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Comparison of an Open-hardware Electroencephalography Amplifier with Medical Grade Device in Brain-computer Interface Applications

机译:脑电脑界面应用中使用医疗级装置的开放式型脑电平移放大器的比较

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Brain-computer interfaces (BCI) are promising communication devices between humans and machines. BCI based on non-invasive neuroimaging techniques such as electroencephalography (EEG) have many applications, however the dissemination of the technology is limited, in part because of the price of the hardware. In this paper we compare side by side two EEG amplifiers, the consumer grade OpenBCI and the medical grade g.tec g.USBamp. For this purpose, we employed an original montage, based on the simultaneous recording of the same set of electrodes. Two set of recordings were performed. During the first experiment a simple adapter with a direct connection between the amplifiers and the electrodes was used. Then, in a second experiment, we attempted to discard any possible interference that one amplifier could cause to the other by adding "ideal" diodes to the adapter. Both spectral and temporal features were tested - the former with a workload monitoring task, the latter with an visual P300 speller task. Overall, the results suggest that the OpenBCI board - or a similar solution based on the Texas Instrument ADS1299 chip - could be an effective alternative to traditional EEG devices. Even though a medical grade equipment still outperforms the OpenBCI, the latter gives very close EEG readings, resulting in practice in a classification accuracy that may be suitable for popularizing BCI uses.
机译:大脑计算机接口(BCI)是人类和机器之间的通信设备。 BCI基于诸如脑电图(EEG)的非侵入性神经成像技术具有许多应用,然而,该技术的传播是有限的,部分原因是硬件的价格。在本文中,我们并排比较两个EEG放大器,消费者级OpenBCI和医疗等级G.Tec G.Usbamp。为此目的,我们基于同一组电极的同时记录原始蒙太奇。两套录音进行了。在第一个实验期间,使用具有在放大器和电极之间直接连接的简单适配器。然后,在第二个实验中,我们试图丢弃任何可能通过将“理想”二极管添加到适配器的“理想”二极管来对方的任何可能的干扰。测试频谱和时间特征都是测试的 - 前者具有工作负载监控任务,后者具有Visual P300拼写任务。总体而言,结果表明,OpenBCI板 - 或基于德克萨斯乐器ADS1299芯片的类似解决方案 - 可能是传统EEG器件的有效替代方案。即使医疗等级设备仍然优于OpenBCI,后者也给出了非常紧密的EEG读数,导致练习的分类准确性可能适合推广BCI使用。

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