Event-related oscillations reflect functional asymmetry in children with attention deficit/hyperactivity disorder.

Juliana Yordanova, Vasil Kolev, Aribert Rothenberger
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引用次数: 28

Abstract

Previous studies have found that event-related theta and gamma oscillations elicited in an auditory selective attention task are deviant in children with attention deficit/hyperactivity disorder (ADHD). It has been suggested that these deviations are associated with deficient motor inhibition in ADHD, which may lead to increased excitability of not only the motor generation networks but also the networks involved in sensory and cognitive processing of the stimulus requiring motor response. Within this suggestion, the present study used the same experimental database to compare the motor cortical activation of healthy controls and children with ADHD during the performance of the auditory selective attention task. Electroencephalography mu (8-12 Hz) activity at C3 and C4 electrodes was used as a measure of motor cortical activation. Mu power was analyzed for four stimulus conditions of the task (attended target, unattended target, attended nontarget, and unattended nontarget). It was found that motor cortical activation as reflected by mu power suppression was not overall greater in ADHD than healthy children. However, stimuli that possessed only partial target features and did not require motor responding (unattended target and attended nontarget) produced a significant reduction of mu activity in ADHD patients. These results suggest that motor cortical excitability is not generally increased in ADHD children. Rather, the co-existence of conflict features in complex stimuli induces task-irrelevant motor activation in these children. The deficient inhibition of motor cortical networks contralateral to the response may therefore be responsible for the functional asymmetry in stimulus processing in ADHD.

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事件相关振荡反映了注意缺陷/多动障碍儿童的功能不对称。
先前的研究发现,在听觉选择性注意任务中引发的事件相关的θ和γ振荡在注意缺陷/多动障碍(ADHD)儿童中是异常的。有研究表明,这些偏差与ADHD患者缺乏运动抑制有关,这可能不仅导致运动产生网络的兴奋性增加,而且导致参与刺激需要运动反应的感觉和认知处理的网络的兴奋性增加。在此建议下,本研究使用相同的实验数据库来比较健康对照和ADHD儿童在执行听觉选择性注意任务时的运动皮质激活。C3和C4电极上的脑电图(8-12 Hz)活动作为运动皮质激活的测量。分析了任务的四种刺激条件(有目标、无目标、无目标、无目标)的Mu功率。研究发现,ADHD儿童的运动皮质激活(由mu功率抑制反映)总体上并不比健康儿童大。然而,仅具有部分目标特征且不需要运动反应的刺激(无人看管的目标和有看管的非目标)会显著降低ADHD患者的mu活动。这些结果表明,多动症儿童的运动皮质兴奋性并没有普遍增加。相反,复杂刺激中冲突特征的共存诱发了这些儿童与任务无关的运动激活。因此,对侧运动皮质网络抑制不足可能是ADHD患者刺激处理功能不对称的原因。
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