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Proposing Metrics for Benchmarking Novel EEG Technologies Towards Real-World Measurements

机译:提出用于将新型EEG技术用于实际测量的基准的度量标准

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摘要

Recent advances in electroencephalographic (EEG) acquisition allow for recordings using wet and dry sensors during whole-body motion. The large variety of commercially available EEG systems contrasts with the lack of established methods for objectively describing their performance during whole-body motion. Therefore, the aim of this study was to introduce methods for benchmarking the suitability of new EEG technologies for that context. Subjects performed an auditory oddball task using three different EEG systems (Biosemi wet—BSM, Cognionics Wet—Cwet, Conionics Dry—Cdry). Nine subjects performed the oddball task while seated and walking on a treadmill. We calculated EEG epoch rejection rate, pre-stimulus noise (PSN), signal-to-noise ratio (SNR) and EEG amplitude variance across the P300 event window (CVERP) from a subset of 12 channels common to all systems. We also calculated test-retest reliability and the subject’s level of comfort while using each system. Our results showed that using the traditional 75 μV rejection threshold BSM and Cwet epoch rejection rates are ~25% and ~47% in the seated and walking conditions respectively. However, this threshold rejects ~63% of epochs for Cdry in the seated condition and excludes 100% of epochs for the majority of subjects during walking. BSM showed predominantly no statistical differences between seated and walking condition for all metrics, whereas Cwet showed increases in PSN and CVERP, as well as reduced SNR in the walking condition. Data quality from Cdry in seated conditions were predominantly inferior in comparison to the wet systems. Test-retest reliability was mostly moderate/good for these variables, especially in seated conditions. In addition, subjects felt less discomfort and were motivated for longer recording periods while using wet EEG systems in comparison to the dry system. The proposed method was successful in identifying differences across systems that are mostly caused by motion-related artifacts and usability issues. We conclude that the extraction of the selected metrics from an auditory oddball paradigm may be used as a benchmark method for testing the performance of different EEG systems in mobile conditions. Moreover dry EEG systems may need substantial improvements to meet the quality standards of wet electrodes.
机译:脑电图(EEG)采集的最新进展允许在全身运动期间使用干湿传感器进行记录。大量可商购的EEG系统与缺乏用于客观描述其在全身运动过程中的性能的既定方法形成鲜明对比。因此,本研究的目的是介绍基准测试新EEG技术在该情况下的适用性的方法。受试者使用三种不同的EEG系统(Biosemi湿式-BSM,Cognionics湿式-Cwet,Conionics干式-Cdry)执行听觉怪胎任务。九名受试者在跑步机上坐着并走路时执行了古怪的任务。我们从所有系统共有的12个通道的子集中,计算了整个P300事件窗口(CVERP)的EEG历时拒绝率,激励前噪声(PSN),信噪比(SNR)和EEG振幅方差。我们还计算了使用每个系统时的重测可靠性和受试者的舒适度。我们的结果表明,使用传统的75μV抑制阈值,在坐着和行走条件下,BSM和Cwet时期抑制率分别为〜25%和〜47%。但是,此阈值拒绝了就座状态下Cdry的约63%的时期,并且不包括步行过程中大多数受试者的100%的时期。 BSM在所有指标上的坐姿和行走状态之间基本上没有统计学差异,而Cwet显示PSN和CVERP升高,并且在行走状态下SNR降低。与潮湿系统相比,在干燥条件下来自Cdry的数据质量劣质。这些变量的重测信度大多为中度/良好,尤其是在就座条件下。另外,与干式系统相比,在使用湿式EEG系统时,受试者感到不适感较小,并且被激励了更长的记录时间。所提出的方法成功地识别了跨系统的差异,这些差异主要是由与运动有关的伪像和可用性问题引起的。我们得出的结论是,从听觉奇异球范例中选择的度量标准的提取可用作测试移动条件下不同EEG系统性能的基准方法。此外,干式EEG系统可能需要进行实质性改进才能满足湿式电极的质量标准。

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