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岛叶皮层听觉信息处理的时空动力学:采用Oddball 范式的颅内 EEG 研究。

Spatiotemporal dynamics of auditory information processing in the insular cortex: an intracranial EEG study using an oddball paradigm.

机构信息

Centre de Recherche du Centre Hospitalier de l'Université de Montreal (CHUM), Montreal, QC, Canada.

Département de Neurosciences, Université de Montréal, Montreal, Canada.

出版信息

Brain Struct Funct. 2020 Jun;225(5):1537-1559. doi: 10.1007/s00429-020-02072-z. Epub 2020 Apr 28.

Abstract

Functional neuroimaging studies using auditory stimuli consistently show activation of the insular cortex. However, due to the limited temporal resolution of non-invasive neuroimaging techniques, the role(s) of the insula in auditory processing remains unclear. As the anterior insula (aI) and the posterior insula (pI) have different connections and are thought to be functionally distinct, it is likely that these two areas contribute differently to auditory processing. Our study examines the spatiotemporal dynamics of auditory processing in the insula using intracranial electroencephalography (EEG). Eight epileptic patients completed two passive listening tasks and one three-stimulus auditory oddball detection task during the intracranial EEG monitoring of their drug-resistant seizures. Recordings were obtained from depth electrodes implanted in 11 insulae. Event-related potentials (ERPs) were analyzed using permutation analyses during the N100 and the P300 intervals, and modulations of alpha, theta, and gamma band responses were compared using Wilcoxon/Mann-Whitney analyses. N100 responses to auditory stimuli were mostly observed in the pI and were little affected by task conditions. Auditory target detection was associated with P300 ERPs, and alpha, theta, high- and low-gamma responses, preferentially at aI contacts. Results suggest that the aI is involved in voluntary attentional processing of task-relevant information, whereas the pI is involved in automatic auditory processing.

摘要

使用听觉刺激的功能神经影像学研究一致显示脑岛皮层的激活。然而,由于非侵入性神经影像学技术的时间分辨率有限,脑岛在听觉处理中的作用仍不清楚。由于前脑岛(aI)和后脑岛(pI)具有不同的连接,并且被认为在功能上是不同的,因此这两个区域可能对听觉处理有不同的贡献。我们的研究使用颅内脑电图(EEG)检查了脑岛中听觉处理的时空动力学。八名癫痫患者在颅内脑电图监测其耐药性癫痫发作期间完成了两个被动听力任务和一个三刺激听觉Oddball 检测任务。记录来自植入 11 个脑岛的深部电极。使用置换分析在 N100 和 P300 间隔期间分析事件相关电位(ERP),并使用 Wilcoxon/Mann-Whitney 分析比较 alpha、theta 和 gamma 波段响应的调制。听觉刺激的 N100 反应主要在前脑岛中观察到,受任务条件的影响较小。听觉目标检测与 P300 ERP 相关,alpha、theta、高和低 gamma 反应优先在 aI 接触处发生。结果表明,aI 参与与任务相关信息的自愿注意力处理,而 pI 参与自动听觉处理。

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