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Published in: Health and Technology 5/2020

11-07-2020 | Original Paper

An optimized ECG android system using data compression scheme for cloud storage

Authors: Eduardo Giometti Bertogna, Francisco Muller Machado, Miguel Antonio Sovierzoski

Published in: Health and Technology | Issue 5/2020

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Abstract

In the field of biomedical engineering, there is a lot of research being done in long term electrocardiographic (ECG) monitoring, and one of the most promising one concerns the transmission of compressed electrocardiographic signal throughout the internet, so that at the receiver side it arrives with minimum distortion, yet not demanding too much computational power from the processor to be decompressed. Other situations arrive when synchronization is a problem, and as a result may also require the storage of the signal in a cloud, for further examination by the medical staff. Another problem focuses on a reduced bandwidth for the transmission due to the huge amount of data obtained after a long term ECG monitoring of up to twelve ECG leads from the patient. In order to try solving these problems, this paper presents a ECG system using advances in Mobile Cloud Computing (MCC) focusing on its storage services, as well as concepts of ECG signal compression for an optimal processing power usage and transmission over Internet Protocol and making use of a free of charge cloud services. The task of compressing the ECG signal was made using vector quantization approach with reduced processing consumption by the mobile device. The system’s performance resulted quite suitable to be applied in patients remote ECG monitoring with very low signal distortion - maintaining its morphological information, good compression rate and reduced bandwidth for data transmission and storage. In conclusion, the system’s architecture and concepts presented here have a potential use in telemedicine systems.

