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Primate Amygdala Neurons Simulate Decision Processes of Social Partners

机译:灵长类动物杏仁达拉神经元模拟社会伙伴的决策过程

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摘要

By observing their social partners, primates learn about reward values of objects. Here, we show that monkeys' amygdala neurons derive object values from observation and use these values to simulate a partner monkey's decision process. While monkeys alternated making reward-based choices, amygdala neurons encoded object-specific values learned from observation. Dynamic activities converted these values to representations of the recorded monkey's own choices. Surprisingly, the same activity patterns unfolded spontaneously before partner's choices in separate neurons, as if these neurons simulated the partner's decision-making. These "simulation neurons" encoded signatures of mutual-inhibitory decision computation, including value comparisons and value-to-choice conversions, resulting in accurate predictions of partner's choices. Population decoding identified differential contributions of amygdala subnuclei. Biophysical modeling of amygdala circuits showed that simulation neurons emerge naturally from convergence between object-value neurons and self-other neurons. By simulating decision computations during observation, these neurons could allow primates to reconstruct their social partners' mental states.
机译:通过观察他们的社会伙伴,灵长类动物学习对象的奖励价值。在这里,我们展示了猴子的amygdala神经元从观察中导出对象值,并使用这些值来模拟合作伙伴猴子的决策过程。虽然猴子交替制作基于奖励的选择,但Amygdala神经元编码了从观察中学到的对象特定的值。动态活动将这些值转换为录制的猴子自己选择的表示。令人惊讶的是,在伴侣在单独的神经元中的选择之前,相同的活动模式自发地展开,好像这些神经元模拟了合作伙伴的决策。这些“模拟神经元”编码互斥决策计算的签名,包括价值比较和价值选择转换,从而准确地预测合作伙伴选择。人口解码鉴定了Amygdala亚核的差异贡献。 Amygdala电路的生物物理学建模显示,模拟神经元自然地从物质性神经元和自我邻近神经元之间的收敛出现。通过在观察期间模拟决策计算,这些神经元可以允许灵长类动物重建其社会伙伴的心理状态。

著录项

  • 来源
    《Cell》 |2019年第4期|共28页
  • 作者单位

    Univ Cambridge Dept Physiol Dev &

    Neurosci Downing St Cambridge CB2 3DY England;

    Univ Cambridge Dept Physiol Dev &

    Neurosci Downing St Cambridge CB2 3DY England;

    Univ Cambridge Dept Physiol Dev &

    Neurosci Downing St Cambridge CB2 3DY England;

    Univ Pompeu Fabra Dept Technol &

    Informat Ctr Brain &

    Cognit Carrer Tanger 122-140 Barcelona 08018 Spain;

    Univ Cambridge Dept Physiol Dev &

    Neurosci Downing St Cambridge CB2 3DY England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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