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利用布洛卡区的脑电图β-1功率和θ/β比值来确诊儿童注意力缺陷多动障碍。

Use of EEG Beta-1 Power and Theta/Beta Ratio Over Broca's Area to confirm Diagnosis of Attention Deficit/Hyperactivity Disorder in Children.

作者信息

Sangal R Bart, Sangal JoAnne M

机构信息

Attention Disorders Institute, Sterling Heights, MI, USA Oakland University William Beaumont School of Medicine, Rochester, MI, USA

Attention Disorders Institute, Sterling Heights, MI, USA.

出版信息

Clin EEG Neurosci. 2015 Jul;46(3):177-82. doi: 10.1177/1550059414527284. Epub 2014 Jun 26.

Abstract

The Food and Drug Administration has approved a medical device using the electroencephalogram (EEG) theta/beta ratio (tbr) to help assess pediatric attention deficit/hyperactivity disorder (ADHD). Tbr is reported to be higher in ADHD, with increased theta and decreased beta. This study examined theta and beta-1 power differences between ADHD and normal children, during tasks of selective attention, and elucidated topographical differences. EEGs were collected from 28 normal and 58 ADHD children, aged 6 to 14 years, using 31 scalp electrodes during auditory and visual tasks requiring selective attention. Spectral analysis was performed. Tbr was higher in ADHD than in normal children (2.60 vs 2.25, P = .007), with lower beta-1 (3.66 vs 4.22, P = .01), but no difference in theta power. There was lower beta-1 (P < .001) and higher tbr (P = .002) over Broca's area (electrode locations F7 and FC5). Beta-1 power over Broca's area was the best diagnostic test, with sensitivity 0.86 and specificity 0.57. Tbr is higher and beta-1 power lower in ADHD than in normal children, especially over Broca's area. Beta-1 power and tbr assist in confirming the diagnosis of ADHD in a sample with moderate pretest probability of ADHD.

摘要

美国食品药品监督管理局已批准一款使用脑电图(EEG)θ/β比率(tbr)来帮助评估小儿注意力缺陷多动障碍(ADHD)的医疗器械。据报道,ADHD患者的tbr较高,θ增加而β减少。本研究检查了ADHD儿童与正常儿童在选择性注意任务期间的θ和β1功率差异,并阐明了地形差异。在需要选择性注意的听觉和视觉任务期间,使用31个头皮电极从28名6至14岁的正常儿童和58名ADHD儿童中收集脑电图。进行了频谱分析。ADHD儿童的tbr高于正常儿童(2.60对2.25,P = 0.007),β1较低(3.66对4.22,P = 0.01),但θ功率无差异。在布罗卡区(电极位置F7和FC5),β1较低(P < 0.001)且tbr较高(P = 0.002)。布罗卡区的β1功率是最佳诊断测试,敏感性为0.86,特异性为0.57。与正常儿童相比,ADHD儿童的tbr更高,β1功率更低,尤其是在布罗卡区。在ADHD预测试概率中等的样本中,β1功率和tbr有助于确诊ADHD。

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