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Body Patches in Inferior Temporal Cortex Encode Categories with Different Temporal Dynamics

机译:下颞叶皮质的身体补丁编码具有不同时间动态的类别

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摘要

An unresolved question in cognitive neuroscience is how representations of object categories at different levels (basic and superordinate) develop during the course of the neural response within an area. To address this, we decoded categories of different levels from the spiking responses of populations of neurons recorded in two fMRI-defined body patches in the macaque STS. Recordings of the two patches were made in the same animals with the same stimuli. Support vector machine classifiers were trained at brief response epochs and tested at the same or different epochs, thus assessing whether category representations change during the course of the response. In agreement with hierarchical processing within the body patch network, the posterior body patch mid STS body (MSB) showed an earlier onset of categorization compared with the anterior body patch anterior STS body (ASB), irrespective of the categorization level. Decoding of the superordinate body versus nonbody categories was less dynamic in MSB than in ASB, with ASB showing a biphasic temporal pattern. Decoding of the ordinate-level category human versus monkey bodies showed similar temporal patterns in both patches. The decoding onset of superordinate categorizations involving bodies was as early as for basic-level categorization, suggesting that previously reported differences between the onset of basic and superordinate categorizations may depend on the area. The qualitative difference between areas in their dynamics of category representation may hinder the interpretation of decoding dynamics based on EEG or MEG, methods that may mix signals of different areas.
机译:认知神经科学中一个尚未解决的问题是,在区域内的神经反应过程中,不同级别(基本和上级)的对象类别的表示如何发展。为了解决这个问题,我们从猕猴STS中两个fMRI定义的身体斑块中记录的神经元群体的尖峰响应中解码了不同级别的类别。在具有相同刺激的相同动物中记录了两个斑块。支持向量机分类器在短暂的响应时期进行了训练,并在相同或不同的时期进行了测试,从而评估了类别表示在响应过程中是否发生了变化。与身体贴片网络中的分层处理相一致,与前体贴片前STS体(ASB)相比,后体贴片中STS体(MSB)显示出较早的分类开始,而与分类级别无关。与ASB相比,MSB中上级身体与非身体类别的解码动态性较差,其中ASB显示为双相时间模式。人与猴身体的纵坐标级别类别的解码在两个补丁中都显示出类似的时间模式。涉及主体的上级分类的解码开始早于基本级别的分类,这表明先前报告的基本分类和上级分类之间的差异可能取决于区域。区域之间在类别表示动力学方面的质量差异可能会阻碍基于EEG或MEG(可能会混合不同区域的信号的方法)的解码动力学的解释。

著录项

  • 来源
    《Journal of Cognitive Neuroscience》 |2019年第11期|1699-1709|共11页
  • 作者

    Kumar Satwant; Vogels Rufin;

  • 作者单位

    Katholieke Univ Leuven Leuven Belgium|Univ Texas Austin Ctr Perceptual Syst Austin TX 78712 USA;

    Katholieke Univ Leuven Leuven Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
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