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The thing that should not be: predictive coding and the uncanny valley in perceiving human and humanoid robot actions

机译:不应做的事情:预测性编码和感知人类和类人机器人动作的奇异谷

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摘要

Using functional magnetic resonance imaging (fMRI) repetition suppression, we explored the selectivity of the human action perception system (APS), which consists of temporal, parietal and frontal areas, for the appearance and/or motion of the perceived agent. Participants watched body movements of a human (biological appearance and movement), a robot (mechanical appearance and movement) or an android (biological appearance, mechanical movement). With the exception of extrastriate body area, which showed more suppression for human like appearance, the APS was not selective for appearance or motion per se. Instead, distinctive responses were found to the mismatch between appearance and motion: whereas suppression effects for the human and robot were similar to each other, they were stronger for the android, notably in bilateral anterior intraparietal sulcus, a key node in the APS. These results could reflect increased prediction error as the brain negotiates an agent that appears human, but does not move biologically, and help explain the ‘uncanny valley’ phenomenon.
机译:使用功能磁共振成像(fMRI)重复抑制,我们探索了人类动作感知系统(APS)的选择性,该系统由颞,顶和额叶区域组成,用于感知主体的出现和/或运动。参与者观看了人类的身体运动(生物学的外观和运动),机器人(机械的外观和运动)或机器人(生物的外观,机械运动)。除了过大的身体区域对人的外表表现出更多的抑制作用外,APS本身对外表或运动没有选择性。取而代之的是,发现了对外观和运动之间不匹配的独特反应:尽管对人和机器人的抑制效果彼此相似,但对于机器人,它们的抑制效果更强,特别是在APS的关键节点双侧前壁顶沟中。这些结果可能反映出预测误差的增加,因为大脑会与看起来像人但不具有生物移动性的物质进行协商,并有助于解释“奇异谷”现象。

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  • 来源
    《Social Cognitive and Affective Neuroscience》 |2012年第4期|p.413-422|共10页
  • 作者单位

    1Department of Cognitive Science and Neurosciences Program, University of California, San Diego, La Jolla, CA, USA, 2Wellcome Trust Centre for Neuroimaging, University College London, London, UK, 3Mediterranean Institute for Cognitive Neuroscience (INCM), CNRS - Aix-Marseille Université, Marseille, France, 4Department of Systems Innovation, Osaka University, Osaka, Japan, 5Intelligent Robotics and Communication Laboratories, ATR, Keihanna Science City, Kyoto, Japan, and 6University of Aarhus, Denmark;

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