Tidswell A T, Bagshaw A P, Holder D S, Yerworth R J, Eadie L, Murray S, Morgan L, Bayford R H
Department of Clinical Neurophysiology, Middlesex Hospital, University College London, W1N 8AA, UK.
Physiol Meas. 2003 May;24(2):527-44. doi: 10.1088/0967-3334/24/2/363.
Three types of commercially available headnet electrode arrays, designed for use in EEG, and conventional EEG Ag/AgCl cup electrodes were tested on human subjects, and a realistic, saline-filled head-shaped tank was prepared with vegetable skin to simulate human skin in order to determine the optimum electrode system for electrical impedance tomography (EIT) of the human head. Impedance changes during EIT acquisition were produced in healthy volunteers during a finger-thumb apposition task and in tanks by the insertion of a Perspex rod. Signal-to-baseline noise, measured from raw EIT data, was 2.3 +/- 0.3 and 2.3 +/- 0.2 for the human and tank data, respectively. In both the human and tank experiments, a commercial hydrogel elasticated electrode headnet produced the least amount of baseline noise, and was the only headnet in the human data with noise levels acceptable for EIT imaging. Image quality measured in the tank was similar for most of the headnets tested, except that the EEG electrodes produced a higher positional error and electrodes in a geodesic elasticated net produced images with worse subjective image quality. Overall, the hydrogel elasticated headnet was judged to be the most suitable for human neuroimaging with EIT.
我们对三种市售的、设计用于脑电图(EEG)的头网电极阵列以及传统的EEG银/氯化银杯状电极在人体受试者上进行了测试,并制作了一个逼真的、填充生理盐水的头部形状水箱,水箱表面覆盖蔬菜皮以模拟人体皮肤,目的是确定用于人体头部电阻抗断层成像(EIT)的最佳电极系统。在健康志愿者进行拇指对指任务期间以及在水箱中插入有机玻璃棒时,在EIT采集过程中产生了阻抗变化。从原始EIT数据测量的信号与基线噪声,人体数据和水箱数据分别为2.3±0.3和2.3±0.2。在人体和水箱实验中,一种商用的水凝胶弹性电极头网产生的基线噪声最少,并且是人体数据中唯一噪声水平对于EIT成像可接受的头网。在水箱中测量的图像质量对于大多数测试的头网来说是相似的,除了EEG电极产生较高的位置误差,并且测地线弹性网中的电极产生的主观图像质量较差。总体而言,水凝胶弹性头网被认为最适合用于人体EIT神经成像。