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腹侧流中纹理和形状的分离处理:来自 fMRI 和视觉失认症的证据。

Separate processing of texture and form in the ventral stream: evidence from FMRI and visual agnosia.

机构信息

Department of Psychology, Durham University, Durham DH1 3LE, UK.

出版信息

Cereb Cortex. 2010 Feb;20(2):433-46. doi: 10.1093/cercor/bhp111. Epub 2009 May 28.

Abstract

Real-life visual object recognition requires the processing of more than just geometric (shape, size, and orientation) properties. Surface properties such as color and texture are equally important, particularly for providing information about the material properties of objects. Recent neuroimaging research suggests that geometric and surface properties are dealt with separately within the lateral occipital cortex (LOC) and the collateral sulcus (CoS), respectively. Here we compared objects that differed either in aspect ratio or in surface texture only, keeping all other visual properties constant. Results on brain-intact participants confirmed that surface texture activates an area in the posterior CoS, quite distinct from the area activated by shape within LOC. We also tested 2 patients with visual object agnosia, one of whom (DF) performed well on the texture task but at chance on the shape task, whereas the other (MS) showed the converse pattern. This behavioral double dissociation was matched by a parallel neuroimaging dissociation, with activation in CoS but not LOC in patient DF and activation in LOC but not CoS in patient MS. These data provide presumptive evidence that the areas respectively activated by shape and texture play a causally necessary role in the perceptual discrimination of these features.

摘要

真实世界中的视觉物体识别不仅需要处理几何(形状、大小和方向)属性,还需要处理表面属性,如颜色和纹理,这些属性对于提供关于物体材料属性的信息尤为重要。最近的神经影像学研究表明,几何和表面属性分别在外侧枕叶皮层(LOC)和侧副沟(CoS)中处理。在这里,我们比较了在长宽比或表面纹理上仅存在差异的物体,同时保持所有其他视觉属性不变。对大脑完整的参与者的研究结果证实,表面纹理激活了后 CoS 中的一个区域,与 LOC 中激活的形状区域明显不同。我们还测试了 2 名患有视觉物体识别障碍的患者,其中一名(DF)在纹理任务上表现良好,但在形状任务上表现为机会,而另一名(MS)则表现出相反的模式。这种行为上的双重分离与平行的神经影像学分离相匹配,DF 患者的 CoS 激活但 LOC 不激活,而 MS 患者的 LOC 激活但 CoS 不激活。这些数据提供了假定的证据,表明分别由形状和纹理激活的区域在这些特征的感知辨别中起着因果上必要的作用。

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