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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Nonvisual and visual object shape representations in occipitotemporal cortex: Evidence from congenitally blind and sighted adults
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Nonvisual and visual object shape representations in occipitotemporal cortex: Evidence from congenitally blind and sighted adults

机译:枕骨蛋白皮质的非智能和视觉物体形状表示:来自盲目盲目和观察成年人的证据

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摘要

Knowledge of object shape is primarily acquired through the visual modality but can also be acquired through other sensory modalities. In the present study, we investigated the representation of object shape in humans without visual experience. Congenitally blind and sighted participants rated the shape similarity of pairs of 33 familiar objects, referred to by their names. The resulting shape similarity matrices were highly similar for the two groups, indicating that knowledge of the objects' shapes was largely independent of visual experience. Using fMRI,wetested for brain regions that represented object shape knowledge in blind and sighted participants. Multivoxel activity patterns were established for each of the 33 aurally presented object names. Sighted participants additionally viewed pictures of these objects. Using representational similarity analysis, neural similarity matrices were related to the behavioral shape similarity matrices. Results showed that activity patterns in occipitotemporal cortex (OTC) regions, including inferior temporal (IT) cortex and functionally defined object-selective cortex (OSC), reflected the behavioral shape similarity ratings in both blind and sighted groups, also when controlling for the objects' tactile and semantic similarity. Furthermore, neural similarity matrices of IT and OSC showed similarities across blind and sighted groups (within the auditory modality) and across modality (within the sighted group), but not across both modality and group (blind auditory-sighted visual). Together, these findings provide evidence that OTC not only represents objects visually (requiring visual experience) but also represents objects nonvisually, reflecting knowledge of object shape independently of the modality through which this knowledge was acquired.
机译:对象形状的知识主要通过视觉模态获取,但也可以通过其他感官模态获取。在本研究中,我们在没有视觉体验的情况下调查了人类的物体形状的代表性。盲目盲目和视力参与者评定了33对熟悉的物体的形状相似性,由他们的名字提到。由此产生的形状相似度矩阵对于两组非常相似,表明物体形状的知识在很大程度上独立于视觉体验。使用FMRI,对脑区的脑区敏感,在盲人和视力参与者中代表了对象形状知识。为33个验证呈现的对象名称中的每一个建立多种激活活动模式。视为参与者另外查看这些对象的图片。使用代表性相似性分析,神经相似度矩阵与行为形状相似矩阵有关。结果表明,在控制物体的控制时,枕型颞型皮质皮质(OTC)区(包括较低的时间(ITC)区域,包括较差的时间(ITC)区域,包括较低的时间(ITC)的区域,包括较低的时间(IT)皮质和功能定义的对象选择性皮质(OSC),也反映了盲和镜像的行为形状相似性评级'触觉和语义相似性。此外,IT的神经相似性矩阵和OSC在盲目和观测的组中(在听觉模型内)和跨偶像(在视力组内)显示的相似之处,但不是跨两种方式和组(盲目视觉视觉)。这些发现提供了证据表明,OTC不仅代表目的地(需要视觉体验),而且还代表了对象形状的无限性,独立于获取这些知识的模态来反映对象形状的知识。

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    Center for Mind/Brain Sciences University of Trento 38068 Rovereto Italy;

    State Key Laboratory of Cognitive Neuroscience and Learning IDG/McGovern Institute for Brain;

    State Key Laboratory of Cognitive Neuroscience and Learning IDG/McGovern Institute for Brain;

    Center for Mind/Brain Sciences University of Trento 38068 Rovereto Italy Department of;

    State Key Laboratory of Cognitive Neuroscience and Learning IDG/McGovern Institute for Brain;

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  • 正文语种 eng
  • 中图分类 人体生理学;
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