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Statistical context dictates the relationship between feedback-related EEG signals and learning

机译:统计背景决定了与反馈相关的脑电信号与学习之间的关系

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摘要

Learning should be adjusted according to the surprise associated with observed outcomes but calibrated according to statistical context. For example, when occasional changepoints are expected, surprising outcomes should be weighted heavily to speed learning. In contrast, when uninformative outliers are expected to occur occasionally, surprising outcomes should be less influential. Here we dissociate surprising outcomes from the degree to which they demand learning using a predictive inference task and computational modeling. We show that the P300, a stimulus-locked electrophysiological response previously associated with adjustments in learning behavior, does so conditionally on the source of surprise. Larger P300 signals predicted greater learning in a changing context, but less learning in a context where surprise was indicative of a one-off outlier (oddball). Our results suggest that the P300 provides a surprise signal that is interpreted by downstream learning processes differentially according to statistical context in order to appropriately calibrate learning across complex environments.
机译:学习应根据与观察到的结果相关的惊喜进行调整,但应根据统计背景进行调整。例如,当预期会有偶然的变化点时,应在权衡令人惊讶的结果上权衡以加速学习。相反,当预计偶尔会出现不合常理的异常值时,令人惊讶的结果应具有较小的影响力。在这里,我们从预期的推理任务和计算模型所需的学习程度中分离出令人惊讶的结果。我们表明,P300是一种与学习行为的调整有关的,刺激性锁定的电生理反应,它有条件地使人惊讶。较大的P300信号在变化的环境中预示着更多的学习,而在惊喜表示一次性异常值(oddball)的情况下,学习较少。我们的结果表明,P300提供了一个意外信号,该信号由下游学习过程根据统计上下文有差异地解释,以便在复杂环境中适当地校准学习。

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