IEEE Trans Biomed Circuits Syst. 2023 Jun;17(3):483-494. doi: 10.1109/TBCAS.2023.3272649. Epub 2023 Jul 12.
To enable continuous, mobile health monitoring, body-worn sensors need to offer comparable performance to clinical devices in a lightweight, unobtrusive package. This work presents a complete versatile wireless electrophysiology data acquisition system (weDAQ) that is demonstrated for in-ear electroencephalography (EEG) and other on-body electrophysiology with user-generic dry-contact electrodes made from standard printed circuit boards (PCBs). Each weDAQ device provides 16 recording channels, driven right leg (DRL), a 3-axis accelerometer, local data storage, and adaptable data transmission modes. The weDAQ wireless interface supports deployment of a body area network (BAN) capable of aggregating various biosignal streams over multiple worn devices simultaneously, on the 802.11n WiFi protocol. Each channel resolves biopotentials ranging over 5 orders of magnitude with a noise level of 0.52 μV over a 1000-Hz bandwidth, and a peak SNDR of 119 dB and CMRR of 111 dB at 2 ksps. The device leverages in-band impedance scanning and an input multiplexer to dynamically select good skin contacting electrodes for reference and sensing channels. In-ear and forehead EEG measurements taken from subjects captured modulation of alpha brain activity, electrooculogram (EOG) characteristic eye movements, and electromyogram (EMG) from jaw muscles. Simultaneous ECG and EMG measurements were demonstrated on multiple, freely-moving subjects in their natural office environment during periods of rest and exercise. The small footprint, performance, and configurability of the open-source weDAQ platform and scalable PCB electrodes presented, aim to provide the biosensing community greater experimental flexibility and lower the barrier to entry for new health monitoring research.
为了实现连续的、移动的健康监测,可穿戴传感器需要在轻便、不引人注目的封装中提供与临床设备相当的性能。本工作提出了一种完整的通用无线电生理数据采集系统(weDAQ),该系统通过用户自制的、由标准印刷电路板(PCB)制成的干接触电极,用于耳内脑电图(EEG)和其他体内心电生理学。每个 weDAQ 设备提供 16 个记录通道、右腿驱动(DRL)、3 轴加速度计、本地数据存储和可适应的数据传输模式。weDAQ 无线接口支持部署能够同时聚合多个佩戴设备上的各种生物信号流的体域网(BAN),使用 802.11n WiFi 协议。每个通道解析生物电位范围跨越 5 个数量级,噪声电平为 0.52 μV,带宽为 1000 Hz,在 2 ksps 时的峰值 SNR 为 119 dB,CMRR 为 111 dB。该设备利用带内阻抗扫描和输入多路复用器,为参考和感应通道动态选择良好的皮肤接触电极。从被试者获得的耳内和额部 EEG 测量结果捕捉到了α脑活动的调制、眼电图(EOG)特征性眼球运动以及咀嚼肌的肌电图(EMG)。在休息和运动期间,在多个自由移动的被试者的自然办公环境中,同时演示了 ECG 和 EMG 测量。开源 weDAQ 平台的小尺寸、性能和可配置性以及可扩展的 PCB 电极旨在为生物传感社区提供更大的实验灵活性,并降低新的健康监测研究的准入门槛。