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顶叶皮层介导与刺激大小无关的知觉格式塔分组。

Parietal cortex mediates perceptual Gestalt grouping independent of stimulus size.

作者信息

Grassi Pablo R, Zaretskaya Natalia, Bartels Andreas

机构信息

Vision and Cognition Lab, Centre for Integrative Neuroscience, University of Tübingen, Otfried-Müller Str. 25, 72076 Tübingen, Germany; Department of Psychology, University of Tübingen, Tübingen, Germany; Max Planck Institute for Biological Cybernetics, Tübingen, Germany.

出版信息

Neuroimage. 2016 Jun;133:367-377. doi: 10.1016/j.neuroimage.2016.03.008. Epub 2016 Mar 11.

Abstract

The integration of local moving elements into a unified gestalt percept has previously been linked to the posterior parietal cortex. There are two possible interpretations for the lack of involvement of other occipital regions. The first is that parietal cortex is indeed uniquely functionally specialized to perform grouping. Another possibility is that other visual regions can perform grouping as well, but that the large spatial separation of the local elements used previously exceeded their neurons' receptive field (RF) sizes, preventing their involvement. In this study we distinguished between these two alternatives. We measured whole-brain activity using fMRI in response to a bistable motion illusion that induced mutually exclusive percepts of either an illusory global Gestalt or of local elements. The stimulus was presented in two sizes, a large version known to activate IPS only, and a version sufficiently small to fit into the RFs of mid-level dorsal regions such as V5/MT. We found that none of the separately localized motion regions apart from parietal cortex showed a preference for global Gestalt perception, even for the smaller version of the stimulus. This outcome suggests that grouping-by-motion is mediated by a specialized size-invariant mechanism with parietal cortex as its anatomical substrate.

摘要

先前已将局部运动元素整合为统一的格式塔感知与顶叶后皮质联系起来。对于其他枕叶区域未参与其中,有两种可能的解释。第一种是顶叶皮质在功能上确实具有独特的专门性来进行分组。另一种可能性是其他视觉区域也能进行分组,但先前使用的局部元素的大空间分离超过了它们神经元的感受野(RF)大小,从而阻止了它们的参与。在本研究中,我们区分了这两种可能性。我们使用功能磁共振成像(fMRI)测量全脑活动,以响应一种双稳态运动错觉,该错觉会诱发对虚幻全局格式塔或局部元素的相互排斥的感知。刺激以两种大小呈现,一种大版本已知仅激活顶内沟(IPS),另一种版本足够小以适合诸如V5/MT等中级背侧区域的感受野。我们发现,除顶叶皮质外,其他单独定位的运动区域均未表现出对全局格式塔感知的偏好,即使对于较小版本的刺激也是如此。这一结果表明,通过运动进行分组是由一种专门的大小不变机制介导的,其解剖学基础是顶叶皮质。

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