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Literature
1.
go back to reference Jalaleddine SM, Hutchens CG, Stratton RD, Coberly WA. ECG data compression techniques – a unified approach. IEEE Trans Biomed Eng. 1990;37:329–43.CrossRef Jalaleddine SM, Hutchens CG, Stratton RD, Coberly WA. ECG data compression techniques – a unified approach. IEEE Trans Biomed Eng. 1990;37:329–43.CrossRef
2.
go back to reference Schooley B, Abed Y, Murad A, Horan TA, Roberts J. Design and field test of a mHealth system for emergency medical services. Health Technol. 2013;3:327–40.CrossRef Schooley B, Abed Y, Murad A, Horan TA, Roberts J. Design and field test of a mHealth system for emergency medical services. Health Technol. 2013;3:327–40.CrossRef
3.
go back to reference Kumar R, Kumar AR, Pandey RK. Beta wavelet based ECG signal compression using lossless encoding with modified thresholding. Comput Electr Eng. 2013;39:130–40.CrossRef Kumar R, Kumar AR, Pandey RK. Beta wavelet based ECG signal compression using lossless encoding with modified thresholding. Comput Electr Eng. 2013;39:130–40.CrossRef
4.
go back to reference Ciocoiu IB. ECG signal compression using 2D wavelet foveation. Int J Adv Sci Technol. 2009;13:15–26. Ciocoiu IB. ECG signal compression using 2D wavelet foveation. Int J Adv Sci Technol. 2009;13:15–26.
5.
go back to reference Huang B, Wang Y, Chen J. 2-D compression of ECG signals using ROI mask and conditional entropy coding. IEEE Trans Biomed Eng. 2009;56(4):1261–3.CrossRef Huang B, Wang Y, Chen J. 2-D compression of ECG signals using ROI mask and conditional entropy coding. IEEE Trans Biomed Eng. 2009;56(4):1261–3.CrossRef
6.
go back to reference Tai SC, Sun CC, Yan WC. A 2-D ECG compression method based on wavelet transform and modified SPIHT. IEEE Trans Biomed Eng. 2005;52(6):999–1008.CrossRef Tai SC, Sun CC, Yan WC. A 2-D ECG compression method based on wavelet transform and modified SPIHT. IEEE Trans Biomed Eng. 2005;52(6):999–1008.CrossRef
7.
go back to reference Ravelomanantsoa A, Rabah H, Rouane A. Simple and efficient compressed sensing encoder for wireless body area network. IEEE Trans Instrum Measur. 2014;63(12):2973–82.CrossRef Ravelomanantsoa A, Rabah H, Rouane A. Simple and efficient compressed sensing encoder for wireless body area network. IEEE Trans Instrum Measur. 2014;63(12):2973–82.CrossRef
8.
go back to reference Lu Z, Kim DY, Pearlman WA. Wavelet compression of ECG signals by the set partitioning in hierarchical trees algorithm. IEEE Trans Biomed Eng. 2000;47(7):849–56.CrossRef Lu Z, Kim DY, Pearlman WA. Wavelet compression of ECG signals by the set partitioning in hierarchical trees algorithm. IEEE Trans Biomed Eng. 2000;47(7):849–56.CrossRef
9.
go back to reference Wang X, Meng J. A 2-D compression algorithm based on wavelet transforms and vector quantization. Digital Signal Process. 2008;18(2):179–88.MathSciNetCrossRef Wang X, Meng J. A 2-D compression algorithm based on wavelet transforms and vector quantization. Digital Signal Process. 2008;18(2):179–88.MathSciNetCrossRef
10.
go back to reference Wei JJ, Chang CJ, Chou NK, Jan GJ. ECG data compression using truncated singular value decomposition. IEEE Trans Inf Technol Biomed. 2001;5(4):290–9.CrossRef Wei JJ, Chang CJ, Chou NK, Jan GJ. ECG data compression using truncated singular value decomposition. IEEE Trans Inf Technol Biomed. 2001;5(4):290–9.CrossRef
11.
go back to reference Bertonha E, Zanchin CI, Klautau A. ECG data compression with vector quantization using k-dimensional tree for fast search. London, UK: Proceedings of Computers in Cardiology Conference; 1993. p. 515–8. Bertonha E, Zanchin CI, Klautau A. ECG data compression with vector quantization using k-dimensional tree for fast search. London, UK: Proceedings of Computers in Cardiology Conference; 1993. p. 515–8.
12.
go back to reference Mueller WC. Arrhythmia detection program for an ambulatory ECG monitor. Biomed Sci Instrum. 1978;14:81–5. Mueller WC. Arrhythmia detection program for an ambulatory ECG monitor. Biomed Sci Instrum. 1978;14:81–5.
13.
go back to reference Hanlin C, Hongwei L. A remote electrocardiogram monitoring system with good swiftness and high reliability. Comput Electr Eng. 2016;53:191–202.CrossRef Hanlin C, Hongwei L. A remote electrocardiogram monitoring system with good swiftness and high reliability. Comput Electr Eng. 2016;53:191–202.CrossRef
14.
go back to reference Wang L, Yu Y, Huang Q, Yang J, Zhao Z. The design and implementation of the MD5 algorithm based on FPGA. Appl Mech Mater. 2013;427-429:806–9.CrossRef Wang L, Yu Y, Huang Q, Yang J, Zhao Z. The design and implementation of the MD5 algorithm based on FPGA. Appl Mech Mater. 2013;427-429:806–9.CrossRef
15.
go back to reference Guo SL, Han LN, Liu HW, Si QJ, Kong DF, Guo FS. The future of remote ECG monitoring systems. J Geriatr Cardiol. 2016;13:528–30. Guo SL, Han LN, Liu HW, Si QJ, Kong DF, Guo FS. The future of remote ECG monitoring systems. J Geriatr Cardiol. 2016;13:528–30.
16.
go back to reference Linde Y, Buzo A, Gray R. An algorithm for vector Quantizer design. IEEE Trans on Communications. 1980;28(1):84–95.CrossRef Linde Y, Buzo A, Gray R. An algorithm for vector Quantizer design. IEEE Trans on Communications. 1980;28(1):84–95.CrossRef
17.
go back to reference Ramasubramanian V, Paliwal K. Fast K-dimensional tree algorithms for nearest neighbor search with application to vector quantization encoding. IEEE Trans Signal Proc. 1992;40:518–31.CrossRef Ramasubramanian V, Paliwal K. Fast K-dimensional tree algorithms for nearest neighbor search with application to vector quantization encoding. IEEE Trans Signal Proc. 1992;40:518–31.CrossRef
Metadata
Title
An optimized ECG android system using data compression scheme for cloud storage
Authors
Eduardo Giometti Bertogna
Francisco Muller Machado
Miguel Antonio Sovierzoski
Publication date
11-07-2020
Publisher
Springer Berlin Heidelberg
Published in
Health and Technology / Issue 5/2020
Print ISSN: 2190-7188
Electronic ISSN: 2190-7196
DOI
https://doi.org/10.1007/s12553-020-00464-z

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