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首页> 外文期刊>Clinical neurophysiology >Time-variant analysis of phase couplings and amplitude-frequency dependencies of and between frequency components of EEG burst patterns in full-term newborns.
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Time-variant analysis of phase couplings and amplitude-frequency dependencies of and between frequency components of EEG burst patterns in full-term newborns.

机译:足月新生儿脑电图猝发模式的频率分量及其之间的相位耦合和幅度频率依存关系的时变分析。

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摘要

OBJECTIVE: Burst activity of the 'trace alternant' (TA) EEG pattern in the quiet sleep of full-term newborns is investigated to explore the timing and the time-variant coupling characteristics of and between a burst's oscillatory components. The working hypothesis is that signal properties provide information about the neuronal initiation processes of the burst, and about the coupling and interrelation dynamics between cortical low-frequency oscillations and high-frequency spindles in thalamic structures which substantially contribute to the burst pattern. METHODS: For time-variant phase-locking index (PLI), phase-synchronization index (PSI), quadratic phase coupling (QPC) measures, and amplitude-frequency dependency analyses the Gabor and the Hilbert transformation, both implemented as fast Fourier transformation-based approaches, were used. Additionally, models of mutually coupled Duffing oscillators were adapted to the burst data derived from the neonates ('measured bursts'), and the corresponding 'modeled burst' simulations were analyzed in comparison to the measured bursts. RESULTS: A strong phase-locking of the high-frequency oscillations and synchronization between low- and high-frequency oscillatory activity at burst onset can be observed. The QPC courses and the amplitude of all oscillations rise slightly before or at the burst onset and reach their maximum within the following 1-3 s after onset. Additionally, correlative envelope-envelope and envelope-frequency couplings within and between the burst oscillations can be demonstrated. All theses time-variant signal properties can be simulated by the model. CONCLUSIONS: The amplitude-independent phase measures point to a phase stabilization of high-frequency oscillatory activity which occurs before the initiation of the low-frequency oscillation. This finding points to a trigger process in which the thalamus is initially involved. After burst onset the cortical low-frequency oscillation modulates the high-frequency oscillatory activities, where modulation and additional coupling effects can be explained by three mutually coupled oscillators. SIGNIFICANCE: The model-based analysis strategy offers an up-to-date methodological guideline and sets a new standard of analysis for the investigation of EEG patterns and event-related potentials.
机译:目的:研究足月新生儿安静睡眠中“痕量交替”(TA)EEG模式的爆发活动,以探讨爆发振荡成分之间的时间和时变耦合特征。可行的假设是,信号属性提供有关爆发的神经元启动过程以及丘脑结构中皮质低频振荡与高频纺锤之间的耦合和相互关系动力学的信息,这些信息实质上有助于爆发模式。方法:对于时变锁相指数(PLI),相位同步指数(PSI),二次相位耦合(QPC)措施以及幅度频率相关性分析,Gabor和Hilbert变换均实现为快速傅里叶变换,基于方法。此外,相互耦合的Duffing振荡器的模型适用于新生儿的突发数据(“测得的突发”),并与测得的突发进行了比较,分析了相应的“建模突发”仿真。结果:在爆发开始时,可​​以观察到高频振荡的强烈锁相以及低频和高频振荡活动之间的同步。 QPC过程和所有振荡的振幅在爆发开始之前或爆发时稍有上升,并在爆发后的1-3 s内达到最大值。另外,可以证明在突发振荡之内和之间的相关包络-包络和包络-频率耦合。该模型可以模拟所有这些时变信号特性。结论:与振幅无关的相位测量表明,高频振荡活动的相位稳定发生在低频振荡开始之前。这一发现表明了最初涉及丘脑的触发过程。突发发作后,皮质低频振荡会调制高频振荡活动,其中调制和其他耦合效应可以通过三个相互耦合的振荡器来解释。重要性:基于模型的分析策略提供了最新的方法学指南,并为脑电图模式和事件相关电位的研究设定了新的分析标准。

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