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7T磁共振成像期间电阻式脑电图电极和导联的影响:模拟与温度测量研究

On the effect of resistive EEG electrodes and leads during 7 T MRI: simulation and temperature measurement studies.

作者信息

Angelone Leonardo M, Vasios Christos E, Wiggins Graham, Purdon Patrick L, Bonmassar Giorgio

机构信息

MGH/MIT/HMS Athinoula A. Martinos Center for Biomedical Imaging, Charlestown, MA 02129, USA.

出版信息

Magn Reson Imaging. 2006 Jul;24(6):801-12. doi: 10.1016/j.mri.2006.01.006. Epub 2006 Mar 27.

Abstract

The purpose of the study was to assess the effects of electrodes and leads on electromagnetic field and specific absorption rate (SAR) distributions during simultaneous electroencephalography (EEG) and 7-T MRI. Two different approaches were evaluated and compared to the case without electrodes: (a) the use of different EEG lead resistivity and (b) the use of a radiofrequency (RF) resistor on the lead near the EEG electrode. These configurations are commonly used in research and clinical settings. Electromagnetic field and SAR distributions generated by the transmit RF coil were evaluated using finite difference time domain simulations on an anatomically accurate head model. The spatiotemporal changes of temperature were estimated with the heat equation. Temperature changes during turbo spin echo sequences were also measured using a custom-made phantom: the conductive head mannequin anthropomorphic (CHEMA). The results of this study showed that the SAR and temperature distributions in CHEMA (a) increased when using low resistive leads, with respect to the no-electrode case; (b) were affected by the resistivity of the EEG leads, with carbon fiber leads performing better than standard copper leads; and (c) were not affected by the use of an RF resistor between the EEG electrode and the lead.

摘要

本研究的目的是评估在同步脑电图(EEG)和7-T磁共振成像(MRI)期间电极和导联对电磁场及比吸收率(SAR)分布的影响。评估了两种不同的方法,并与无电极的情况进行比较:(a)使用不同的EEG导联电阻率;(b)在EEG电极附近的导线上使用射频(RF)电阻器。这些配置常用于研究和临床环境。使用基于解剖学精确的头部模型的时域有限差分模拟来评估发射RF线圈产生的电磁场和SAR分布。用热方程估计温度的时空变化。还使用定制的体模:导电头部人体模型(CHEMA)测量了涡轮自旋回波序列期间的温度变化。本研究结果表明,与无电极情况相比,CHEMA中的SAR和温度分布在使用低电阻导联时(a)增加;(b)受EEG导联电阻率的影响,碳纤维导联比标准铜导联表现更好;(c)不受EEG电极与导线之间使用RF电阻器的影响。

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