神经精神疾病中大脑的α、β、γ、δ和θ振荡:生物标志物策略的建议

Erol Başar, Canan Başar-Eroğlu, Bahar Güntekin, Görsev Gülmen Yener
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引用次数: 101

摘要

近几十年来,脑振荡作为感觉-认知过程的功能基石,在神经科学中获得了巨大的重要性。研究还表明,“α”、“β”、“γ”、“δ”和“θ”频率窗的事件相关振荡(EROs)在病理大脑中高度改变,特别是在认知障碍患者中。本报告中应用的策略和方法反映了大脑的先天组织:“全脑工作”。本文介绍了诱发/事件相关光谱、诱发/ erd、相干分析和锁相等方法。该报告并不旨在涵盖所有与系统理论应用于大脑研究文献相关的策略。然而,基本的方法和概念在阿尔茨海默病(AD)、精神分裂症和双相情感障碍(BD)等几个例子中得到了应用,这些例子为寻找认知障碍的神经生理生物标志物提供了基本的陈述。结果的概述清楚地表明,必须在多个脑电图频率窗口中应用振荡方法来寻找功能性生物标志物并检测药物应用的影响。同样,根据AD患者和BD患者的结果总结,必须分析多重振荡和选择性分布的记录,并应包括多个位置。选择性分布神经网络之间的选择性连通性必须通过空间相干性来计算。因此,通过设计诊断、鉴别诊断和(预防)药物的应用策略,神经生理信息应在包括多方法和多频段的框架内进行分析。振荡和相干分析对药物/神经递质的应用产生了新的影响。与传统的宽带诱发电位和事件相关电位应用相比,可以获得更清晰和差异化的药物效应分析。
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Brain's alpha, beta, gamma, delta, and theta oscillations in neuropsychiatric diseases: proposal for biomarker strategies.

Brain oscillations have gained tremendous importance in neuroscience during recent decades as functional building blocks of sensory-cognitive processes. Research also shows that event-related oscillations (EROs) in "alpha," "beta," "gamma," "delta," and "theta" frequency windows are highly modified in pathological brains, especially in patients with cognitive impairment. The strategies and methods applied in the present report reflect the innate organization of the brain: "the whole brain work." The present paper is an account of methods such as evoked/event-related spectra, evoked/ERDs, coherence analysis, and phase-locking. The report does not aim to cover all strategies related to the systems theory applied in brain research literature. However, the essential methods and concepts are applied in several examples from Alzheimer's disease (AD), schizophrenia, and bipolar disorder (BD), and such examples lead to fundamental statements in the search for neurophysiological biomarkers in cognitive impairment. An overview of the results clearly demonstrates that it is obligatory to apply the method of oscillations in multiple electroencephalogram frequency windows in search of functional biomarkers and to detect the effects of drug applications. Again, according to the summary of results in AD patients and BD patients, multiple oscillations and selectively distributed recordings must be analyzed and should include multiple locations. Selective connectivity between selectively distributed neural networks has to be computed by means of spatial coherence. Therefore, by designing a strategy for diagnostics, the differential diagnostics, and application of (preventive) drugs, neurophysiological information should be analyzed within a framework including multiple methods and multiple frequency bands. The application of drugs/neurotransmitters gains a new impact with the analysis of oscillations and coherences. A more clear and differentiated analysis of drug effects can be attained in comparison to the application of the conventional wide-band evoked potential and event-related potential applications.

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