在癫痫动物模型中,功能磁共振成像和磁共振波谱分析过程中无伪迹脑电图的实时显示。

Real-time display of artifact-free electroencephalography during functional magnetic resonance imaging and magnetic resonance spectroscopy in an animal model of epilepsy.

作者信息

Mirsattari Seyed M, Ives John R, Bihari Frank, Leung L Stan, Menon Ravi S, Bartha Robert

机构信息

Neuroscience Graduate Program, University of Western Ontario, London, Ontario, Canada.

出版信息

Magn Reson Med. 2005 Feb;53(2):456-64. doi: 10.1002/mrm.20357.

Abstract

Simultaneous recording of electroencephalogram (EEG) and functional MRI (fMRI) or MR spectroscopy (MRS) can provide further insight into our understanding of the underlying mechanisms of neurologic disorders. Current technology for simultaneous EEG and MRI recording is limited by extensive postacquisition processing of the data. Real-time display of artifact-free EEG recording during fMRI/MRS studies is essential in studies that involve epilepsy to ensure that they address specific EEG features such as epileptic spikes or seizures. By optimizing the EEG recording equipment to maximize the common mode rejection ratio of its amplifiers, a unique EEG system was designed and tested that allowed real-time display of the artifact-free EEG during fMRI/MRS in an animal model of epilepsy. Spike recordings were optimized by suppression of the background EEG activity using fast-acting and easily controlled inhalational anesthesia. Artifact suppression efficiency of 70-100% was achieved following direct subtraction of referentially recorded filtered EEG tracings from active electrodes, which were located in close proximity to each other (over homologous occipital cortices) and a reference electrode. Two independent postacquisition processing tools, independent component analysis and direct subtraction of unfiltered digital EEG data in MATLAB, were used to verify the accuracy of real-time EEG display.

摘要

同时记录脑电图(EEG)与功能磁共振成像(fMRI)或磁共振波谱(MRS),可以让我们进一步深入了解神经系统疾病的潜在机制。目前用于同步记录EEG和MRI的技术受到数据采集后大量处理工作的限制。在涉及癫痫的研究中,在fMRI/MRS研究期间实时显示无伪迹的EEG记录至关重要,以确保研究能够针对特定的EEG特征,如癫痫棘波或癫痫发作。通过优化EEG记录设备以最大化其放大器的共模抑制比,设计并测试了一种独特的EEG系统,该系统能够在癫痫动物模型的fMRI/MRS过程中实时显示无伪迹的EEG。通过使用起效快且易于控制的吸入麻醉抑制背景EEG活动,优化了棘波记录。在将位于彼此靠近位置(同侧枕叶皮质上方)的有源电极记录的参考滤波EEG描记图与一个参考电极进行直接相减后,伪迹抑制效率达到了70 - 100%。使用两种独立的采集后处理工具,即独立成分分析和在MATLAB中对未滤波数字EEG数据进行直接相减,来验证实时EEG显示的准确性。

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