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The neural representation of visual relational and item-specific information.

机译:视觉关系和项目特定信息的神经表示。

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摘要

Relational representations sit at the core of models of higher cognition and they enable distinctively human flexible behavior, yet their neural basis has been little studied. In order to advance our understanding of how the brain instantiates relational representations and whether it does so in a manner distinct from other sorts of information, in this work we employed fMRI and multivoxel pattern analysis to examine the neural representation of visual relational in comparison with item-specific information in the spatial and object property domains. Item-specific spatial information is necessary for action and for feature-binding. Spatial relational information is necessary for view-independent recognition and for spatial reasoning. Item-specific information about object properties such as size and luminance is necessary for such tasks as object or scene recognition. Information about relative feature values between objects is necessary for recognition under differing viewing conditions and for inference and generalization. Subjects performed a delayed recognition working memory task on simple visual scenes that differed across conditions only in the type of information that was to be encoded. In the spatial domain, we found a double dissociation between items and relations: whereas item-specific processing implicated a frontoparietal attention network including the superior frontal sulcus and intraparietal sulcus, relational processing preferentially recruited a cognitive control network, particularly lateral prefrontal cortex and inferior parietal lobule. Moreover, pattern classification revealed that the actual meaning of the relation could be decoded within these same regions, most clearly in rostrolateral prefrontal cortex. These results suggest that spatial relational information is maintained as a distinct type of information from object locations, and support a hierarchical, representational account of prefrontal cortex organization. In the nonspatial, object domain, in contrast, we found that both item and relation tasks activated visual and parietal cortex to similar degrees. However, multivariate methods could identify distinguishable neural populations representing item and relational information within these areas. In addition, modeling results suggest that item-specific and relative magnitude representations share a common representation scheme within parietal cortex. Together, these findings demonstrate that relational and item-specific processing is often closely related, but also reveal that there are at least certain types of relations whose representations are maintained and used in a qualitatively distinct manner in prefrontal cortex when explicit, symbolic processing is required, thus informing models of human cognition and prefrontal cortical organization.
机译:关系表示法是高认知模型的核心,它们使人类能够表现出独特的灵活行为,但对它们的神经基础却很少研究。为了增进我们对大脑如何实例化关系表示以及是否以与其他类型的信息不同的方式实例化关系表示的理解,在这项工作中,我们使用了功能磁共振成像和多体素模式分析来检查视觉关系的神经表示与项目和对象属性域中的特定于信息。特定于项目的空间信息对于操作和功能绑定必不可少。空间关系信息对于独立于视图的识别和空间推理是必需的。有关对象属性(例如大小和亮度)的项特定信息对于诸如对象或场景识别之类的任务是必需的。有关对象之间的相对特征值的信息对于在不同查看条件下进行识别以及进行推理和泛化而言是必需的。受试者在简单的视觉场景上执行了延迟识别工作记忆任务,该视觉场景在不同条件下仅在要编码的信息类型上有所不同。在空间领域中,我们发现项目和关系之间存在双重分离:项目特定处理牵涉到包括上额沟和顶内沟在内的额顶前注意网络,关系处理优先招募认知控制网络,尤其是外侧额前皮层和下顶叶小叶。此外,模式分类显示该关系的实际含义可以在这些相同区域内解码,最清楚的是在后外侧前额叶皮层中。这些结果表明,空间关系信息被维护为与对象位置不同的信息类型,并支持前额叶皮层组织的分层表示形式。相反,在非空间对象域中,我们发现项目和关系任务都以相似的程度激活了视觉和顶叶皮层。但是,多元方法可以识别可区分的神经种群,这些种群代表这些区域内的项目和相关信息。此外,建模结果表明,特定项和相对大小表示在顶叶皮层内共享一个通用表示方案。总之,这些发现表明关系处理和特定于项目的处理通常是紧密相关的,但同时也揭示了至少某些类型的关系,当需要显式,象征性处理时,它们的表述在前额叶皮层中得以维持并以定性不同的方式使用。 ,从而为人类认知和前额叶皮层组织模型提供信息。

著录项

  • 作者单位

    The Johns Hopkins University.;

  • 授予单位 The Johns Hopkins University.;
  • 学科 Biology Neuroscience.;Psychology Cognitive.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 93 p.
  • 总页数 93
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:40

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