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Complexity analysis of brain activity in attention-deficit/hyperactivity disorder: A multiscale entropy analysis

机译:注意缺陷/多动障碍脑活动的复杂性分析:多尺度熵分析

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The multiscale entropy (MSE) is a novel method for quantifying the intrinsic dynamical complexity of physiological systems over several scales. To evaluate this method as a promising way to explore the neural mechanisms in ADHD, we calculated the MSE in EEG activity during the designed task. EEG data were collected from 13 outpatient boys with a confirmed diagnosis of ADHD and 13 age- and gender matched normal control children during their doing multi-source interference task (MSIT). We estimated the MSE by calculating the sample entropy values of delta, theta, alpha and beta frequency bands over twenty time scales using coarse-grained procedure. The results showed increased complexity of EEG data in delta and theta frequency bands and decreased complexity in alpha frequency bands in ADHD children. The findings of this study revealed aberrant neural connectivity of kids with ADHD during interference task. The results showed that MSE method may be a new index to identify and understand the neural mechanism of ADHD. (C) 2016 Elsevier Inc. All rights reserved.
机译:多尺度熵(MSE)是一种用于在多个尺度上量化生理系统内在动力学复杂性的新颖方法。为了评估这种方法作为探索多动症神经机制的一种有前途的方法,我们在设计任务期间计算了脑电活动中的MSE。从13名门诊男童中确诊多动症,并在年龄和性别匹配的正常对照儿童中进行多源干扰任务(MSIT),收集了13例脑电图数据。我们通过使用粗粒度过程计算二十个时间范围内的增量,θ,α和β频带的样本熵值来估计MSE。结果表明,多动症儿童的脑电图数据在德尔塔和θ频段的复杂性增加,而在阿尔法频段的复杂性下降。这项研究的发现揭示了多动症儿童在干预任务中的异常神经连通性。结果表明,MSE方法可能是识别和了解ADHD神经机制的新指标。 (C)2016 Elsevier Inc.保留所有权利。

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