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首页> 外文期刊>Schizophrenia research >Sensory gating revisited: relation between brain oscillations and auditory evoked potentials in schizophrenia.
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Sensory gating revisited: relation between brain oscillations and auditory evoked potentials in schizophrenia.

机译:感官门控:精神分裂症的大脑振荡和听觉诱发电位之间的关系。

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Disturbances of auditory information processing have repeatedly been shown in schizophrenia. To contribute to a better understanding of the neurophysiological underpinnings of habituation in auditory processing and its disturbance in schizophrenia we used three different approaches to analyze auditory evoked responses, namely phase-locking (PL) analyses, single trial amplitudes, and averaged event-related potentials (P50 and N100). Given that brain oscillations reflect the neuronal correlates of information processing we hypothesized that PL and amplitudes reflect even more essential parts of auditory processing than the averaged ERP responses. In 32 schizophrenia patients and 32 matched controls EEG was continuously recorded using an auditory paired click paradigm. PL of the lower frequency bands (alpha and theta) was significantly reduced in patients whereas no significant differences were present in higher frequencies (gamma and beta). Alpha and theta PL and amplitudes showed a marked increase afterthe first click and to a minor degree after the second one. This habituation was more prominent in controls whereas in schizophrenia patients the response to both clicks differed only slightly. N100 suppression was significantly reduced in schizophrenia patients whereas no group differences were present with respect to the P50. This corresponded to the finding that gamma mostly contributed to the prediction of the P50 response and theta mostly to the N100 response. Our data showed that analyzing phase and amplitude in single trials provides more information on auditory information processing and reflects differences between schizophrenia patients and controls better than analyzing the averaged ERP responses.
机译:听觉信息处理的干扰已在精神分裂症中反复出现。为了更好地理解听觉加工过程中习惯性的神经生理基础及其在精神分裂症中的紊乱,我们使用了三种不同的方法来分析听觉诱发反应,即锁相(PL)分析,单次试验振幅和平均事件相关电位(P50和N100)。考虑到大脑振动反映了信息处理的神经元相关性,我们假设PL和振幅比平均ERP响应反映的是听觉处理的重要部分。在32个精神分裂症患者和32个匹配的对照中,使用听觉配对点击范例连续记录脑电图。患者的较低频段(α和θ)的PL显着降低,而较高频率(γ和β)中的PL没有显着差异。第一次点击后,α和theta PL和振幅显示出明显的增加,第二次点击后显示出较小的程度。这种习惯在对照组中更为明显,而在精神分裂症患者中,对两次点击的反应仅略有不同。精神分裂症患者的N100抑制作用显着降低,而就P50而言,两组之间无差异。这对应于以下发现:γ主要有助于预测P50反应,θ主要有助于预测N100反应。我们的数据表明,在单项试验中分析阶段和幅度可提供更多有关听觉信息处理的信息,并且比分析平均ERP反应更好地反映了精神分裂症患者和对照之间的差异。

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