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Remote access into virtual web laboratory - application in medicine

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Języki publikacji
EN
Abstrakty
EN
The paper introduces the need of improving skills level of students using Internet network. The solution has been discussed on an example with remarks for the medical diagnostic devices. The laboratory, which is not large enough, for performing all needed training courses, can be provided the trainee after their main work hours. The elaborated solution is supported by various training interfaces, provided by standard Learning Management System (LMS) and the applications controlling machine called Multimedia Applications Management Shell (MAMS). The example platforms were supported by networking Debian Linux services and an open-source technology that is used freely, by many developers.
Rocznik
Tom
Strony
91--96
Opis fizyczny
Bibliogr. 13 poz., rys.
Twórcy
autor
  • Transport Informatics Systems Department, Silesian Technical University, Poland
autor
Bibliografia
  • [1] CISCO academy – courses introduction (Cisco Systems, Inc.) 25.06.2009. http://www.cisco.com/web/learning/netacad/academy/index.html
  • [2] PIECHA J., The distribution and content platforms coordination for applications management, Research Reports on Distance Learning Technologies, ISBN 83-922374-1-2 pp. 132-139 Katowice 2006.
  • [3] PIECHA J., BERNAS M., Interactions Validation Methods for Training Resources Control Engine Development. CE Conference IIS, Varazdin, Croatia 2008.
  • [4] PIECHA J., The interactive explorer of web presentation units. Published in ITI 2002 book of Conference Proceedings, ISBN 953-96769-5-9; IEEE Catalog no. 02EX534, pp. 437-442.
  • [5] PIECHA J., Remarks to CAL systems design. Proc. of Int. TEMPUS Conf.: "Computer Aided Learning and Simulation Technologies." Prague,.pp. 26-29, June 24-27 1991.
  • [6] BERNAŚ M., PIECHA J., Web databases descriptors defined by means of pseudo-natural language items. IEEE Proceedings of 2009 International Conference on Computional Aspects of Social Networks, pp 165-170. France 2009.
  • [7] WEICHENG X., XIA Y., A Virtual Laboratory Platform and Simulation Software Based on Web. 2008 10th Intl. Conf. on Control, Automation, Robotics and Vision Hanoi, Vietnam, 17–20 December 2008.
  • [8] DUARTE M., BUTZ B. P., An Intelligent Universal Virtual Laboratory (UVL). IEEE Transactions On Education, Vol. 51, No. 1, February 2008
  • [9] URAN S., JEZERNIK K., Virtual Laboratory for Creative Control Design Experiments. IEEE Transactions On Education, Vol. 51, No. 1, February 2008
  • [10] SIMON L., XML in a Nutshell, Third Edition, O’Reilly, ISBN 0-596-00764-7, 2004.
  • [11] LESH K., WEININGER S., GOLDMAN J. M., Medical Device Interoperability – Assessing the Environment. Joint Workshop on High Confidence Medical Devices, Software, and Systems and Medical Device Plug-and-Play Interoperability, 2007.
  • [12] HOTCHKISS J., ROBBINS J., ROBKIN M., MD-Adapt - A Proposed Architecture for Open-Source Medical Device Interoperability. Joint Workshop on High Confidence Medical Devices, Software, and Systems and Medical Device Plug-and-Play Interoperability, 2007.
  • [13] FREHILL P., CHAMBERS D., ROTARIU C., Using Zigbee to Integrate Medical Devices. Proceedings of the 29th Annual International Conference of the IEEE EMBS Cité Internationale, Lyon, France, 2007.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-PWA4-0002-0017
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