Hermans Kees, de Munck Jan Casper, Verdaasdonk Rudolf, Boon Paul, Krausz Gunther, Prueckl Robert, Ossenblok Pauly
IEEE Trans Biomed Eng. 2016 Dec;63(12):2638-2646. doi: 10.1109/TBME.2016.2602038. Epub 2016 Aug 25.
Subtle motion of an epileptic patient examined with co-registered EEG and functional MRI (EEG-fMRI) may often lead to spurious fMRI activation patterns when true epileptic spikes are contaminated with motion artefacts. In recent years, methods relying on reference signals for correcting these subtle movements in the EEG have emerged. In this study, the performance of two reference-based devices are compared to the template-based method with regard to their ability to remove movement-related artifacts in EEG measured during scanning.
Measurements were performed with a novel double layer cap consisting of 29 EEG and 29 reference electrodes, and with a current loop cap consisting of 60 electrodes and three current loop wires attached to the cap. EEG was acquired inside the scanner during resting state, as well as when the subject was performing a cued movement task. For the double layer cap recordings, newly developed artifact removal algorithms are introduced and both reference signal-based methods are compared to a template-based correction method.
The BCG artifacts occurring at resting state could be removed successfully by both the reference signal-based methods as well as by the template-based method. However, the reference signal-based methods were also capable of removing EEG artifacts induced by subtle movements, whereas the template-based method failed to remove these artifacts.
Reference signal-based methods enable to correct for artifacts due to subtle movements, which are not removed by commonly used template-based removal algorithms.
Sensitivity of EEG-fMRI analysis in patients with focal epilepsy is improved by avoiding erroneous detections of subtle movements as epileptic spikes in the EEG.
当真正的癫痫棘波被运动伪影污染时,在同步脑电图和功能磁共振成像(EEG-fMRI)检查中癫痫患者的细微运动通常可能导致虚假的fMRI激活模式。近年来,出现了依靠参考信号来校正脑电图中这些细微运动的方法。在本研究中,将两种基于参考的设备的性能与基于模板的方法在去除扫描期间测量的脑电图中与运动相关伪影的能力方面进行了比较。
使用一种新型双层帽进行测量,该双层帽由29个脑电图电极和29个参考电极组成,以及使用一种电流环帽进行测量,该电流环帽由60个电极和连接到帽上的三根电流环线组成。在静息状态下以及受试者执行提示运动任务时,在扫描仪内采集脑电图。对于双层帽记录,引入了新开发的伪影去除算法,并将两种基于参考信号的方法与基于模板的校正方法进行了比较。
基于参考信号的方法以及基于模板的方法都能成功去除静息状态下出现的体动伪影。然而,基于参考信号的方法也能够去除由细微运动引起的脑电图伪影,而基于模板的方法未能去除这些伪影。
基于参考信号的方法能够校正由细微运动引起的伪影,而常用的基于模板的去除算法无法去除这些伪影。
通过避免将细微运动错误检测为脑电图中的癫痫棘波,提高了局灶性癫痫患者EEG-fMRI分析的敏感性。