Yilmaz Gizem, Ungan Pekcan, Sebik Oğuz, Uginčius Paulius, Türker Kemal S
Koç University School of Medicine Sariyer, Istanbul, Turkey.
Institute of Physiology and Pharmacology, Medical Academy, Lithuanian University of Health Sciences Kaunas, Lithuania.
Front Hum Neurosci. 2014 Jul 11;8:504. doi: 10.3389/fnhum.2014.00504. eCollection 2014.
The electrical activity of muscles can interfere with the electroencephalogram (EEG) signal considering the anatomical locations of facial or masticatory muscles surrounding the skull. In this study, we evaluated the possible interference of the resting activity of the temporalis muscle on the EEG under conventional EEG recording conditions. In 9 healthy adults EEG activity from 19 scalp locations and single motor unit (SMU) activity from anterior temporalis muscle were recorded in three relaxed conditions; eyes open, eyes closed, jaw dropped. The EEG signal was spike triggered averaged (STA) using the action potentials of SMUs as triggers to evaluate their reflections at various EEG recording sites. Resting temporalis SMU activity generated prominent reflections with different amplitudes, reaching maxima in the proximity of the recorded SMU. Interference was also notable at the scalp sites that are relatively far from the recorded SMU and even at the contralateral locations. Considering the great number of SMUs in the head and neck muscles, prominent contamination from the activity of only a single MU should indicate the susceptibility of EEG to muscle activity artifacts even under the rest conditions. This study emphasizes the need for efficient artifact evaluation methods which can handle muscle interferences.
考虑到颅骨周围面部或咀嚼肌的解剖位置,肌肉的电活动会干扰脑电图(EEG)信号。在本研究中,我们评估了在传统脑电图记录条件下颞肌静息活动对脑电图的可能干扰。在9名健康成年人中,于三种放松状态下记录了19个头皮位置的脑电图活动以及颞肌前部的单个运动单位(SMU)活动;这三种状态分别为睁眼、闭眼、张口。以SMU的动作电位作为触发信号,对脑电图信号进行尖峰触发平均(STA),以评估其在各个脑电图记录部位的反映。颞肌静息SMU活动产生了具有不同幅度的显著反映,在记录的SMU附近达到最大值。在相对远离记录SMU的头皮部位甚至对侧位置,干扰也很明显。考虑到头颈部肌肉中存在大量SMU,仅单个运动单位的活动就产生显著干扰,这表明即使在静息状态下,脑电图也容易受到肌肉活动伪影的影响。本研究强调了需要能够处理肌肉干扰的有效伪影评估方法。