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The anatomy of choice: dopamine and decision-making

机译:选择的解剖结构:多巴胺与决策

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摘要

This paper considers goal-directed decision-making in terms of embodied or active inference. We associate bounded rationality with approximate Bayesian inference that optimizes a free energy bound on model evidence. Several constructs such as expected utility, exploration or novelty bonuses, softmax choice rules and optimism bias emerge as natural consequences of free energy minimization. Previous accounts of active inference have focused on predictive-coding. In this paper, we consider variational Bayes as a scheme that the brain might use for approximate Bayesian inference. This scheme provides formal constraints on the computational anatomy of inference and action, which appear to be remarkably consistent with neuroanatomy. Active inference contextualizes optimal decision theory within embodied inference, where goals become prior beliefs. For example, expected utility theory emerges as a special case of free energy minimization, where the sensitivity or inverse temperature (associated with softmax functions and quantal response equilibria) has a unique and Bayes-optimal solution. Crucially, this sensitivity corresponds to the precision of beliefs about behaviour. The changes in precision during variational updates are remarkably reminiscent of empirical dopaminergic responses—and they may provide a new perspective on the role of dopamine in assimilating reward prediction errors to optimize decision-making.
机译:本文从体现或主动推理的角度考虑目标导向的决策。我们将有限理性与近似贝叶斯推论联系起来,贝叶斯推论优化了模型证据上的自由能约束。作为自由能源最小化的自然结果,出现了一些结构,例如预期效用,探索或新颖性奖金,softmax选择规则和乐观偏见。先前有关主动推理的论述都集中在预测编码上。在本文中,我们将变分贝叶斯作为大脑可能用于近似贝叶斯推断的方案。该方案对推理和动作的计算解剖结构提供了形式上的约束,这似乎与神经解剖学非常一致。主动推理将最佳决策理论与具体推理相结合,目标成为先验信念。例如,期望效用理论作为自由能最小化的特例出现,其中灵敏度或逆温度(与softmax函数和量子响应平衡有关)具有唯一的贝叶斯最优解。至关重要的是,这种敏感性与对行为的信念的精确度相对应。变量更新过程中精度的变化非常让人联想到经验性的多巴胺能反应,它们可能为多巴胺在吸收奖励预测误差以优化决策中的作用提供新的视角。

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