Borgolte A, Sinke C, Michalke L, Möde L, Lepsy N, Wiswede D, Bleich S, Szycik G R, Ghaneirad E
Department of Psychiatry, Social Psychiatry and Psychotherapy, Hannover Medical School, Hannover, Germany.
Division of Clinical Psychology and Sexual Medicine, Department of Psychiatry, Social Psychiatry and Psychotherapy, Hannover Medical School, Hannover, Germany.
Front Psychiatry. 2024 Dec 10;15:1492266. doi: 10.3389/fpsyt.2024.1492266. eCollection 2024.
Multisensory integration (MSI) enhances perception by combining information from different sensory modalities. In schizophrenia, individuals often exhibit impaired audiovisual processing, resulting in broader temporal binding windows (TBWs) which appear to be associated with symptom severity. Since the underlying mechanisms of these aberrations are not yet fully understood, the present study aims to investigate multisensory processing in schizophrenia in more detail.
Individuals with schizophrenia (SZ) and healthy controls (HC) performed a simultaneity judgement task, a paradigm that is suitable for the examination of multisensory integration processes. The paradigm was also conducted to allow for the comparison of perceptions under ecologically valid and invalid conditions. Additionally, EEG recordings were made to explore underlying neural mechanisms.
In line with previous research, we replicated enlarged TBWs in SZ compared to HC, independent of ecological validity. Neurophysiological data further revealed reduced amplitudes in the early ERP complex N1/P2 in SZ compared to HC.
Since amplitude reduction in the N1/P2 complex is often associated with audiovisual integration processes, the results highlight perceptual dysfunction in SZ, particularly concerning the disengagement of auditory and visual stimuli.
多感官整合(MSI)通过整合来自不同感官模态的信息来增强感知。在精神分裂症中,个体常常表现出视听加工受损,导致更宽的时间绑定窗口(TBW),这似乎与症状严重程度相关。由于这些异常的潜在机制尚未完全了解,本研究旨在更详细地调查精神分裂症中的多感官加工。
精神分裂症患者(SZ)和健康对照者(HC)执行了同时性判断任务,这是一种适用于检查多感官整合过程的范式。该范式还用于比较在生态有效和无效条件下的感知。此外,进行了脑电图记录以探索潜在的神经机制。
与先前的研究一致,我们发现与HC相比,SZ中的TBW扩大,与生态有效性无关。神经生理学数据进一步显示,与HC相比,SZ中早期ERP复合波N1/P2的振幅降低。
由于N1/P2复合波的振幅降低通常与视听整合过程相关,结果突出了SZ中的感知功能障碍,特别是在听觉和视觉刺激的分离方面。