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使用电极帽时电极位置的变异性。

Variability of electrode positions using electrode caps.

作者信息

Atcherson Samuel R, Gould Herbert Jay, Pousson Monique A, Prout Tina M

机构信息

Auditory Neuroscience Laboratory, The University of South Dakota, 414 East Clark Street, Vermillion, SD 57069, USA.

出版信息

Brain Topogr. 2007 Winter;20(2):105-11. doi: 10.1007/s10548-007-0036-z. Epub 2007 Oct 11.

Abstract

We investigated the variability of electrode positions for a multi-channel, custom electrode cap placed onto participants' heads without taking scalp measurements. The electrode positions were digitized in a three-dimensional space for 10 young adult participants on three separate occasions. Positional variability was determined for 15 selected electrodes within the three-dimensional preauricular-nasion (PAN) coordinate system and from this system, angular coordinate variability was also determined. The standard deviations of the 15 selected electrodes ranged from 3.0 to 12.7 mm in the PAN system. These data resulted in a variability of 2.0 degrees to 10.4 degrees among the angular coordinates. The measurements indicated slightly greater variability of electrode positions compared to studies when electrodes were placed using scalp measurements. The implication of this study is that the use of electrode caps may not be appropriate when electroencephalographic (EEG) or evoked potential (EP) techniques depend on accurate electrode placement. Additionally, if a longitudinal study is performed, electrode locations should be checked to ensure that they conform with previous sessions.

摘要

我们研究了在不进行头皮测量的情况下,将多通道定制电极帽放置在参与者头部时电极位置的变异性。在三个不同的场合,对10名年轻成年参与者在三维空间中对电极位置进行了数字化处理。在三维耳前-鼻根(PAN)坐标系中确定了15个选定电极的位置变异性,并从该系统中确定了角坐标变异性。在PAN系统中,15个选定电极的标准差范围为3.0至12.7毫米。这些数据导致角坐标之间的变异性为2.0度至10.4度。与使用头皮测量放置电极的研究相比,测量结果表明电极位置的变异性略大。这项研究的意义在于,当脑电图(EEG)或诱发电位(EP)技术依赖于精确的电极放置时,使用电极帽可能不合适。此外,如果进行纵向研究,应检查电极位置,以确保它们与之前的实验环节一致。

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