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Low-cost Carbon Fiber-based Conductive Silicone Sponge EEG Electrodes

机译:基于低成本的碳纤维的导电硅胶海绵EEG电极

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We propose a novel carbon fiber-based conductive silicone sponge for low electrode-skin impedance EEG recordings. When this sponge is used with water or saline solution, no gel is required, lowering the setup time drastically compared to classical wet electrodes. Moreover, the wet conductive carbon fiber silicone sponges achieve an electrode-skin impedance as low as 2.5kΩ at 1kHz when wet, making them better than state of the art gel electrodes. Additionally, even as the sponge dries out, it continues to remain conductive and performs as a reliable dry electrode. We demonstrate through experiments that these conductive carbon fiber silicone sponge electrodes, wet or dry, are able to measure alpha wave activity. Our carbon fiber conductive sponge electrodes are low-cost and are highly suitable for designs of portable high density EEG measurement systems.
机译:我们提出了一种用于低电极 - 皮肤阻抗EEG记录的新型碳纤维导电硅树脂。当该海绵用于水或盐水溶液时,不需要凝胶,与经典湿电极相比,大大降低了设置时间。此外,湿导电碳纤维硅树脂海绵在湿润时在1kHz时达到低至2.5kΩ的电极 - 皮肤阻抗,使其优于现有技术的凝胶电极。另外,即使海绵干燥,它也继续保持导电并作为可靠的干电极进行。我们通过实验证明了这些导电碳纤维硅氧烷海绵电极,湿润或干燥,能够测量α波活性。我们的碳纤维导电海绵电极是低成本的,非常适合于便携式高密度EEG测量系统的设计。

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