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Different but complementary roles of action and gaze in action observation priming: Insights from eye- and motion-tracking measures

机译:动作和注视在动作观察引发中的不同但互补的作用:眼动追踪方法的见解

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摘要

Action priming following action observation is thought to be caused by the observed action kinematics being represented in the same brain areas as those used for action execution. But, action priming can also be explained by shared goal representations, with compatibility between observation of the agent’s gaze and the intended action of the observer. To assess the contribution of action kinematics and eye-gaze cues in the prediction of an agent’s action goal and action priming, participants observed actions where the availability of both cues was manipulated. Action observation was followed by action execution, and the congruency between the target of the agent’s and observer’s actions, and the congruency between the observed and executed action spatial location were manipulated. Eye movements were recorded during the observation phase, and the action priming was assessed using motion analysis. The results showed that the observation of gaze information influenced the observer’s prediction speed to attend to the target, and that observation of action kinematic information influenced the accuracy of these predictions. Motion analysis results showed that observed action cues alone primed both spatial incongruent and object congruent actions, consistent with the idea that the prime effect was driven by similarity between goals and kinematics. The observation of action and eye-gaze cues together induced a prime effect complementarily sensitive to object and spatial congruency. While observation of the agent’s action kinematics triggered an object-centered and kinematic-centered action representation, independently, the complementary observation of eye-gaze triggered a more fine-grained representation illustrating a specification of action kinematics toward the selected goal. Even though both cues differentially contributed to action priming, their complementary integration led to a more refined pattern of action priming.
机译:动作观察后的动作启动被认为是由于观察到的动作运动学与动作执行所使用的大脑在相同的大脑区域中表现出来的。但是,动作启动也可以通过共享目标表示来解释,在观察代理人注视和观察者预期动作之间具有兼容性。为了评估动作运动学和注视线索在预测代理人的动作目标和动作引发中的作用,参与者观察了操纵两种线索的可用性的动作。在执行动作观察之后执行动作,并操纵了代理人和观察者的动作目标之间的一致性,以及观察到的和执行的动作空间位置之间的一致性。在观察阶段记录眼动,并使用运动分析评估动作启动。结果表明,注视信息的观察会影响观察者对目标的预测速度,而动作运动学信息的观察会影响这些预测的准确性。运动分析结果表明,仅观察到的动作提示同时引发了空间不一致和对象一致动作,这与主要效果是由目标和运动学之间的相似性驱动的想法一致。观察动作和视线提示共同引起对物体和空间一致性互补敏感的主要效果。观察代理人的动作运动学可以独立地进行以对象为中心和以运动学为中心的动作表示,而对视线的互补观察可以触发更细粒度的表示,以说明针对所选目标的动作运动学规范。尽管这两个提示对动作启动的贡献不同,但它们的互补整合导致动作启动的模式更加精细。

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