Calibration of Elctrocardiograph (ECG) Simulators

Steven S. L. Yang
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Abstract

The Standards and Calibration Laboratory (SCL) in Hong Kong has set up a calibration facility for electro-cardio graph (ECG) simulators. ECGs are medical devices designed to measure the electrical signals associated with cardiac activity. They are used to diagnose heart diseases and arrhythmias, which are commonly used in hospitals, emergency facilities and medical institutes. Routine performance check of ECGs could be performed by ECG simulator. In order to ensure the accuracy of the instruments, calibration procedures which are traceable to primary standards or SI units are essential. At the SCL, the output signal from an ECG simulator is measured by a differential amplifier and a high speed digital sampling system. The system also includes a reference voltage source, an inductive voltage divider and a control computer. Digital sampling system enables the calibration of non-sinusoidal wave with high accuracy. Signal characteristics including signal amplitude, frequency and wave form could be evaluated by an in-house developed program for normal sinus rhythm waveforms as well as for ECG performance waveforms (sinusoidal, triangle, square and pulse). Since the test signal is in the sub-millivolt (mV) range, a differential amplifier with high common mode rejection ratio is used to amplify the test signal. The frequency response of the differential amplifier is calibrated by a reference voltage source and an inductive voltage divider, whereas the digital sampling system is calibrated against the laboratory's voltage and frequency reference standards. The developed calibration system is capable of measuring signals in the sub-mV level with test uncertainty ratio (TUR) better than 4. Details of the system configurations and the uncertainty evaluation will be described in the paper.
校准心电图(ECG)模拟器
香港的标准及校正实验所已为心电图(ECG)模拟器设立校正设施。心电图是用来测量与心脏活动相关的电信号的医疗设备。它们被用来诊断心脏病和心律失常,这在医院、急救设施和医疗机构中是常用的。心电模拟器可用于心电图的常规性能检查。为了确保仪器的准确性,可追溯到主要标准或SI单位的校准程序是必不可少的。在SCL中,心电模拟器的输出信号由差分放大器和高速数字采样系统测量。该系统还包括参考电压源、电感分压器和控制计算机。数字采样系统使非正弦波的校准具有很高的精度。信号特征包括信号幅度、频率和波形,可以通过内部开发的正常窦性心律波形以及ECG表现波形(正弦、三角形、方形和脉冲)的程序进行评估。由于测试信号在亚毫伏(mV)范围内,因此使用具有高共模抑制比的差分放大器对测试信号进行放大。差分放大器的频率响应由参考电压源和电感分压器校准,而数字采样系统则根据实验室的电压和频率参考标准进行校准。所研制的标定系统能够测量亚毫伏级信号,测试不确定度比(TUR)大于4。本文将详细介绍系统配置和不确定度评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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