DeDe宝 (2025-12-19 15:08):
#paper doi.org/10.1038/s41586-025-09226-1 Brain-wide representations of prior information in mouse decision-making该研究系统探索了小鼠在决策过程中如何利用先验(prior information),并首次在全脑尺度上揭示了先验的神经表征。研究令小鼠将屏幕左侧或者右侧(刺激出现在两侧的先验概率不同)的刺激移动到屏幕中央,以获得奖励或者避免惩罚。同时,研究者采集小鼠的神经元信号、眼动信号等数据。行为结果表明,小鼠能根据刺激出现的先验概率更好地完成任务,且在全脑信号中同样能解码出先验信息,解码出的先验与小鼠在0%对比度试次(即刺激和屏幕背景无差异的试次)中的选择显著相关。模型分析结果表明,小鼠的行为模式更符合action kernel model而非贝叶斯最优模型:小鼠根据过去5–6个试次的动作历史更新先验,而非根据刺激历史。综上,本研究表明小鼠在感知决策中能主动利用先验信息,且其行为策略更接近“动作核模型”而非理想贝叶斯模型。且该先验信息在全脑范围内能够被广泛解码。
Brain-wide representations of prior information in mouse decision-making
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Abstract:
Abstract The neural representations of prior information about the state of the world are poorly understood 1 . Here, to investigate them, we examined brain-wide Neuropixels recordings and widefield calcium imaging collected by the International Brain Laboratory. Mice were trained to indicate the location of a visual grating stimulus, which appeared on the left or right with a prior probability alternating between 0.2 and 0.8 in blocks of variable length. We found that mice estimate this prior probability and thereby improve their decision accuracy. Furthermore, we report that this subjective prior is encoded in at least 20% to 30% of brain regions that, notably, span all levels of processing, from early sensory areas (the lateral geniculate nucleus and primary visual cortex) to motor regions (secondary and primary motor cortex and gigantocellular reticular nucleus) and high-level cortical regions (the dorsal anterior cingulate area and ventrolateral orbitofrontal cortex). This widespread representation of the prior is consistent with a neural model of Bayesian inference involving loops between areas, as opposed to a model in which the prior is incorporated only in decision-making areas. This study offers a brain-wide perspective on prior encoding at cellular resolution, underscoring the importance of using large-scale recordings on a single standardized task.
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