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首页> 外文期刊>PLoS Computational Biology >Locus Coeruleus tracking of prediction errors optimises cognitive flexibility: An Active Inference model
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Locus Coeruleus tracking of prediction errors optimises cognitive flexibility: An Active Inference model

机译:蓝斑跟踪预测错误可优化认知灵活性:一种主动推理模型

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Author summary The brain uses sensory information to build internal models and make predictions about the world. When errors of prediction occur, models must be updated to ensure desired outcomes are still achieved. Neuromodulator chemicals provide a possible pathway for triggering such changes in brain state. One such neuromodulator, noradrenaline, originates predominantly from a cluster of neurons in the brainstem the locus coeruleus (LC) and plays a key role in behaviour, for instance, in determining the balance between exploiting or exploring the environment. Here we use Active Inference (AI), a mathematical model of perception and action, to formally describe LC function. We propose that LC activity is triggered by errors in prediction and that the subsequent release of noradrenaline alters the rate of learning about the environment. Biologically, this describes an LC-cortex feedback loop promoting behavioural flexibility in times of uncertainty. We model LC output as a simulated animal performs two tasks known to elicit archetypal responses. We find that experimentally observed 'phasic' and 'tonic' patterns of LC activity emerge naturally, and that modulation of learning rates improves task performance. This provides a simple, unified computational account of noradrenergic computational function within a general model of behaviour.
机译:作者摘要大脑使用感觉信息来建立内部模型并做出有关世界的预测。当发生预测错误时,必须更新模型以确保仍能达到期望的结果。神经调节剂化学物质提供了触发这种大脑状态变化的可能途径。一种这样的神经调节剂,去甲肾上腺素,主要起源于蓝斑脑(LC)脑干中的一簇神经元,并且在行为中起着关键作用,例如,在确定开发或探索环境之间的平衡中。在这里,我们使用主动推理(AI)(一种感知和行动的数学模型)来正式描述LC功能。我们建议,LC活动是由预测错误触发的,随后去甲肾上腺素的释放会改变对环境的了解率。从生物学上讲,这描述了一个LC皮质反馈回路,可在不确定时提高行为灵活性。当模拟动物执行已知引起原型反应的两项任务时,我们将LC输出建模。我们发现,实验观察到的LC活动的“阶段性”和“紧张性”模式自然而然地出现,并且学习率的调节可改善任务绩效。这在行为的一般模型内提供了去甲肾上腺素能计算功能的简单统一的计算方法。

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