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作为在奇偶数范式中对精度进行操控的标准音调稳定性:对固定概率偏差的预测误差反应的调制。

Standard Tone Stability as a Manipulation of Precision in the Oddball Paradigm: Modulation of Prediction Error Responses to Fixed-Probability Deviants.

作者信息

SanMiguel Iria, Costa-Faidella Jordi, Lugo Zulay R, Vilella Elisabet, Escera Carles

机构信息

Brainlab-Cognitive Neuroscience Research Group, Department of Clinical Psychology and Psychobiology, University of Barcelona, Barcelona, Spain.

Institute of Neurosciences, University of Barcelona, Barcelona, Spain.

出版信息

Front Hum Neurosci. 2021 Sep 28;15:734200. doi: 10.3389/fnhum.2021.734200. eCollection 2021.

Abstract

Electrophysiological sensory deviance detection signals, such as the mismatch negativity (MMN), have been interpreted from the predictive coding framework as manifestations of prediction error (PE). From a frequentist perspective of the classic oddball paradigm, deviant stimuli are unexpected because of their low probability. However, the amount of PE elicited by a stimulus can be dissociated from its probability of occurrence: when the observer cannot make confident predictions, any event holds little surprise value, no matter how improbable. Here we tested the hypothesis that the magnitude of the neural response elicited to an improbable sound (D) would scale with the precision of the prediction derived from the repetition of another sound (S), by manipulating repetition stability. We recorded the Electroencephalogram (EEG) from 20 participants while passively listening to 4 types of isochronous pure tone sequences differing in the probability of the S tone (880 Hz) while holding constant the probability of the D tone [1,046 Hz; p(D) = 1/11]: Oddball [p(S) = 10/11]; High confidence (7/11); Low confidence (4/11); and Random (1/11). Tones of 9 different frequencies were equiprobably presented as fillers [p(S) + p(D) + p(F) = 1]. Using a mass-univariate non-parametric, cluster-based correlation analysis controlling for multiple comparisons, we found that the amplitude of the deviant-elicited ERP became more negative with increasing S probability, in a time-electrode window consistent with the MMN (ca. 120-200 ms; frontal), suggesting that the strength of a PE elicited to an improbable event indeed increases with the precision of the predictive model.

摘要

电生理感觉偏差检测信号,如失配负波(MMN),已从预测编码框架的角度被解释为预测误差(PE)的表现。从经典奇偶数范式的频率主义观点来看,偏差刺激因其低概率而意外。然而,刺激引发的预测误差量可以与其发生概率分离:当观察者无法做出可靠预测时,任何事件都几乎没有惊喜价值,无论其可能性有多小。在这里,我们通过操纵重复稳定性来测试这样一个假设,即对一个不太可能出现的声音(D)引发的神经反应幅度将与从另一个声音(S)的重复中得出的预测精度成比例。我们记录了20名参与者的脑电图(EEG),他们在被动聆听4种不同类型的等时纯音序列时,S音(880赫兹)的概率不同,而D音[1046赫兹;p(D)=1/11]的概率保持不变:奇偶数范式[p(S)=10/11];高置信度(7/11);低置信度(4/11);以及随机(1/11)。9种不同频率的音调作为填充音等概率呈现[p(S)+p(D)+p(F)=1]。使用控制多重比较的基于聚类的非参数单变量质量相关分析,我们发现,在与MMN一致的时间-电极窗口(约120-200毫秒;额叶)中,偏差引发的ERP幅度随着S概率的增加而变得更负,这表明对一个不太可能发生的事件引发的预测误差强度确实随着预测模型的精度而增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2063/8505747/2a24d2f88ff7/fnhum-15-734200-g001.jpg

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