顶叶内沟
概率逻辑
计算机科学
心理学
认知心理学
颞中回
感知
额中回
认知
人工智能
信息集成
提示语
先验概率
工作记忆
神经影像学
联合概率分布
熵(时间箭头)
编码
机器学习
计算模型
楔前
认知神经科学
任务(项目管理)
框架问题
感觉系统
认知灵活性
固定(群体遗传学)
概率分布
杠杆(统计)
最大熵原理
潜变量
作者
Stephanie C. Leach,Hannah Hollow,Jiefeng Jiang,Kai Hwang
标识
DOI:10.1523/jneurosci.0989-25.2025
摘要
Adaptive behavior requires integrating information from multiple sources. These sources can originate from distinct channels, such as internally maintained latent cognitive representations or externally presented sensory cues. Because these signals are often stochastic and carry inherent uncertainty, integration is challenging. However, the neural and computational mechanisms that support the integration of such stochastic information remain unknown. We introduce a computational neuroimaging framework to elucidate how brain systems integrate internally maintained and externally cued stochastic information to guide behavior. Neuroimaging data were collected from healthy adult human participants (both male and female). Our computational model estimates trial-by-trial beliefs about internally maintained latent states and externally presented perceptual cues and then integrates them into a unified joint probability distribution. The entropy of this joint distribution quantifies overall uncertainty, which enables continuous tracking of probabilistic task beliefs, prediction errors, and updating dynamics. Results showed that latent-state beliefs are encoded in distinct regions from perceptual beliefs. Latent state beliefs were encoded in the anterior middle frontal gyrus, mediodorsal thalamus, and inferior parietal lobule, whereas perceptual beliefs were encoded in spatially distinct regions including lateral temporo-occipital areas, intraparietal sulcus, and precentral sulcus. The integrated joint probability and its entropy converged in frontoparietal hub areas, notably middle frontal gyrus and intraparietal sulcus. These findings suggest that frontoparietal hubs read out and resolve distributed uncertainty to flexibly guide behavior, revealing how frontoparietal systems implement cognitive integration.
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