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Preferential coding of eye/hand motor actions in the human ventral. occipito-temporal cortex

机译:人体腹侧眼/手运动功能的优先编码。枕颞皮质

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The human ventral occipito-temporal cortex (OTC) contains areas specialized for particular perceptual/ semantic categories, such as faces (fusiform face area, FFA) and places (parahippocampal place area, PPA). This organization has been interpreted as reflecting the visual structure of the world, i.e. perceptual similarity and/or eccentricity biases. However, recent functional magnetic resonance imaging (fMRI) studies have shown not only that regions of the OTC are modulated by non-visual, action-related object properties but also by motor planning and execution, although the functional role and specificity of this motor-related activity are still unclear. Here, through a reanalysis of previously published data, we tested whether the selectivity for perceptual/semantic categories in the OTC corresponds to a preference for particular motor actions. The results demonstrate for the first time that face-and place-selective regions of the OTC exhibit preferential BOLD response to the execution of hand pointing and saccadic eye movements, respectively. Moreover, multivariate analyses provide novel evidence for the consistency across neural representations of stimulus category and movement effector in OTC. According to a 'spatial hypothesis', this pattern of results originates from the match between the region eccentricity bias and the typical action space of the motor effectors. Alternatively, the double dissociation may be caused by the different effect produced by hand vs. eye movements on regions coding for body representation. Overall, the present findings offer novel insights on the coupling between visual and motor cortical representations.
机译:人腹枕颞皮(OTC)包含专门用于特定感知/语义类别的区域,例如面部(梭形面部区域,FFA)和位置(海马旁位置区域,PPA)。该组织已被解释为反映了世界的视觉结构,即感知相似性和/或偏心偏见。但是,最近的功能磁共振成像(fMRI)研究不仅表明OTC的区域受非视觉的,与动作有关的对象属性的调节,而且还受运动计划和执行的调节,尽管这种运动的功能和特异性相关活动仍不清楚。在这里,通过重新分析以前发布的数据,我们测试了OTC中对感知/语义类别的选择性是否对应于对特定动作的偏好。结果首次证明,OTC的脸部和位置选择区域分别表现出对手指指向和眼跳运动的优先BOLD响应。此外,多变量分析为OTC中刺激类别和运动效应器的神经表示之间的一致性提供了新的证据。根据“空间假设”,这种结果模式源自区域偏心偏差与运动效应器的典型作用空间之间的匹配。可替代地,双重解离可能是由手与眼的运动在编码身体表示的区域上产生的不同效果引起的。总体而言,目前的发现为视觉和运动皮层表征之间的耦合提供了新颖的见解。

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