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Learning affective values for faces is expressed in amygdala and fusiform gyrus

机译:学习脸部的情感价值以杏仁核和梭状回表达

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To monitor the environment for social threat humans must build affective evaluations of others. These evaluations are malleable and to a high degree shaped by responses engendered by specific social encounters. The precise neuronal mechanism by which these evaluations are constructed is poorly understood. We tested a hypothesis that conjoint activity in amygdala and fusiform gyrus would correlate with acquisition of social stimulus value. We tested this using a reinforcement learning algorithm, Q-learning, that assigned values to faces as a function of a history of pairing, or not pairing, with aversive shocks. Behaviourally, we observed a correlation between conditioning induced changes in skin conductance response (SCR) and subjective ratings for likeability of faces. Activity in both amygdala and fusiform gyrus (FG) correlated with the output of the reinforcement learning algorithm parameterized by these ratings. In amygdala, this effect was greater for averted than direct gaze faces. Furthermore, learning-related activity change in these regions correlated with SCR and subjective ratings. We conclude that amygdala and fusiform encode affective value in a manner that closely approximates a standard computational solution to learning.
机译:为了监视环境以应对社会威胁,人类必须建立对他人的情感评价。这些评估具有延展性,并在很大程度上受到特定社交场合的回应所影响。构造这些评估的确切神经元机制知之甚少。我们检验了一个假设,杏仁核和梭状回中的联合活动将与社会刺激价值的获得相关。我们使用强化学习算法Q-learning对此进行了测试,该算法根据厌恶性电击配对或不配对的历史为面孔分配值。行为上,我们观察到调节引起的皮肤电导反应(SCR)的变化与主观评价面部的相似性之间的相关性。杏仁核和梭形回(FG)中的活动都与这些评分参数化的强化学习算法的输出相关。在杏仁核中,避免直视的效果要比直接注视的脸效果好。此外,这些区域中与学习相关的活动变化与SCR和主观评分相关。我们得出的结论是,杏仁核和梭形形式以与学习的标准计算解决方案非常接近的方式编码情感值。

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