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显著遗漏——对声音和触觉意外遗漏的瞳孔扩张反应。

Salient omissions-pupil dilation in response to unexpected omissions of sound and touch.

作者信息

Dercksen Tjerk T, Widmann Andreas, Wetzel Nicole

机构信息

Research Group Neurocognitive Development, Leibniz Institute for Neurobiology, Magdeburg, Germany.

Center for Behavioral Brain Sciences, Magdeburg, Germany.

出版信息

Front Psychiatry. 2023 Mar 22;14:1143931. doi: 10.3389/fpsyt.2023.1143931. eCollection 2023.

Abstract

INTRODUCTION

Recent theories describe perception as an inferential process based on internal predictive models adjusted by means of prediction violations (prediction error). To study and demonstrate predictive processing in the brain the use of unexpected stimulus omissions has been suggested as a promising approach as the evoked brain responses are uncontaminated by responses to stimuli. Here, we aimed to investigate the pupil's response to unexpected stimulus omissions in order to better understand surprise and orienting of attention resulting from prediction violation. So far only few studies have used omission in pupillometry research and results have been inconsistent.

METHODS

This study adapted an EEG paradigm that has been shown to elicit omission responses in auditory and somatosensory modalities. Healthy adults pressed a button at their own pace, which resulted in the presentation of sounds or tactile stimuli in either 88%, 50% or 0% (motor-control) of cases. Pupil size was recorded continuously and averaged to analyze the pupil dilation response associated with each condition.

RESULTS

Results revealed that omission responses were observed in both modalities in the 88%-condition compared to motor-control. Similar pupil omission responses were observed between modalities, suggesting modality-unspecific activation of the underlying brain circuits.

DISCUSSION

In combination with previous omission studies using EEG, the findings demonstrate predictive models in brain processing and point to the involvement of subcortical structures in the omission response. Our pupillometry approach is especially suitable to study sensory prediction in vulnerable populations within the psychiatric field.

摘要

引言

近期理论将感知描述为一个基于内部预测模型的推理过程,该模型通过预测误差进行调整。为了研究和证明大脑中的预测处理,有人提出使用意外刺激遗漏作为一种有前景的方法,因为诱发的脑反应不会被对刺激的反应所污染。在这里,我们旨在研究瞳孔对意外刺激遗漏的反应,以便更好地理解由预测误差引起的惊讶和注意力定向。到目前为止,只有少数研究在瞳孔测量研究中使用了遗漏,结果并不一致。

方法

本研究采用了一种脑电图范式,该范式已被证明能在听觉和体感模态中引发遗漏反应。健康成年人按照自己的节奏按下按钮,这导致在88%、50%或0%(运动控制)的情况下呈现声音或触觉刺激。连续记录瞳孔大小并进行平均,以分析与每种情况相关的瞳孔扩张反应。

结果

结果显示,与运动控制相比,在88%的情况下,两种模态中均观察到了遗漏反应。在不同模态之间观察到了类似的瞳孔遗漏反应,这表明潜在脑回路的激活不具有模态特异性。

讨论

结合先前使用脑电图的遗漏研究,这些发现证明了大脑处理中的预测模型,并指出了皮层下结构在遗漏反应中的参与。我们的瞳孔测量方法特别适合研究精神科领域中弱势群体的感觉预测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc7f/10077953/2aa18252c570/fpsyt-14-1143931-g001.jpg

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