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Active Sensing: Reduced frontal theta oscillations indicate altered crossmodal prediction error processing in schizophrenia

机译:主动感应:额叶theta震荡减小表明精神分裂症的交叉峰预测误差处理改变

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摘要

Our brain generates predictions about forthcoming stimuli and compares predicted with incoming input. Failures in predicting events might contribute to hallucinations and delusions in schizophrenia (SZ). When a stimulus violates prediction, neural activity that reflects prediction error (PE) processing is found. While PE processing deficits have been reported in unisensory paradigms, it is unknown whether SZ patients (SZP) show altered crossmodal PE processing. We measured high-density electroencephalography and applied source estimation approaches to investigate crossmodal PE processing generated by audiovisual speech. In SZP and healthy control participants (HC), we used an established paradigm in which high- and low-predictive visual syllables were paired with congruent or incongruent auditory syllables. We examined crossmodal PE processing in SZP and HC by comparing differences in event-related potentials and neural oscillations between incongruent and congruent high- and low-predictive audiovisual syllables. In both groups event-related potentials between 206 and 250 ms were larger in high- compared with low-predictive syllables, suggesting intact audiovisual incongruence detection in the auditory cortex of SZP. The analysis of oscillatory responses revealed theta-band (4–7 Hz) power enhancement in high- compared with low-predictive syllables between 230 and 370 ms in the frontal cortex of HC but not SZP. Thus aberrant frontal theta-band oscillations reflect crossmodal PE processing deficits in SZ. The present study suggests a top-down multisensory processing deficit and highlights the role of dysfunctional frontal oscillations for the SZ psychopathology.
机译:我们的大脑生成有关即将到来的刺激的预测,并将预测的结果与传入的输入进行比较。未能预测事件可能会导致精神分裂症(SZ)的幻觉和妄想。当刺激违反预测时,会发现反映预测错误(PE)处理的神经活动。虽然在单感觉范式中已经报道了PE加工缺陷,但尚不清楚SZ患者(SZP)是否表现出改变的交叉峰PE加工。我们测量了高密度脑电图和应用源估计方法来调查视听语音产生的交叉模式PE处理。在SZP和健康对照者(HC)中,我们使用了既定的范例,其中高预测性和低预测性的视觉音节与一致或不一致的听觉音节配对。我们通过比较不一致和一致的高预测性和低预测性视听音节之间的事件相关电位和神经振荡的差异,研究了SZP和HC中的交叉模式PE处理。在两组中,与低预测音节相比,事件相关电位在206至250毫秒之间较高,这表明SZP听觉皮层完整的视听不一致。振荡响应分析表明,在HC额叶皮层中,在230和370 ms之间,与低预测音节相比,theta频段(4–7 Hz)功率增强,而SZP则没有。因此,异常的前θ带振荡反映了SZ中交叉模态PE处理的缺陷。本研究表明自上而下的多感觉处理缺陷,并强调功能异常的额叶振荡对SZ精神病理学的作用。

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