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物体和场景感知中的几何和表面属性的神经表示。

Neural representation of geometry and surface properties in object and scene perception.

机构信息

Department of Psychology (Scarborough), University of Toronto, Toronto, ON, Canada M1C 1A4; Department of Psychology (St. George), University of Toronto, Toronto, ON, Canada M5S 3G3.

Department of Psychology (St. George), University of Toronto, Toronto, ON, Canada M5S 3G3.

出版信息

Neuroimage. 2017 Aug 15;157:586-597. doi: 10.1016/j.neuroimage.2017.06.043. Epub 2017 Jun 21.

Abstract

Multiple cortical regions are crucial for perceiving the visual world, yet the processes shaping representations in these regions are unclear. To address this issue, we must elucidate how perceptual features shape representations of the environment. Here, we explore how the weighting of different visual features affects neural representations of objects and scenes, focusing on the scene-selective parahippocampal place area (PPA), but additionally including the retrosplenial complex (RSC), occipital place area (OPA), lateral occipital (LO) area, fusiform face area (FFA) and occipital face area (OFA). Across three experiments, we examined functional magnetic resonance imaging (fMRI) activity while human observers viewed scenes and objects that varied in geometry (shape/layout) and surface properties (texture/material). Interestingly, we found equal sensitivity in the PPA for these properties within a scene, revealing that spatial-selectivity alone does not drive activation within this cortical region. We also observed sensitivity to object texture in PPA, but not to the same degree as scene texture, and representations in PPA varied when objects were placed within scenes. We conclude that PPA may process surface properties in a domain-specific manner, and that the processing of scene texture and geometry is equally-weighted in PPA and may be mediated by similar underlying neuronal mechanisms.

摘要

多个皮质区域对于感知视觉世界至关重要,但这些区域中的表示形式形成的过程尚不清楚。为了解决这个问题,我们必须阐明感知特征如何塑造环境的表示形式。在这里,我们探讨了不同视觉特征的权重如何影响物体和场景的神经表示,重点研究了场景选择性旁海马体位置区域(PPA),但还包括后扣带回复合体(RSC)、枕叶位置区域(OPA)、外侧枕叶(LO)区域、梭状回面孔区(FFA)和枕叶面孔区(OFA)。在三个实验中,我们观察了人类观察者观看场景和物体时的功能磁共振成像(fMRI)活动,这些场景和物体在几何形状(形状/布局)和表面属性(纹理/材料)上有所不同。有趣的是,我们发现 PPA 对场景中的这些属性具有同等的敏感性,这表明空间选择性本身并不能驱动该皮质区域的激活。我们还观察到 PPA 对物体纹理具有敏感性,但不如场景纹理高,并且当物体放置在场景中时,PPA 中的表示形式会发生变化。我们得出结论,PPA 可能以特定于域的方式处理表面属性,并且场景纹理和几何形状的处理在 PPA 中具有同等的权重,并且可能由类似的潜在神经元机制介导。

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