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Biomonitoring Laboratory Oriented to Software Applications Development


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[1] T.R. Harris, J.D. Bransford, and S.P. Brophy, Roles for Learning Sciences and Learning Technologies in Biomedical Engineering Education: A Review of Recent Advances, Annual Rev. Biomed. Eng. 4:29–48, 2002. Search in Google Scholar

[2] World Health Organization, mHealth – New horizons for health through mobile technologies, 2011. www.who.int/goe/publications/goe_mhealth_web.pdf. Search in Google Scholar

[3] Al. Pantelopoulos and N.G. Bourbakis, A Survey on Wearable Sensor-Based Systems for Health Monitoring and Prognosis, IEEE Transaction on Systems, Man, and Cybernetics – Part C: Applications and Reviews, Vol. 40, No. 1, 2010. Search in Google Scholar

[4] A. Rangarajan, Review: Emerging Trends in Healthcare Adoption of Wireless Body Area Networks. Biomedical Instrumentation & Technology, 50(4):264, 2016. Search in Google Scholar

[5] P. Mohan et al. MediNet: Personalizing the self-care process for patients with diabetes and cardiovascular disease using mobile telephony, In: Conference Proceedings IEEE Engineering in Medicine and Biology Society. New Jersey, pp. 755–758, 2008. Search in Google Scholar

[6] A.M. Paraschiv., C. Cepisca, C. Banica, A. Enache, Remote Monitoring ECG Signals System, International Symposium on Advanced Topics in Electrical Engineering (ATEE), 2011. Search in Google Scholar

[7] F. Adochiei, I.R. Edu and N. Adochiei, Comparative Filtering Methods for Noisy ECG Signals, Conference on E-Health and Bioengineering (EHB), Romania, pp. 85-88, 2011 Search in Google Scholar

[8] M. Calin, A.M. Dumitrescu, M. Asprou, et. al. Measurement Data Aggregation for Active Distribution Networks, Conference Proceedings of IEEE Applied Measurements (AMPS), Aachen, pp. 144-149, 2013. Search in Google Scholar

[9] S.D. Deshmukh, S.N. Shilaskar, Wearable sensors and patient monitoring system: A Review, Conference on Pervasive Computing (ICPC), 2015. Search in Google Scholar

[10] S.V. Paţurcă, Virtual Instrumentation for Biomonitoring, Ed. Printech, Romania, 2014. Search in Google Scholar

[11] R. Lindberg; J. Seo; T.H. Laine, Enhancing Physical Education with Exergames and Wearable Technology, IEEE Transactions on Learning Technologies, Vol.PP, Issue: 99, 2016. Search in Google Scholar

[12] S.V. Paţurcă, C.K. Bănică, S.D. Grigorescu, St. Gheorghe, Software Platform for Patients Biomonitoring Using Wearable Devices, Journal of Biotechnology, vol. 231, pp. S104, 2016 Search in Google Scholar

[13] S.A Hameed., S. Mustapha, A. Mardhiyah, V. Miho, Electronic medical record for effective patient monitoring database, Computer and Communication Engineering (ICCCE), 2008. Search in Google Scholar

[14] J. Fleming, R. M Iyer, M. Shortis, H. Vuthaluru, K. Xing, and & B Moulton, Biomedical engineering curricula: trends in Australia and abroad, World Transactions on Engineering and Technology Education, Vol.10, No.1, 2012 Search in Google Scholar

[15] https://physionet.org/ Search in Google Scholar

[16] A. Goldberger, L. Amaral, L. Glass, J Hausdorff, P. Ivanov, R Mark, J Mietus, G Moody, CK Peng, H Stanley. PhysioBank, PhysioToolkit, and PhysioNet: Components of a New Research Resource for Complex Physiologic Signals. Circulation 101(23):e215-e220 http://circ.ahajournals.org/cgi/content/full/101/23/e215]; 2000; PMID: 10851218; doi: 10.1161/01.CIR.101.23.e215 Search in Google Scholar

[17] https://www.zephyranywhere.com/ Search in Google Scholar