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首页> 外文期刊>Measurement >Performance ANd ACcuracy in Electrical BioActivity Recordings (PANACEA): A high-performance, wireless, multi-instrument for potentiometric and amperometric recording of biosignals
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Performance ANd ACcuracy in Electrical BioActivity Recordings (PANACEA): A high-performance, wireless, multi-instrument for potentiometric and amperometric recording of biosignals

机译:电气生物活性录音的性能和准确性(Panacea):高性能,无线,多仪器,用于生物信号的电位和电流测量

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摘要

This paper presents the design, testing and quantitative evaluation of a high-performance, low-power, portable multi-instrument (107 x 79 mm(2)), capable of recording important biosignals accurately and in real-time. This highly versatile system has the ability to transmit the captured bio-data back to the user either in a wired (HDMI cable) or wireless (ZigBee protocol) manner, depending on the targeted application. The biological information that can be recorded by the proposed instrument spans a wide range of bio-potentials and bio-amperometric signals. The proposed instrument is split into two complementary "sub-instruments", where one is operating as the front-end device, responsible for the accurate, low-noise signal detection and transmission, while the second "sub-instrument" is operating as the "base station", responsible for the collection and further processing of the captured data. For wired transmission (e.g to the user's PC) the front end module can operate independently, however, for wireless transmission both "sub-instruments" are required (transmitter-base station architecture). For wireless transmission, each of the two "sub-instruments" is equipped with dedicated 2 Mbps ZigBee radio transceivers and both parts are controlled by a small area embedded FPGA module. The front-end device features two distinct sections: (a) a current/voltage to voltage section comprising six potentiometry and two transimpedance amplifier-based amperometry channels. These eight in total analogue channels are converted into digital form by means of a 24 bit, voltage input, Analogue-to-Digital Converter (ADC) and (b) a four channel, commercially available switched-capacitor-based ADC Integrated Circuit (IC), which converts input charge to digital data with 16 or 20 bit resolution at 3.125 kSPS. The paper presents a plethora of measured wired and wireless experimental results, corresponding to most well-known biomedical and other biological/physical signals including: EEG, ECoG, EMG, ECG, PPG, intracardiac atrial fibrillation (AF) signals, cell media/tissue biopotential, drosophila H1-cell spiking signals and pH sensing using commercially available electrodes. The portable/wearable poly-instrument is suitable for Intensive Care Unit (ICU), High Dependancy Unit (HDU) as well as home monitoring.
机译:本文介绍了高性能,低功耗,便携式多仪器(107 x 79 mm(2))的设计,测试和定量评估,能够准确且实时地记录重要的生物信号。这一高度通用的系统能够在有线(HDMI电缆)或无线(ZigBee协议)方式中将捕获的生物数据返回给用户,这取决于目标应用程序。可以通过所提出的仪器记录的生物学信息跨越广泛的生物电位和生物倍数信号。所提出的仪器分为两个互补的“子仪器”,其中一个人作为前端设备运行,负责准确,低噪声信号检测和传输,而第二个“子仪器”正在运行“基站”,负责收集和进一步处理捕获的数据。对于有线传输(例如,向用户的PC),前端模块可以独立地操作,但是,对于无线传输,都需要两个“子仪器”(发射机基站架构)。对于无线传输,两个“子仪器”中的每一个都配备有专用的2 Mbps ZigBee无线电收发器,并且两个部分由小区嵌入式FPGA模块控制。前端设备具有两个不同的部分:(a)(a)电流/电压到包括六个电位计的电压部分和两个基于跨阻放大器的安培级通道。通过24位,电压输入,模拟 - 数字转换器(ADC)和(B)通过24位,电压输入,基于开关 - 电容的ADC集成电路(IC ),它将输入充电转换为数字数据,以3.125ksps为16或20位分辨率。本文提出了一种测量的有线和无线实验结果,对应于大多数众所周知的生物医学和其他生物/物理信号,包括:EEG,ECOG,EMG,ECG,PPG,心内心房颤动(AF)信号,细胞介质/组织双向,果蝇H1细胞掺入信号和使用市售电极的pH感测。便携式/可穿戴多仪器适用于重症监护单元(ICU),高依赖单元(HDU)以及家庭监控。

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