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Tool manipulation knowledge is retrieved by way of the ventral visual object processing pathway

机译:通过腹侧视觉对象处理路径检索工具操作知识

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摘要

Using functional Magnetic Resonance Imaging (fMRI), we find that object manipulation knowledge is accessed by way of the ventral object processing pathway. We exploit the fact that parvocellular channels project to the ventral but not the dorsal stream, and show that increased neural responses for tool stimuli are observed in the inferior parietal lobule when those stimuli are visible only to the ventral object processing stream. In a control condition, tool-preferences were observed in a superior and posterior parietal region for stimuli titrated so as to be visible by the dorsal visual pathway. Functional connectivity analyses confirm the dissociation between sub-regions of parietal cortex according to whether their principal afferent input is via the ventral or dorsal visual pathway. These results challenge the ‘Embodied Hypothesis of Tool Recognition’, according to which tool identification critically depends on simulation of object manipulation knowledge. Instead, these data indicate that retrieval of object-associated manipulation knowledge is contingent on accessing the identity of the object, a process that is subserved by the ventral visual pathway.
机译:使用功能磁共振成像(fMRI),我们发现通过腹侧对象处理途径可以访问对象操作知识。我们利用小细胞通道投射到腹侧而不是背侧流这一事实,并表明当那些刺激仅对腹侧物体处理流可见时,在下顶叶小叶中观察到了针对工具刺激的增加的神经反应。在对照条件下,在上顶壁和后顶壁区域观察到工具偏好的刺激滴定,以便通过背侧视觉通路看到。功能连通性分析根据其主要传入输入是通过腹侧还是背侧视觉通路来确认顶叶皮层子区域之间的分离。这些结果对“工具识别的嵌入假设”提出了挑战,根据该假设,工具识别关键取决于对象操纵知识的模拟。相反,这些数据表明,与对象相关的操作知识的检索取决于访问对象的身份,而该过程由腹侧视觉路径负责。

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