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Models and collaboration in medical cyber-physical systems design

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The presentation introduces recent advances in networked embedded computing, namely cyber-physical systems (CPSs). CPS is characterized by a tight integration of embedded computing with physical processes, as well as use of advanced networking technologies. Cyber-physical systems demonstrate an extremely broad potential for new applications in general. Those in medicine can dramatically change numerous healthcare procedures and medical workflows. At the same time, designing of a cyber-physical system comprises many challenges. These challenges are related to required dependability, heterogeneity, multidisciplinary design team, and multirole human-machine interfaces among others. The main design strategies for cyber-physical systems are design model-based. They need however to be extended with knowledge modeling and support for distributed multidisciplinary collaboration.
Rocznik
Tom
Strony
11--16
Opis fizyczny
Bibliogr. 25 poz., rys.
Twórcy
autor
  • Institute of Electronics, Silesian University of Technology, 16 Akademicka Str., 44-100 Gliwice
Bibliografia
  • [1] AVIZIENIS, A., LAPRIE, J.C., RANDALL, B., AND LANDWEHR, C., Basic concepts and taxonomy of dependable and secure computing, IEEE Transactions On Dependable And Secure Computing, 2004, Vol. 1, pp. 11–33.
  • [2] EILKERLING H-J, GRAEFE G., ROEHR F., SCHNEIDER W., Ambient Heathcare Systems - Using the Hydra Embedded Middleware for Implementing an Ambient Disease Management System, HEALTHINF 2009 - Int. Conference on Health Informatics, Porto, Portugal.
  • [3] EUROPEAN COMMISSION, eHealth Action Plan 2012-2020 - Innovative healthcare for the 21st century, Brussels, 2012.
  • [4] GUY P., MIROU J., CLAUDE S., Systematic review of home telemonitoring for chronic diseases: The evidence base, J. Amer. Med. Inf. Assoc., 2007, Vol. 14, pp. 269-277.
  • [5] HANSON M., POWELL H. JR., BARTH A., RINGGENBERG K., CALHOUN., AYLOR J., LACH J., Body Area Sensor networks: Challenges And opportunities, Computer, Jan. 2009.
  • [6] JENSEN J. C., CHANG D. H., LEE E. A., A Model-Based Design Methodology for Cyber-Physical Systems, Proc. 7th Int. Wireless Communications and Mobile Computing Conference (IWCMC), 2011.
  • [7] JEZEWSKI J., ROJ D., WROBEL J., HOROBA K., A novel technique for fetal heart rate estimation from Doppler ultrasound signal, Biomedical Engineering Online, 2011, Vol.10:92, pp. 1–17.
  • [8] JORGENSEN H., et al., MAPPER Collaboration Platform for Knowledge Intensive Engineering Processes, [in:] Abramowicz W., Tolksdorf R., Wcel K. (eds.): BIS 2010 Workshops, LNBIP 57, 2010, Springer-Verlag Berlin Heidelberg.
  • [9] KING A., ARNEY D., LEE I., SOKOLSKY O., HATCLIFF J., PROCTER S., Prototyping Closed Loop Physiologic Control with the Medical Device Coordination Framework, SEHC (Software Engineering in Health Care), May 3-4, 2010, Cape Town, South Africa.
  • [10] KROES N., eHealth: challenges and opportunities for the future, Vice-President of the European Commission for the Digital Agenda, Opening of the Ministerial eHealth Conference, Budapest, 10.05.2011.
  • [11] LEE E., Cyber Physical Systems: Design Challenges, 11th IEEE Symp. on Object Oriented Real-Time Distributed Computing (ISORC), 2008.
  • [12] LEE I., SOKOLSKY O., Medical Cyber Physical Systems, Proc. IEEE Design Automation Conference, Proc. of the 47th Design Automation Conference, 2010, Anaheim, CA, USA.
  • [13] LEE I., SOKOLSKY O., et al., Challenges and Research Directions in Medical Cyber-Physical Systems, Proc. of the IEEE, Jan. 2012, Vol. 100, No.1.
  • [14] LILLEHAGEN FRANK M., The foundations of AKM technology. Enhanced Interoperable Systems, Proc. of the 10th ISPE Int. Conf. on Concurrent Engineering (ISPE CE 2003), 2003, Madeira, Portugal.
  • [15] Medical Device ”Plug-and-Play” Interoperability Program, http://mdpnp.org/
  • [16] National Institute of Standards and Technology (NIST), Strategic R&D Opportunities for 21st Century Cyber-Physical Systems, Foundations for Innovation in Cyber-Physical Systems Workshop, 13-14.03.2012, Rosemont, US.
  • [17] PAWLAK A., Collaborative Engineering - challenges for distributed collaboration and management, Organization and Management, Scientific quarterly, Silesian Univ. of Technology, Gliwice, 2013, Vol. 23, No. 3, pp. 121–146.
  • [18] PAWLAK A., PENKALA P., FRAS P., et al., Distributed Collaborative Design of a Mixed-Signal IP Component, DSD2009, 12th EUROMICRO Conf. on Digital System Design Architectures, Methods and Tools, Patras, Greece, 27-29 August 2009.
  • [19] RAJKUMAR, LEE, SHA, STANKOVIC, Cyber-physical systems: the next computing revolution, Proc. of the 47th Design Automation Conference, 2010, Anaheim, CA, USA.
  • [20] ROJ D., HOROBA K., WROBEL J., KOTAS M., JEZEWSKI J., PRZYBYLA T., Telemedical application for centralized home care of high-risk pregnancy based on control sharing approach, IFMBE Proceedings of the World Congress on Medical Physics and Biomedical Engineering, Munich, IX 2009, Vol. 25, pp. 59–62.
  • [21] SLOMKA F., KOLLMANN S., MOSER S., KEMPF K., A Multidisciplinary Design Methodology for Cyber-physical Systems, 4th Int. Workshop on Model Based Architecting and Construction of Embedded Systems, Wellington, New Zealand, 2011.
  • [22] DCPS - the network project on Dependable Cyber Physical Systems, www.iele.polsl.pl/̃pawlak/DCPS/
  • [23] www.abiresearch.com/press/
  • [24] SENIOR EU project, www.seniorproject.eu,
  • [25] EMERGE Emergency monitoring and prevention, www.emerge-project.eu/
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-11e35fda-1d61-4469-87fe-50541daf7d50
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