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1.
Chinese Journal of Medical Instrumentation ; (6): 487-490, 2020.
Article in Chinese | WPRIM | ID: wpr-880396

ABSTRACT

This paper designs a bluetooth-based low-power multi-parameter monitoring system. The system is mainly composed of ECG signal acquisition, respiratory signal acquisition, body temperature acquisition, bluetooth 4.0 transmission module and Android mobile phone APP display. The system collects the corresponding physiological signals through various collection parts, and can realize the monitoring of three physiological signals of electrocardiogram, respiration and body temperature. The Android mobile APP can display ECG, respiratory waveform and temperature data in real time. The system is small in size and low in power consumption, and has a good application prospect in portable and wearable medical applications.


Subject(s)
Humans , Body Temperature , Cell Phone , Electrocardiography , Mobile Applications , Monitoring, Physiologic/instrumentation , Respiratory Rate
2.
China Medical Equipment ; (12): 34-36,37, 2014.
Article in Chinese | WPRIM | ID: wpr-599353

ABSTRACT

Objective:In order to achieve the use of community medical care and branch doctor resources, to provide monitoring of remote diagnosis, providing more convenient, safe and efficient medical service for patients and hospital objective. Methods:Multi parameter remote monitoring system design of special model of WIFI wireless technology, including special new WIFI module, wearable multi parameter telemetry monitor, wireless relay box network and medical monitoring software, testing and data transmission of ECG, respiration, blood oxygen using a wireless network, can the patient monitoring in normal life condition. Results:Whenever and wherever possible the electrophysiological data sent to the hospital, the doctor can according to the electrophysiological data of the patient for remote diagnosis and further treatment. The accuracy of the stability, the reliability of the system and the parameters of the tested strictly, data transmission accurate rate reaches more than 98%. Conclusion: The patients and doctors have been received good feedback, clinical trials, has very practical clinical significance.

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