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首页> 外文期刊>Frontiers in Computational Neuroscience >Bayesian Modeling of the Dynamics of Phase Modulations and their Application to Auditory Event Related Potentials at Different Loudness Scales
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Bayesian Modeling of the Dynamics of Phase Modulations and their Application to Auditory Event Related Potentials at Different Loudness Scales

机译:不同响度范围内相位调制动力学的贝叶斯建模及其在听觉事件相关电位中的应用

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摘要

We study the effect of long-term habituation signatures of auditory selective attention reflected in the instantaneous phase information of the auditory event-related potentials (ERPs) at four distinct stimuli levels of 60, 70, 80, and 90 dB SPL. The analysis is based on the single-trial level. The effect of habituation can be observed in terms of the changes (jitter) in the instantaneous phase information of ERPs. In particular, the absence of habituation is correlated with a consistently high phase synchronization over ERP trials. We estimate the changes in phase concentration over trials using a Bayesian approach, in which the phase is modeled as being drawn from a von Mises distribution with a concentration parameter which varies smoothly over trials. The smoothness assumption reflects the fact that habituation is a gradual process. We differentiate between different stimuli based on the relative changes and absolute values of the estimated concentration parameter using the proposed Bayesian model.
机译:我们研究了在60、70、80和90 dB SPL的四个不同刺激水平下,听觉事件相关电位(ERP)的瞬时相位信息反映的听觉选择性注意的长期习惯签名的影响。该分析基于单次试用级别。可以通过ERP的瞬时相位信息的变化(抖动)来观察习惯性的影响。特别是,没有习惯性与ERP试验中始终如一的高阶段同步性相关。我们使用贝叶斯方法估计试验中各相浓度的变化,其中将相建模为从浓度参数随试验平稳变化的冯·米塞斯分布中提取。平滑度假设反映了习惯化是一个渐进过程的事实。我们使用提议的贝叶斯模型,根据估计浓度参数的相对变化和绝对值,区分不同的刺激。

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