Accuracy evaluation of an ECG device for heart failure patients self-monitoring: a preliminary study

L. D’Alvia, D. Ferranti, Giacomo Romiti, E. Rizzuto, R. Cangemi, Antonino Laudani, S. Basili, F. R. Fulginei, Z. Del Prete
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引用次数: 2

Abstract

Nowadays, wearable wireless devices represent an exciting challenge both for controlling one's lifestyle and for specific applications like telemedicine and at-home healthcare monitoring. Many low-cost sensors and sensor systems are currently on the market, but only a limited number of them are validated and certified for clinical applications. This paper presents preliminary results of the accuracy assessment of an electrocardiography (ECG) device for cardiovascular disease monitoring that will be applied by the patients for self-checking. In particular, the analog front end integrated circuit MAX30001 is proposed and tested, while the principal features of MAX30001 evaluation board software were described, as well as three cardiac pathologies which require in-depth and continuous ECG monitoring. An accuracy setup was realized to evaluate the acquisition fidelity; it is based on a high-quality waveform generator that imposes to the MAX30001 two different periodic signals: a sine and a sinc with the frequency of 1 Hz to 10 Hz with a 5 Hz step. The accuracy evaluation shows how the integrated circuit provides a normalized root mean square error in the chosen frequency range, lower than 0.01 and lower than 0.20, respectively, for the sine and sinc waveform. Moreover, it presents for sinc signal a peak detection rate of 80%.
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心电仪对心力衰竭患者自我监测的准确性评价:初步研究
如今,可穿戴无线设备代表了一个令人兴奋的挑战,无论是控制一个人的生活方式,还是远程医疗和家庭医疗监测等特定应用。目前市场上有许多低成本的传感器和传感器系统,但只有有限数量的传感器和系统得到了临床应用的验证和认证。本文介绍了一种用于心血管疾病监测的心电图(ECG)装置的准确性评估的初步结果,该装置将用于患者的自我检查。特别提出并测试了模拟前端集成电路MAX30001,同时描述了MAX30001评估板软件的主要功能,以及需要深入和连续心电监测的三种心脏病变。实现了精度设置,以评估采集保真度;它基于一个高质量的波形发生器,施加给MAX30001两个不同的周期信号:正弦和正弦频率为1 Hz至10 Hz,步进为5 Hz。准确度评估显示了集成电路如何在所选频率范围内提供归一化的均方根误差,分别低于0.01和低于0.20的正弦和正弦波形。对正弦信号的峰值检测率可达80%。
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