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Portable Health Monitoring Device for Electrocardiogram and Impedance Cardiography Based on Bluetooth Low Energy |
State Key Laboratory of Transducer Technology, Institute of Electronics, Chinese Academy of Sciences, Beijing 100190, China University of Chinese Academy of Sciences, Beijing 100190, China Navy General Hospital of PLA, Beijing 100048, China |
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Abstract Portable health monitoring device could benefit the life quality of patients as well as decreasing health
care costs. Monitoring Electrocardiogram (ECG) and Impedance Cardiography (ICG) simultaneously
can help evaluate cardiovascular disease comprehensively. However most of the ICG monitoring devices
are only used in clinical measurement instead of family monitoring. Based on the above concern, this
paper designed a portable health monitoring device based on Bluetooth Low Energy (BLE) which
is valued for its ultra-low power consumption for long-term continuous non-invasive cardiac activity
monitoring by measuring ECG, ICG, acceleration and angular acceleration of body. There are mainly
four advantages of this device: 1) High integration: ECG, ICG, acceleration and angular acceleration can
be monitored in a single circuit; 2) Low power consumption: The device can monitor continuously for
over 83 hours when powered by a 3.7 V lithium polymer battery with 1000 mAh; 3) Small size: The area
of the PCB is only 30 mm£40 mm, so it is very easy to be attached to clothes; 4) Wireless communication:
The acquired data can be transmitted to a personal computer or a smart phone wirelessly via Bluetooth.
Different body postures (upright or supine) can result in change of ICG signal, which can be used for
adjusting patients' hemodynamic parameters.
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Fund:
This paper was supported by funds of National High Technology Research and Development Pro-
gram of China (863 program-2012AA040506, 2013AA041201), National Natural Science Founda-
tion of China (No. 61302033).
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Cite this article: |
Xinyu Hu,Xianxiang Chen,Ren Ren, et al. Portable Health Monitoring Device for Electrocardiogram and Impedance Cardiography Based on Bluetooth Low Energy[J]. Journal of Fiber Bioengineering and Informatics, 2014, 7(3): 397-408.
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[1] Shyu LY, Chiang CY, Liu CP, Hu WC. Portable impedance cardiography system for real-time
noninvasive cardiac output measurement. Journal of Medical and Biological Engineering: 2000;
20(4): 193-202.
[2] BioZ Operator/Service Manual, CardioDynamics International Corporation.
[3] Peacock WF, Summers RL, Vogel J, Emerman CE. Impact of impedance cardiography on diag-
nosis and therapy of emergent dyspnea: The ED-IMPACT trial. Society for Academic Emergency
Medicine: April 2006; Vol. 13; No. 4.
[4] Mackensen E, Lai M, Wendt TM. Bluetooth Low Energy (BLE) based wireless sensors. 978-1-
4577-1767-3/12/©2012 IEEE.
[5] Woltjer H, Meer V. Comparison between spot and band electrodes and between two equations for
calculation of stroke volume by means of impedance cardiography. Medical Biological Engineering
Computing: 1995.
[6] Brown BH, Wilson AJ, and Filho B. Biomedical electronics Bipolar and tetra polar transfer
impedance measurements from volume conductor. Electron. Letter: 2000; 36.
[7] BLE113 Datasheet, Bluegiga.
[8] ADS1292R Datasheet, Texas Instruments.
[9] Data analysis and management software (DAMS) for the Vrije Universiteit Ambulatory Monitoring
System (VU-AMS), Manual version 1.1, January 2013.
[10] MPU6050 Datasheet, InvenSense.
[11] CORCIOVA C, ZAHARIA D. Measuring system of hemodynamic parameters using electrical
impedance. Annals of the University of Craiova: Electrical Engineering series; 2011; No. 35.
[12] Piskulak P, Cybulski G, Niewiadomski W, and PaÃlko T. Computer program for automatic identi-
fication of artifacts in impedance cardiography signals recorded during ambulatory hemodynamic
monitoring. XIII Mediterranean Conference on Medical and Biological Engineering and Computing
2013: IFMBE Proceedings 41.
[13] Sodolski T, Kutarski A. Impedance Cardiography: A valuable method of evaluating haemodynamic
parameters. Cardiology Journal: 2007; Vol. 14; No. 2, 115-126.
[14] Altes VS. AD5933-based system for transthoracic impedance measurements. Final Degree Thesis
30 ECTS: Erasmus 2011-12 Sweden Thesis N±2/2012, Signal Processing and Communications. |
|
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