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Design and Verification of a Dry Sensor-Based Multi-Channel Digital Active Circuit for Human Brain Electroencephalography Signal Acquisition Systems

机译:基于干传感器的人脑脑电信号采集系统多通道数字有源电路的设计与验证

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摘要

A brain–computer interface (BCI) is a type of interface/communication system that can help users interact with their environments. Electroencephalography (EEG) has become the most common application of BCIs and provides a way for disabled individuals to communicate. While wet sensors are the most commonly used sensors for traditional EEG measurements, they require considerable preparation time, including the time needed to prepare the skin and to use the conductive gel. Additionally, the conductive gel dries over time, leading to degraded performance. Furthermore, requiring patients to wear wet sensors to record EEG signals is considered highly inconvenient. Here, we report a wireless 8-channel digital active-circuit EEG signal acquisition system that uses dry sensors. Active-circuit systems for EEG measurement allow people to engage in daily life while using these systems, and the advantages of these systems can be further improved by utilizing dry sensors. Moreover, the use of dry sensors can help both disabled and healthy people enjoy the convenience of BCIs in daily life. To verify the reliability of the proposed system, we designed three experiments in which we evaluated eye blinking and teeth gritting, measured alpha waves, and recorded event-related potentials (ERPs) to compare our developed system with a standard Neuroscan EEG system.
机译:脑机接口(BCI)是一种可以帮助用户与其环境进行交互的接口/通信系统。脑电图(EEG)已成为BCI的最常见应用,并为残障人士提供了一种交流方式。尽管湿式传感器是传统EEG测量中最常用的传感器,但它们需要大量的准备时间,包括准备皮肤和使用导电凝胶所需的时间。另外,随着时间的流逝,导电凝胶变干,导致性能下降。此外,要求患者佩戴湿式传感器来记录EEG信号非常不方便。在这里,我们报告一个使用干式传感器的无线8通道数字有源电路EEG信号采集系统。用于脑电图测量的有源电路系统使人们可以在使用这些系统的同时从事日常生活,并且通过使用干式传感器可以进一步改善这些系统的优势。此外,使用干式传感器可以帮助残疾人和健康人在日常生活中享受BCI的便利。为了验证所提出系统的可靠性,我们设计了三个实验,在其中评估了眨眼和牙齿咬牙,测量的alpha波并记录了事件相关电位(ERP),以将我们开发的系统与标准Neuroscan EEG系统进行比较。

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