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High-frequency oscillations in schizophrenia.

机译:精神分裂症的高频振荡。

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Neural oscillations and their synchronization may represent a versatile signal to realize flexible communication within and between cortical areas. There is extensive evidence that cognitive functions depending on coordination of distributed neural responses are associated with synchronized oscillatory activity, suggesting a functional mechanism of neural oscillations in cortical networks. In addition to their role in normal brain functioning, there is increasing evidence that altered oscillatory activity may be associated with certain neuropsychiatric disorders, such as schizophrenia, that involve dysfunctional cognition and behavior. In the present paper, the focus is on the role of high-frequency oscillations for cortical computations through establishing correlations between the modulation of oscillations in the beta/gamma frequency range and specific cognitive processes during normal brain functioning and in schizophrenia. Specifically, it is suggested that in addition to oscillations in the low (30-60 Hz) gamma-band range, gamma-band oscillations > 60 Hz may have a crucial role for the understanding of cognitive dysfunctions in schizophrenia. Perspectives for future research will be discussed in relationship to methodological issues, the utility of neural oscillations as a biomarker and the neurodevelopmental hypothesis of schizophrenia.
机译:神经振荡及其同步可能代表一种通用信号,以实现皮层区域内和皮层区域之间的灵活通信。有大量证据表明,依赖于分布式神经反应的协调的认知功能与同步振荡活动相关,这提示了皮质网络中神经振荡的功能机制。除了它们在正常脑功能中的作用外,越来越多的证据表明,振荡活动的改变可能与某些神经精神疾病有关,例如精神分裂症,涉及功能障碍的认知和行为。在本文中,重点是通过建立β/γ频率范围内的振荡调制与正常脑功能和精神分裂症中的特定认知过程之间的相关性,来研究高频振荡在皮层计算中的作用。具体来说,建议除了在低(30-60 Hz)的γ波段范围内振荡外,> 60 Hz的γ波段振荡对于理解精神分裂症的认知功能障碍也可能起关键作用。将讨论与方法学问题,神经振荡作为生物标志物的用途以及精神分裂症的神经发育假说有关的未来研究前景。

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