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首页> 外文期刊>Journal of Neuroscience Methods >A comparative study of electrical potential sensors and Ag/AgCl electrodes for characterising spontaneous and event related electroencephalagram signals
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A comparative study of electrical potential sensors and Ag/AgCl electrodes for characterising spontaneous and event related electroencephalagram signals

机译:用于表征自发性和事件相关脑电图信号的电势传感器和AG / AGCL电极的比较研究

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Background: Electroencephalography (EEG) is still a widely used imaging tool that combines high temporal resolution with a relatively low cost. Ag/AgCl metal electrodes have been the gold standard for non-invasively monitoring electrical brain activity. Although reliable, these electrodes have multiple drawbacks: they suffer from noise, such as offset potential drift, and usability issues, for example, difficult skin preparation and cross-coupling of adjacent electrodes.New method: In order to tackle these issues a prototype Electric Potential Sensor (EPS) device based on an auto-zero operational amplifier was developed and evaluated. The EPS is a novel active ultrahigh impedance capacitively coupled sensor. The absence of 1/f noise makes the EPS ideal for use with signal frequencies of ~10 Hz or less. A comprehensive study was undertaken to compare neural signals recorded by the EPS with a standard commercial EEG system.Results: Quantitatively, highly similar signals were observed between the EPS and EEG sensors for both free running and evoked brain activity with cross correlations of higher than 0.9 between the EPS and a standard benchmark EEG system.Comparison with existing method(s): These studies comprised measurements of both free running EEG and Event Related Potentials (ERPs) from a commercial EEG system and EPS.Conclusions: The EPS provides a promising alternative with many added benefits compared to standard EEG sensors, including reduced setup time and elimination of sensor cross-coupling. In the future the scalability of the EPS will allow the implementation of a whole head ultra-dense EPS array.
机译:背景:脑电图(EEG)仍然是一种广泛使用的成像工具,其与相对较低的成本结合了高的时间分辨率。 Ag / AgCl金属电极是非侵入性监测电脑活动的金标准。虽然可靠,这些电极具有多个缺点:它们遭受噪声,例如偏移电位漂移和可用性问题,例如,难以使用的皮肤准备和相邻电极的交叉耦合。新方法:为了解决这些问题的原型电气开发和评估了基于自动零运算放大器的潜在传感器(EPS)器件。 EPS是一种电容耦合传感器的新型活性超高阻抗。没有1 / f噪声使得EPS非常适合使用〜10 Hz或更低的信号频率。进行了全面的研究,以比较EPS与标准商业EEG系统记录的神经信号。结果:在EPS和EEG传感器之间观察到的非常相似的信号,用于自由运行和诱发的脑活动,横向相关性高于0.9在EPS和标准基准eEG System之间进行了现有方法,这些研究包括来自商业EEG系统和EPS的免费运行eEG和事件相关电位(ERP)的测量值:CONS提供有前途的替代方案与标准EEG传感器相比,许多额外的益处,包括减少设置时间和消除传感器交叉耦合。将来,EPS的可扩展性将允许实现整个头部超密集的EPS阵列。

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