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Pupil-linked phasic arousal evoked by violation but not emergence of regularity within rapid sound sequences

机译:因违规而引起的与学生相关的阶段性唤醒但在快速声音序列中未出现规律性

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摘要

The ability to track the statistics of our surroundings is a key computational challenge. A prominent theory proposes that the brain monitors for unexpected uncertainty – events which deviate substantially from model predictions, indicating model failure. Norepinephrine is thought to play a key role in this process by serving as an interrupt signal, initiating model-resetting. However, evidence is from paradigms where participants actively monitored stimulus statistics. To determine whether Norepinephrine routinely reports the statistical structure of our surroundings, even when not behaviourally relevant, we used rapid tone-pip sequences that contained salient pattern-changes associated with abrupt structural violations vs. emergence of regular structure. Phasic pupil dilations (PDR) were monitored to assess Norepinephrine. We reveal a remarkable specificity: When not behaviourally relevant, only abrupt structural violations evoke a PDR. The results demonstrate that Norepinephrine tracks unexpected uncertainty on rapid time scales relevant to sensory signals.
机译:跟踪周围环境统计数据的能力是一项关键的计算挑战。一项著名的理论提出,大脑要监视意想不到的不确定性,即与模型预测有很大出入的事件,表明模型失败。去甲肾上腺素被认为在这一过程中起着关键作用,它起着中断信号的作用,启动了模型的复位。但是,证据来自参与者积极监控刺激统计数据的范例。为了确定去甲肾上腺素是否定期报告我们周围环境的统计结构,即使在行为上不相关时,我们使用了快速音调点序列,该序列包含与突然的结构违例和规则结构的出现相关的显着模式变化。监测瞳孔扩张(PDR)以评估去甲肾上腺素。我们揭示了一个惊人的特殊性:在行为上不相关时,只有突然的结构违规会引起PDR。结果表明,去甲肾上腺素在与感觉信号有关的快速时间尺度上追踪出乎意料的不确定性。

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