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最优注意调节决策策略解释了人类的凝视行为。

Optimal policy for attention-modulated decisions explains human fixation behavior.

机构信息

Department of Neurobiology, Harvard Medical School, Boston, United States.

Division of Biostatistics and Bioinformatics, Department of Family Medicine and Public Health, UC San Diego School of Medicine, La Jolla, United States.

出版信息

Elife. 2021 Mar 26;10:e63436. doi: 10.7554/eLife.63436.

Abstract

Traditional accumulation-to-bound decision-making models assume that all choice options are processed with equal attention. In real life decisions, however, humans alternate their visual fixation between individual items to efficiently gather relevant information (Yang et al., 2016). These fixations also causally affect one's choices, biasing them toward the longer-fixated item (Krajbich et al., 2010). We derive a normative decision-making model in which attention enhances the reliability of information, consistent with neurophysiological findings (Cohen and Maunsell, 2009). Furthermore, our model actively controls fixation changes to optimize information gathering. We show that the optimal model reproduces fixation-related choice biases seen in humans and provides a Bayesian computational rationale for this phenomenon. This insight led to additional predictions that we could confirm in human data. Finally, by varying the relative cognitive advantage conferred by attention, we show that decision performance is benefited by a balanced spread of resources between the attended and unattended items.

摘要

传统的累积到边界决策模型假设所有选择选项都以相同的注意力进行处理。然而,在现实生活决策中,人类会在各个项目之间交替进行视觉固定,以有效地收集相关信息(Yang 等人,2016 年)。这些固定也会对人的选择产生因果影响,使他们偏向于固定时间更长的项目(Krajbich 等人,2010 年)。我们推导出一种规范性决策模型,其中注意力增强了信息的可靠性,与神经生理学发现一致(Cohen 和 Maunsell,2009 年)。此外,我们的模型主动控制固定点变化以优化信息收集。我们表明,最优模型再现了人类中观察到的与固定相关的选择偏差,并为这种现象提供了贝叶斯计算原理。这一见解导致了我们可以在人类数据中确认的其他预测。最后,通过改变注意力赋予的相对认知优势,我们表明决策表现受益于在关注和非关注项目之间资源的平衡分布。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec9c/8064754/75b69ae5418e/elife-63436-fig1.jpg

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