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受影响信念的神经计算机制。

Neurocomputational mechanisms of affected beliefs.

机构信息

Department of Psychiatry and Psychotherapy, Social Neuroscience Lab, University of Lübeck, Ratzeburger Allee 160, D-23538, Lübeck, Germany.

出版信息

Commun Biol. 2022 Nov 14;5(1):1241. doi: 10.1038/s42003-022-04165-3.

Abstract

The feedback people receive on their behavior shapes the process of belief formation and self-efficacy in mastering a particular task. However, the neural and computational mechanisms of how the subjective value of self-efficacy beliefs, and the corresponding affect, influence the learning process remain unclear. We investigated these mechanisms during self-efficacy belief formation using fMRI, pupillometry, and computational modeling, and by analyzing individual differences in affective experience. Biases in the formation of self-efficacy beliefs were associated with affect, pupil dilation, and neural activity within the anterior insula, amygdala, ventral tegmental area/ substantia nigra, and mPFC. Specifically, neural and pupil responses mapped the valence of the prediction errors in correspondence with individuals' experienced affective states and learning biases during self-efficacy belief formation. Together with the functional connectivity dynamics of the anterior insula within this network, our results provide evidence for neural and computational mechanisms of how we arrive at affected beliefs.

摘要

人们在行为上收到的反馈塑造了信念形成过程和掌握特定任务的自我效能感。然而,自我效能信念的主观价值以及相应的情感如何影响学习过程的神经和计算机制仍不清楚。我们使用 fMRI、瞳孔测量和计算建模来研究这些机制,并通过分析情感体验的个体差异。自我效能信念形成过程中的偏差与情感、瞳孔扩张以及前岛叶、杏仁核、腹侧被盖区/黑质和 mPFC 内的神经活动有关。具体来说,神经和瞳孔反应映射了预测误差的效价,与个体在自我效能信念形成过程中的体验情感状态和学习偏差相对应。与该网络中前岛叶的功能连接动力学一起,我们的结果为我们如何形成受影响的信念的神经和计算机制提供了证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/800f/9663730/619ab7577805/42003_2022_4165_Fig1_HTML.jpg

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