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Neural synchrony indexes disordered perception and cognition in schizophrenia

机译:神经同步指数对精神分裂症患者知觉和认知的影响

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Current views of schizophrenia suggest that it results from abnormalities in neural circuitry, but empirical evidence in the millisecond range of neural activity has been difficult to obtain. In pursuit of relevant evidence, we previously demonstrated that schizophrenia is associated with abnormal patterns of stimulus-evoked phase-locking of the electroencephalogram in the γ band (30-100 Hz). These patterns may reflect impairments in neural assemblies, which have been proposed to use γ-band oscillations as a mechanism for synchronization. Here, we report the unique finding that, in both healthy controls and schizophrenia patients, visual Gestalt stimuli elicit a γ-band oscillation that is phase-locked to reaction time and hence may reflect processes leading to conscious perception of the stimuli. However, the frequency of this oscillation is lower in schizophrenics than in healthy individuals. This finding suggests that, although synchronization must occur for perception of the Gestalt, it occurs at a lower frequency because of a reduced capability of neural networks to support high-frequency synchronization in the brain of schizophrenics. Furthermore, the degree of phase locking of this oscillation is correlated with visual hallucinations, thought disorder, and disorganization in the schizophrenia patients. These data provide support for linking dysfunctional neural circuitry and the core symptoms of schizophrenia.
机译:当前对精神分裂症的看法表明,它是由神经回路异常引起的,但很难获得神经活动毫秒级的经验证据。在寻求相关证据时,我们先前证明了精神分裂症与γ波段(30-100 Hz)的脑电图的刺激诱发锁相的异常模式有关。这些模式可能反映了神经装配中的损伤,已提出将其使用γ波段振荡作为同步机制。在这里,我们报告了一个独特的发现,即在健康对照者和精神分裂症患者中,视觉格式塔刺激均会引起γ波段振荡,该波段与反应时间锁相,因此可能反映出导致有意识地感知刺激的过程。但是,这种精神分裂症的发作频率要比健康个体低。该发现表明,尽管同步必须发生以感知格式塔,但由于神经网络支持精神分裂症患者大脑中的高频同步的能力降低,因此同步发生的频率较低。此外,这种振荡的锁相程度与精神幻觉症患者的视觉幻觉,思想障碍和混乱有关。这些数据为联系功能障碍的神经回路和精神分裂症的核心症状提供了支持。

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