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Emulating conventional disc electrode with the outer ring of the tripolar concentric ring electrode in phantom and human electroencephalogram data

机译:用三极管同心环电极的外圈模拟传统的盘电极,在虚线和人的脑电图数据中

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Conventional electroencephalography (EEG) with disc electrodes has major drawbacks including poor spatial resolution, selectivity and low signal-to-noise ratio that critically limit its use. Concentric ring electrodes are a promising alternative with potential to improve all of the aforementioned aspects significantly. In our previous work, the tripolar concentric ring electrode (TCRE) was successfully used in a wide range of applications demonstrating its superiority to conventional disc electrodes, in particular, in accuracy of Laplacian estimation (tEEG). For applications that may benefit from simultaneous recording of EEG and tEEG in this paper we propose to use the signal from the outer ring of the TCRE as an emulation (eEEG) of EEG recorded using conventional disc electrodes. This will allow us to record EEG emulation from the exact same locations at the exact same time as the tEEG using a single recording system. Time domain neuronal signal synchrony was measured using cross-correlation in phantom and human experiments suggesting the potential of eEEG as an emulation of EEG.
机译:具有盘电极的传统脑电图(EEG)具有具有较差的空间分辨率,选择性和低信噪比的主要缺点,可批判地限制其使用。同心环电极是有希望的替代方案,其有可能显着改善所有上述方面。在我们之前的工作中,三罗尔同心环电极(TCRE)被成功地用于各种应用,示出了其对传统盘电极的优越性,特别是Laplacian估计(TEEG)的准确性。对于在本文中可以从同时记录EEG和TEEG中受益的应用,我们建议使用来自TCRE外圈的信号作为使用传统盘电极记录的EEG的仿真(EEEG)。这将允许我们从完全相同的位置记录EEG仿真,以使用单个记录系统在TEEG的完全相同的位置。使用幻像中的互相关和人类实验测量时域神经元信号同步,表明EEEG的潜力作为EEG的仿真。

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