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When Action Observation Facilitates Visual Perception: Activation in Visuo-Motor Areas Contributes to Object Recognition

机译:当动作观察有助于视觉感知时:Visuo-Motor区域中的激活有助于物体识别

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摘要

Recent evidence suggests an interaction between the ventral visual-perceptual and dorsal visuo-motor brain systems during the course of object recognition. However, the precise function of the dorsal stream for perception remains to be determined. The present study specified the functional contribution of the visuo-motor system to visual object recognition using functional magnetic resonance imaging and event-related potential (ERP) during action priming. Primes were movies showing hands performing an action with an object with the object being erased, followed by a manipulable target object, which either afforded a similar or a dissimilar action (congruent vs. incongruent condition). Participants had to recognize the target object within a picture-word matching task. Priming-related reductions of brain activity were found in frontal and parietal visuo-motor areas as well as in ventral regions including inferior and anterior temporal areas. Effective connectivity analyses suggested functional influences of parietal areas on anterior temporal areas. ERPs revealed priming-related source activity in visuo-motor regions at about 120 ms and later activity in the ventral stream at about 380 ms. Hence, rapidly initiated visuo-motor processes within the dorsal stream functionally contribute to visual object recognition in interaction with ventral stream processes dedicated to visual analysis and semantic integration.
机译:最近的证据表明,在物体识别过程中,腹侧视觉感知和背侧视觉运动脑系统之间存在相互作用。然而,背流对感知的精确功能仍有待确定。本研究指定了视觉运动系统在视觉动作识别过程中使用功能性磁共振成像和事件相关电位(ERP)对视觉对象识别的功能性贡献。质数是电影,影片显示了手在擦除对象的情况下对对象执行操作,然后是可操作的目标对象,该对象提供了相似或不相似的操作(一致与不一致的条件)。参与者必须在图片-单词匹配任务中识别目标对象。在额叶和顶叶视觉运动区域以及腹腔区域(包括下颞叶区域和前颞叶区域)发现了与启动有关的大脑活动减少。有效的连通性分析表明顶叶区对前颞区的功能影响。 ERPs在约120毫秒时揭示了视觉运动区域中与启动有关的源活动,而在约380毫秒时在腹侧流中发现了与启动有关的源活动。因此,背侧流中快速启动的视觉运动过程与致力于视觉分析和语义整合的腹侧流过程相互作用,在功能上有助于视觉对象识别。

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