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多巴胺神经元对奖励概率和不确定性的离散编码。

Discrete coding of reward probability and uncertainty by dopamine neurons.

作者信息

Fiorillo Christopher D, Tobler Philippe N, Schultz Wolfram

机构信息

Institute of Physiology, University of Fribourg, CH-1700 Fribourg, Switzerland.

出版信息

Science. 2003 Mar 21;299(5614):1898-902. doi: 10.1126/science.1077349.

Abstract

Uncertainty is critical in the measure of information and in assessing the accuracy of predictions. It is determined by probability P, being maximal at P = 0.5 and decreasing at higher and lower probabilities. Using distinct stimuli to indicate the probability of reward, we found that the phasic activation of dopamine neurons varied monotonically across the full range of probabilities, supporting past claims that this response codes the discrepancy between predicted and actual reward. In contrast, a previously unobserved response covaried with uncertainty and consisted of a gradual increase in activity until the potential time of reward. The coding of uncertainty suggests a possible role for dopamine signals in attention-based learning and risk-taking behavior.

摘要

不确定性在信息度量以及评估预测准确性方面至关重要。它由概率P决定,在P = 0.5时最大,并在概率更高和更低时降低。通过使用不同的刺激来指示奖励概率,我们发现多巴胺神经元的相位激活在整个概率范围内单调变化,支持了过去的观点,即这种反应编码了预测奖励与实际奖励之间的差异。相比之下,一种先前未观察到的反应与不确定性相关,包括在奖励可能出现的时间之前活动逐渐增加。不确定性的编码表明多巴胺信号在基于注意力的学习和冒险行为中可能发挥作用。

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