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Task-context-dependent Linear Representation of Multiple Visual Objects in Human Parietal Cortex

机译:顶叶皮层中多个视觉对象的任务上下文相关线性表示

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A host of recent studies have reported robust representations of visual object information in the human parietal cortex, similar to those found in ventral visual cortex. In ventral visual cortex, both monkey neurophysiology and human fMRI studies showed that the neural representation of a pair of unrelated objects can be approximated by the averaged neural representation of the constituent objects shown in isolation. In this study, we examined whether such a linear relationship between objects exists for object representations in the human parietal cortex. Using fMRI and multivoxel pattern analysis, we examined object representations in human inferior and superior intraparietal sulcus, two parietal regions previously implicated in visual object selection and encoding, respectively. We also examined responses from the lateral occipital region, a ventral object processing area. We obtained fMRI response patterns to object pairs and their constituent objects shown in isolation while participants viewed these objects and performed a 1-back repetition detection task. By measuring fMRI response pattern correlations, we found that all three brain regions contained representations for both single object and object pairs. In the lateral occipital region, the representation for a pair of objects could be reliably approximated by the average representation of its constituent objects shown in isolation, replicating previous findings in ventral visual cortex. Such a simple linear relationship, however, was not observed in either parietal region examined. Nevertheless, when we equated the amount of task information present by examining responses from two pairs of objects, we found that representations for the average of two object pairs were indistinguishable in both parietal regions from the average of another two object pairs containing the same four component objects but with a different pairing of the objects (i.e., the average of AB and CD vs. that of AD and CB). Thus, when task information was held consistent, the same linear relationship may govern how multiple independent objects are represented in the human parietal cortex as it does in ventral visual cortex. These findings show that object and task representations coexist in the human parietal cortex and characterize one significant difference of how visual information may be represented in ventral visual and parietal regions.
机译:大量最新研究报告了人顶叶皮质中视觉对象信息的可靠表示,类似于在腹侧视觉皮层中发现的信息。在腹侧视觉皮层中,猴子的神经生理学和人类功能磁共振成像研究均表明,一对无关对象的神经表示可以通过单独显示的组成对象的平均神经表示来近似。在这项研究中,我们检查了对象之间的线性关系是否存在于人类顶叶皮层中的对象表示中。使用功能磁共振成像和多体素模式分析,我们检查了人类下顶壁和上顶沟中的对象表示,这两个顶区先前分别涉及视觉对象的选择和编码。我们还检查了枕骨外侧区域(腹侧物体处理区域)的反应。我们获得了对对象对及其组成对象的fMRI响应模式,其中参与者分别查看了这些对象并执行了1-back重复检测任务。通过测量功能磁共振成像反应模式相关性,我们发现所有三个大脑区域都包含单个对象和对象对的表示。在枕骨外侧区域,可以通过单独显示其组成对象的平均表示来可靠地近似一对对象的表示,从而复制腹侧视觉皮层中的先前发现。然而,在所检查的任何顶壁区域均未观察到这种简单的线性关系。然而,当我们通过检查来自两对对象的响应来使存在的任务信息量相等时,我们发现两个顶对区域的平均值的表示与两个包含相同四个成分的对象对的平均值无法区分。对象,但对象的配对不同(即,AB和CD的平均值与AD和CB的平均值)。因此,当任务信息保持一致时,相同的线性关系可以控制在人顶叶皮层中如何表示多个独立对象,就像在腹侧视觉皮层中一样。这些发现表明,对象和任务表示在人类顶叶皮层中共存,并且表征了视觉信息如何在腹侧视觉和顶叶区域中呈现的一个显着差异。

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