用于远程医疗评估的安全脑电图模拟器

Azhar Kassem Flayeh, Azmi Shawkat Abdulbaqi, I. Y. Panessai
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摘要

脑电图模拟器(EEG Simulator)或通常称为EEG spectre,原则上是一种“类脑电图”信号或已记录的脑电图信号形式的信号发生器。本论文的目的是设计一个EEG模拟器工具。本设计主要通过以下几个阶段:电路设计和电路测试。本设计基于Arduino UNO,使用12位数模转换器将Arduino UNO输出的数字数据转换为脑电图信号形式的模拟数据。根据测量结果,在BPM设置为30时,得到了0.20%灵敏度为0.5mV、0.22%灵敏度为1.0mV、0.22%灵敏度为2.0mV的误码率(ER),在BPM设置为60时,得到了0.342%灵敏度为0.5mV、0.60%灵敏度为1.0mV、0.432%灵敏度为2.0mV的误码率,在BPM设置为120时,得到了0.121%灵敏度为0.5mV、0.1%灵敏度为1.0mV、0.1%灵敏度为2.0mV的误码率。在180 BPM设置下,0.5mV灵敏度为0.423%,1.0mV灵敏度为0.310%,2.0mV灵敏度为0.520%;在240 BPM设置下,0.5mV灵敏度为0.246%,1.0mV灵敏度为0.230%,2.0mV灵敏度为0.246%。
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A Secure EEG Simulator for Remote Healthcare Evaluation
Electroencephalogram (EEG) Simulator or often called EEG Specter in principle is a signal generator in the form of an "EEG-like" signal or EEG signal that has been recorded. The purpose of this manuscript is to design an EEG Simulator tool. The design through the stages as follows: circuit design and circuit testing. This design is based on Arduino UNO and uses 12-bit Digital to Analog Converter to convert Digital data which is the output of Arduino UNO into Analog data in the form of EEG signals. Based on the measurement results obtained an error rate (ER) of 0.420% sensitivity of 0.5mV, 0.22% sensitivity of 1.0mV, and 0.22% sensitivity of 2.0mV in the BPM setting 30, obtained an ER value of 0.342% sensitivity of 0.5mV, 0.460% sensitivity of 1.0mV, and 0.432 % sensitivity of 2.0mV at BPM setting 60, obtained an error rate value of 0.121% sensitivity of 0.5mV, 0.1% sensitivity of 1.0mV, and 0.1% sensitivity of 2.0mV at setting BPM 120, obtained an error rate value of 0.423% sensitivity of 0.5mV, 0.310% 1.0mV sensitivity, and 0.520% 2.0mV sensitivity at 180 BPM settings and 0.246% 0.5mV sensitivity, 0.230% 1.0mV sensitivity and 0.246% 2.0mV sensitivity at 240 BPM settings.
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