心电远程监护系统的研制

Akg Cazaes, NY Kim, Adriana DM Del Monaco
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引用次数: 1

摘要

使用传统的心电图系统对心脏活动的持续监测限制了信号采集的特定位置,如医院和医疗诊所,霍尔特系统不会将心电图信息传递给医生,如果患者患有心脏异常,他们也不会做出反应,他们只是记录信息。便携式远程系统可以在任何地方采集信号,为患者提供移动性和舒适性。本文展示了一种心脏活动的远程监测系统,该系统能够使用具有Android,蓝牙®通信和3G技术的智能手机进行心电信号的采集,以处理和可视化心电信号。该设计的系统由电池供电,三个电极连接在患者的胸部以获取信号。开发了一种低功耗电子电路,用于使用仪表和运算放大器获取和调理这些信号。处理后的心电信号由Arduino Nano进行数字化处理,并通过蓝牙从Arduino传输到患者的智能手机,然后通过3G技术发送到工作站,在那里医生可以对心电图进行分析。测试结果验证了所开发的样机在示波器和开发的Android应用程序中获取的心电信号,并将其与传统心电图系统获得的心电信号进行了比较。该系统旨在实现不依赖于时间和患者位置的信号采集和传输,实现心血管疾病的早期诊断,减少医生的就诊次数,并为患者在日常活动中监测心电图信号提供更舒适的设备。
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Development of a ECG remote monitoring system
The continuous monitoring of cardiac activity using conventional electrocardiography systems restricts signals acquisition to specific locations such as hospitals and medical clinics, and Holters systems don’t transmit the information about the electrocardiogram to the doctor and don’t react if the patient suffers from a cardiac abnormality, they only record the information. Portable remote systems have shown to provide mobility and comfort to the patient by allowing signals acquisition anywhere. This paper shows a remote monitoring system of the cardiac activity capable of performing the acquisition of ECG signals using a smartphone having Android, Bluetooth® communication and 3G technology for processing and visualizing ECG signals. The designed system is battery powered and three electrodes are attached to the patient’s chest to obtain the signals. It was developed a low consumption electronic circuit for acquiring and conditioning these signals using instrumentation and operational amplifiers. The processed ECG signal is then digitalized by an Arduino Nano, and transmitted by Bluetooth from Arduino to the patient’s smartphone so it can be sent to a workstation through 3G technology where the electrocardiogram may be analyzed by a physician. The results obtained on the tests performed validate the developed prototype regarding the acquired ECG signals in the oscilloscope and the developed Android application, which were compared with the ECG signals obtained using a conventional electrocardiography system. The proposed system aims to perform signal acquisition and transmission independent of time and the patient’s location, allow early diagnosis of cardiovascular diseases, reduce the number of the doctor’s visits required, besides providing a device more comfortable to the patient during the monitoring of electrocardiogram signals while performing daily activities.
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