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Mobile health monitoring through biotelemetry

Published: 01 April 2009 Publication History

Abstract

As the population ages and the risk of chronic disease increases, the cost of healthcare will rise. Technology for mobile telemetry could reduce cost and improve the efficiency of treatment. In order to achieve these goals, we first need to overcome several technical challenges, including sufficient system lifetime, high signal fidelity, and adequate security. In this paper we present the design, implementation, and evaluation of a Mobile Biotelemetric System (MBS) that addresses these remote medical monitoring challenges. MBS comprises a custom low-power sensor node that accurately collects and analyzes electrocardiogram (ECG) data, a client service with a multifaceted policy engine that evaluates the data, and a web portal interface for visualizing ECG data streams. MBS differs from other remote monitoring systems primarily in the policy engine's ability to provide flexible, robust, and precise system communication from end-to-end and to enable tradeoffs in metrics such as power and transmission frequency. We show that, given a representative set of ECG signals, policies can be set to make the operation of the hardware and software resilient against transient ECG conditions. Further, we incorporate state-of-the-art security practices to safeguard our data and foil common attacks.

References

[1]
U. Anliker, et al. AMON: a wearable multiparameter medical monitoring and alert system. IEEE Trans. on Information Technology in Biomedicine, 8(4):415--427, Dec. 2004.
[2]
L. Biel, et al. ECG analysis: a new approach in human identification. IEEE Trans. on Instrumentation and Measurement, 50(3):808--812, June 2001.
[3]
G. D. Clifford, F. Azuaje, and P. E. McSharry. Advanced Methods and Tools for ECG Data Analysis. Artech House, Norwood, MA, USA, 2006.
[4]
R. K. Ganti, et al. Satire: a software architecture for smart attire. In Int'l Conf. on Mobile Systems, Applications and Services, pages 110--123, Uppsala, Sweden, June 2006.
[5]
A. L. Goldberger, et al. PhysioBank, PhysioToolkit, and PhysioNet: Components of a new research resource for complex physiologic signals. Circulation, 101(23):e215--e220, June 2000.
[6]
B. Gyselinckx, et al. Human++: Emerging technology for body area networks. In IFIP Int'l Conf. on Very Large Scale Integration&System-on-Chip, pages 175--180, Nice, France, Oct. 2006.
[7]
S. A. Israel, et al. ECG to identify individuals. Pattern Recognition, 38(1):133--142, May 2004.
[8]
S. Kumar, et al. Using continuous biometric verification to protect interactive login sessions. In Computer Security Applications Conference, pages 441--450, Tucson, AZ, USA, Dec. 2005.
[9]
K. Lorincz, et al. Sensor networks for emergency response: challenges and opportunities. IEEE Pervasive Computing, 3(4):16--23, Oct. 2004.
[10]
D. Lucani, et al. A portable ECG monitoring device with Bluetooth and Holter capabilities for telemedicine applications. In Int'l Conf. of the IEEE Engineering in Medicine and Biology Society, pages 5244--5247, New York City, NY, USA, Aug. 2006.
[11]
T. Martin, E. Jovanov, and D. Raskovic. Issues in wearable computing for medical monitoring applications: a case study of a wearable ECG monitoring device. In Int'l Symp. on Wearable Computers, pages 43--49, Atlanta, GA, USA, Oct. 2000.
[12]
S. Myagmar, A. J. Lee, and W. Yurcik. Threat modeling as a basis for security requirements. In Symp. on Requirements Engineering for Information Security, Paris, France, Aug. 2005.
[13]
J. Pan and W. J. Tompkins. A real-time QRS detection algorithm. IEEE Trans. on Biomedical Engineering, BME-32(3):230--236, Mar. 1985.
[14]
J. A. Paradiso and T. Starner. Energy scavenging for mobile and wireless electronics. IEEE Pervasive Computing, 4(1):18--27, Jan. 2005.
[15]
C. Park, et al. An ultra-wearable, wireless, low power ECG monitoring system. In IEEE Biomedical Circuits and Systems Conference, London, United Kingdom, Nov. 2006.
[16]
C. C. Poon, Y.-T. Zhang, and S.-D. Bao. A novel biometrics method to secure wireless body area sensor networks for telemedicine and m-health. IEEE Communications Magazine, 44(4):73--81, Apr. 2006.
[17]
B. Shneiderman. The eyes have it: a task by data type taxonomy for information visualizations. In IEEE Symp. on Visual Languages, pages 336--343, Boulder, CO, USA, Sept. 1996.
[18]
M. Steffen, A. Aleksandrowicz, and S. Leonhardt. Mobile noncontact monitoring of heart and lung activity. IEEE Trans. on Biomedical Circuits and Systems, 1(4):250--257, Dec. 2007.
[19]
G. Wübbeler, et al. Verification of humans using the electro-cardiogram. Pattern Recognition Letters, 28(10):1172--1175, July 2007.

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  • (2009)Activity-aware ECG-based patient authentication for remote health monitoringProceedings of the 2009 international conference on Multimodal interfaces10.1145/1647314.1647378(297-304)Online publication date: 2-Nov-2009

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cover image Guide Proceedings
BodyNets '09: Proceedings of the Fourth International Conference on Body Area Networks
April 2009
161 pages
ISBN:9789639799417

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ICST (Institute for Computer Sciences, Social-Informatics and Telecommunications Engineering)

Brussels, Belgium

Publication History

Published: 01 April 2009

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  • (2009)Activity-aware ECG-based patient authentication for remote health monitoringProceedings of the 2009 international conference on Multimodal interfaces10.1145/1647314.1647378(297-304)Online publication date: 2-Nov-2009

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