Lepola Pasi, Myllymaa Sami, Töyräs Juha, Hukkanen Taina, Mervaala Esa, Määttä Sara, Lappalainen Reijo, Myllymaa Katja
Department of Clinical Neurophysiology, Kuopio University Hospital, POB 100, 70029, Kuopio, Finland.
Department of Applied Physics, University of Eastern Finland, POB 1627, 70211, Kuopio, Finland.
J Clin Monit Comput. 2015 Dec;29(6):697-705. doi: 10.1007/s10877-014-9652-9. Epub 2015 Jan 10.
Although electroencephalography (EEG) is an important diagnostic tool for investigating patients with unexplained altered mental state (AMS), recording of emergency EEG is not a clinical routine. This is mainly due to the cumbersome electrode solutions. A Handy EEG Electrode Set consists of ten EEG, two EOG, two ground and two commutative reference hydrogel-coated silver wire electrodes attached to a thin polyester carrier film. The clinical usefulness of the Handy EEG Electrode Set was tested in 13 patients (five females, eight males) with AMS. EEG recordings were conducted at the same time with a standard 10-20 electrode set. The registration in the first patient case without the behind-ear electrodes (T9 and T10), indicated that these electrodes are very crucial to provide clinically relevant information from posterior regions of brain. In following 12 cases, the sensitivity and specificity for detecting EEG abnormality based on the Handy EEG Electrode Set recordings were 83 and 100 %, respectively. The Handy EEG Electrode Set proved to be easy to use and to provide valuable information for the neurophysiological evaluation of a patient suffering from AMS. However, further studies with larger number of patients are warranted to clarify the true diagnostic accuracy and applicability of this approach.
尽管脑电图(EEG)是调查不明原因精神状态改变(AMS)患者的重要诊断工具,但急诊脑电图记录并非临床常规操作。这主要是由于电极解决方案繁琐。一种便捷脑电图电极组由十个脑电图电极、两个眼电图电极、两个接地电极和两个可交换参考水凝胶涂层银丝电极组成,附着在聚酯薄膜载体上。对13例AMS患者(5名女性,8名男性)测试了便捷脑电图电极组的临床实用性。同时使用标准的10-20电极组进行脑电图记录。在第一例未使用耳后电极(T9和T10)的患者病例中进行记录,结果表明这些电极对于从脑后部区域提供临床相关信息非常关键。在接下来的12例病例中,基于便捷脑电图电极组记录检测脑电图异常的敏感性和特异性分别为83%和100%。便捷脑电图电极组被证明易于使用,并为AMS患者的神经生理学评估提供有价值的信息。然而,需要更多患者的进一步研究来阐明这种方法的真正诊断准确性和适用性。