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Recording Visual Evoked Potentials and Auditory Evoked P300 at 9.4T Static Magnetic Field

机译:在9.4T静磁场下记录视觉诱发电位和听觉诱发P300

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摘要

Simultaneous recording of electroencephalography (EEG) and functional magnetic resonance imaging (fMRI) has shown a number of advantages that make this multimodal technique superior to fMRI alone. The feasibility of recording EEG at ultra-high static magnetic field up to 9.4T was recently demonstrated and promises to be implemented soon in fMRI studies at ultra high magnetic fields. Recording visual evoked potentials are expected to be amongst the most simple for simultaneous EEG/fMRI at ultra-high magnetic field due to the easy assessment of the visual cortex. Auditory evoked P300 measurements are of interest since it is believed that they represent the earliest stage of cognitive processing. In this study, we investigate the feasibility of recording visual evoked potentials and auditory evoked P300 in a 9.4T static magnetic field. For this purpose, EEG data were recorded from 26 healthy volunteers inside a 9.4T MR scanner using a 32-channel MR compatible EEG system. Visual stimulation and auditory oddball paradigm were presented in order to elicit evoked related potentials (ERP). Recordings made outside the scanner were performed using the same stimuli and EEG system for comparison purposes. We were able to retrieve visual P100 and auditory P300 evoked potentials at 9.4T static magnetic field after correction of the ballistocardiogram artefact using independent component analysis. The latencies of the ERPs recorded at 9.4T were not different from those recorded at 0T. The amplitudes of ERPs were higher at 9.4T when compared to recordings at 0T. Nevertheless, it seems that the increased amplitudes of the ERPs are due to the effect of the ultra-high field on the EEG recording system rather than alteration in the intrinsic processes that generate the electrophysiological responses.
机译:脑电图(EEG)和功能磁共振成像(fMRI)的同时记录已显示出许多优势,使该多峰技术优于单独的fMRI。最近证明了在高达9.4T的超高静磁场下记录EEG的可行性,并有望在超高磁场的fMRI研究中很快实现。由于易于评估视皮层,因此在超高磁场下同时进行脑电图/功能磁共振成像记录视觉诱发电位有望成为最简单的方法之一。听觉诱发的P300测量值得关注,因为据信它们代表了认知加工的最早阶段。在这项研究中,我们调查了在9.4T静磁场中记录视觉诱发电位和听觉诱发P300的可行性。为此,使用32通道MR兼容的EEG系统在9.4T MR扫描仪中记录了来自26位健康志愿者的EEG数据。为了引起诱发相关电位(ERP),提出了视觉刺激和听觉怪异范例。出于比较目的,使用相同的刺激和EEG系统在扫描仪外部进行记录。使用独立成分分析校正心电图伪影后,我们能够在9.4T静磁场下检索视觉P100和听觉P300诱发电位。在9.4T记录的ERP的延迟与在0T记录的ERP的延迟没有区别。与0T处的记录相比,ERP的幅度在9.4T处更高。尽管如此,看来ERPs振幅的增加是由于超高场对EEG记录系统的影响,而不是由于产生电生理反应的内在过程的改变。

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