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首页> 外文期刊>Biomedical Engineering: Applications, Basis and Communications >IMPLEMENTATION OF AN INEXPENSIVE AND IMPROVED PURPOSE-BUILT HIGH SNR BIOMEDICAL SIGNAL CAPTURE, RECORD, AND ANALYSIS SYSTEM
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IMPLEMENTATION OF AN INEXPENSIVE AND IMPROVED PURPOSE-BUILT HIGH SNR BIOMEDICAL SIGNAL CAPTURE, RECORD, AND ANALYSIS SYSTEM

机译:实施廉价且改进的专用高SNR生物医学信号捕获,记录和分析系统

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摘要

It is very important for the brain study to design a multi-channel and high signal-to-noise ratio (SNR) bio-medical signal capture, record, and analysis system, which can effectively enhance accuracy and precision of the signal capture under dozens to hundreds of microvolts. Unfortunately, the system for data acquisition is very easily interfered by the environment, the power, and the bio-amplifier, so that the results will lead to a failed promotion of capturing high SNR signals, especially in the tiny brain wave signal. In this study, it has been designed an inexpensive, purpose-built, high SNR brainwave signals measurement system. The system is composed of an improved capture system, record system, and analysis system. To better consider the strength and characteristics of the tiny brainwave signals, the system was designed to include a suitable bio-amplifier to make each channel of the invasive microelectrode able to collect the brainwave signals correctly and it provides recording and analysis software, which can not only extract the characteristics of brainwave signals, but also quickly classify signals. The system can collect biological signals from 10 mu V to 420 mu V and has a high SNR>30. The proposed system is easy to make and can be fabricated for the relatively low cost of only US$203. The brain wave signals from the three actions can also be easily classified, with a correct rate up to 46.70%. The system has six improvements: good SNR, the ability to capture small signals, modularity, a low price, easy fabrication, and simple operation.
机译:大脑研究设计多通道和高信噪比(SNR)生物医学信号捕获,记录和分析系统非常重要,这可以有效提高信号捕获下的准确性和精度到数百个微孔。不幸的是,数据采集系统非常容易受到环境,电力和生物放大器干扰,因此结果将导致捕获高SNR信号的失败升级,尤其是在微小的脑波信号中。在这项研究中,它设计了一种廉价,专用的高SNR脑波信号测量系统。该系统由改进的捕获系统,记录系统和分析系统组成。为了更好地考虑微型脑波信号的强度和特性,该系统被设计为包括合适的生物放大器,以使能够正确收集脑波信号的侵入性微电极的每个通道,并且提供记录和分析软件,这不能只提取脑波信号的特征,还可以快速对信号进行分类。该系统可以将生物信号从10μV至420μV收集,并且具有高SNR> 30。所提出的系统易于制造,可用于仅为203美元的相对较低的成本制造。来自三个动作的脑波信号也可以很容易地分类,正确的速率高达46.70%。该系统具有六种改进:良好的SNR,能力捕获小信号,模块化,低价格,易于制作,操作简单。

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