首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Probabilistic Representation in Human Visual Cortex Reflects Uncertainty in Serial Decisions
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Probabilistic Representation in Human Visual Cortex Reflects Uncertainty in Serial Decisions

机译:人类视觉皮层中的概率表示反映了串行决策中的不确定性

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摘要

How does the brain represent the reliability of its sensory evidence? Here, we test whether sensory uncertainty is encoded in cortical population activity as the width of a probability distribution, a hypothesis that lies at the heart of Bayesian models of neural coding. We probe the neural representation of uncertainty by capitalizing on a well-known behavioral bias called serial dependence. Human observers of either sex reported the orientation of stimuli presented in sequence, while activity in visual cortex was measured with fMRI. We decoded probability distributions from population-level activity and found that serial dependence effects in behavior are consistent with a statistically advantageous sensory integration strategy, in which uncertain sensory information is given less weight. More fundamentally, our results suggest that probability distributions decoded from human visual cortex reflect the sensory uncertainty that observers rely on in their decisions, providing critical evidence for Bayesian theories of perception.
机译:大脑如何代表其感官证据的可靠性?在这里,我们测试感觉不确定性是否以皮质人群活动编码为概率分布的宽度,这是神经编码贝叶斯模型的核心所在的假设。通过利用称为串行依赖的知名行为偏差,探讨了不确定性的神经表征。任何性别的人类观察者报告了序列呈列的刺激的取向,而使用FMRI测量可视皮质中的活性。我们解码了人口级活动的概率分布,发现行为中的串行依赖性效应与统计上有利的感官积分策略一致,其中不确定的感觉信息给出了更少的重量。更基本的是,我们的结果表明,从人类视觉皮层解码的概率分布反映了观察者依赖于决策的感官不确定性,为贝叶斯的感知理论提供了重要证据。

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