Department of Psychology, University of Nebraska, Omaha, NE, USA; Center for Magnetoencephalography (MEG), University of Nebraska Medical Center, Omaha, NE, USA.
Department of Psychiatry, Bryan Health Medical Center, Lincoln, NE, USA; Department of Psychiatry, University of Nebraska Medical Center, Omaha, NE, USA.
Psychiatry Res. 2014 Mar 30;221(3):240-5. doi: 10.1016/j.pscychresns.2014.01.002. Epub 2014 Jan 14.
The ability to attend to particular stimuli while ignoring others is crucial in goal-directed activities and has been linked with prefrontal cortical regions, including the dorsolateral prefrontal cortex (DLPFC). Both hyper- and hypo-activation in the DLPFC has been reported in patients with attention-deficit/hyperactivity disorder (ADHD) during many different cognitive tasks, but the network-level effects of such aberrant activity remain largely unknown. Using magnetoencephalography (MEG), we examined functional connectivity between regions of the DLPFC and the modality-specific auditory cortices during an auditory attention task in medicated and un-medicated adults with ADHD, and those without ADHD. Participants completed an attention task in two separate sessions (medicated/un-medicated), and each session consisted of two blocks (attend and no-attend). All MEG data were coregistered to structural MRI, corrected for head motion, and projected into source space. Subsequently, we computed the phase coherence (i.e., functional connectivity) between DLPFC regions and the auditory cortices. We found that un-medicated adults with ADHD exhibited greater phase coherence in the beta (14-30Hz) and gamma frequency (30-56Hz) range in attend and no-attend conditions compared to controls. Stimulant medication attenuated these differences, but did not fully eliminate them. These results suggest that aberrant bottom-up processing may engulf executive resources in ADHD.
注意特定刺激而忽略其他刺激的能力在目标导向活动中至关重要,与前额叶皮质区域有关,包括背外侧前额叶皮质(DLPFC)。在许多不同的认知任务中,注意力缺陷/多动障碍(ADHD)患者的 DLPFC 都存在过度激活和低激活,但这种异常活动的网络级效应在很大程度上仍不清楚。我们使用脑磁图(MEG),在接受和未接受药物治疗的 ADHD 成年患者以及无 ADHD 的成年患者进行听觉注意力任务期间,检查了 DLPFC 区域与特定于模态的听觉皮质之间的功能连接。参与者在两个单独的会议(用药/未用药)中完成了注意力任务,每个会议由两个块(注意和不注意)组成。所有 MEG 数据都与结构 MRI 配准,校正头部运动,并投射到源空间。随后,我们计算了 DLPFC 区域和听觉皮质之间的相位相干性(即功能连接)。我们发现,与对照组相比,未接受药物治疗的 ADHD 成年患者在注意和不注意条件下的β(14-30Hz)和γ(30-56Hz)频带中的相位相干性更高。兴奋剂药物减轻了这些差异,但并未完全消除这些差异。这些结果表明,异常的下行加工可能会消耗 ADHD 中的执行资源。