel forms of spatial representation for objects: within-object representations, where elements are coded as parts of objects, and between-object representations, where elements are coded as independent objects. Aside from these spatial codes for objects, however, the coding of visual space is limited. We are extremely poor at remembering small spatial displacements across eye movements, indicating (at best) impoverished coding of spatial position per se. Also, effects of element separation on spatial extinction can be eliminated by filling the space with an occluding object, indicating that spatial effects on visual selection are moderated by object coding. Overall, there are separate limits on visual processing reflecting: (i) the competition to code parts within objects; (ii) the small number of independent objects that can be coded in parallel; and (iii) task-based selection of whether within- or between-object codes determine behaviour. Between-object coding may be linked to the dorsal visual system while parallel coding of parts within objects takes place in the ventral system, although there may additionally be some dorsal involvement either when attention must be shifted within objects or when explicit spatial coding of parts is necessary for object identification.

摘要

我展示了大脑中物体编码本质的证据,并讨论了这种编码对视觉选择性注意模型的影响。基于任务的约束条件的神经心理学研究涉及:(i)视觉忽视;以及(ii)阅读和计数,揭示了物体存在并行的空间表征形式:物体内部表征,其中元素被编码为物体的部分;以及物体之间表征,其中元素被编码为独立的物体。然而,除了这些物体的空间编码外,视觉空间的编码是有限的。我们在记忆眼动过程中的小空间位移方面极其糟糕,这表明(充其量)空间位置本身的编码很贫乏。此外,通过用遮挡物体填充空间可以消除元素分离对空间消退的影响,这表明物体编码会调节对视觉选择的空间影响。总体而言,视觉处理存在不同的限制,反映在:(i)对物体内部部分进行编码的竞争;(ii)可并行编码的独立物体数量较少;以及(iii)基于任务的选择,即物体内部或物体之间的编码决定行为。物体之间的编码可能与背侧视觉系统相关联,而物体内部部分的并行编码发生在腹侧系统中,尽管当必须在物体内部转移注意力或对物体识别需要对部分进行明确的空间编码时,背侧系统可能也会有一些参与。

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