@inproceedings{MenseForjanHerzogetal., author = {Mense, Alexander and Forjan, Mathias and Herzog, Juliane and Urbauer, Philipp and Sauermann, Stefan}, title = {Setting up a Virtual Test Environment for User Group Specific Practical Exercises in eHealth eLearning Courses}, series = {Current Developments in Web-Based Learning. Proceedings of the ICWL 2015}, booktitle = {Current Developments in Web-Based Learning. Proceedings of the ICWL 2015}, subject = {eHealth}, language = {en} } @article{UrbauerSauermannFrohneretal., author = {Urbauer, Philipp and Sauermann, Stefan and Frohner, Matthias and Forjan, Mathias and Pohn, Birgit and Mense, Alexander}, title = {Applicability of IHE/Continua components for PHR systems: Learning from experiences}, series = {Computers in biology and medicine}, journal = {Computers in biology and medicine}, subject = {PHR}, language = {en} } @misc{PastekaForjan, author = {Pasteka, Richard and Forjan, Mathias}, title = {Evaluation of an Active Lung Simulator for Aerosol Inhalation Test Replacement}, subject = {Lung Simulator}, language = {en} } @misc{MenseForjanHerzogetal., author = {Mense, Alexander and Forjan, Mathias and Herzog, Juliane and Urbauer, Philipp and Sauermann, Stefan}, title = {Setting up a Virtual Test Environment for User Group Specific Practical Exercises in eHealth eLearning Courses}, subject = {eHealth}, language = {de} } @misc{HerzogForjanSauermannetal., author = {Herzog, Juliane and Forjan, Mathias and Sauermann, Stefan and Mense, Alexander and Urbauer, Philipp}, title = {Development of a Virtual Lab for Practical eLearning in eHealth}, subject = {Virtual Lab}, language = {en} } @misc{UrbauerFrohnerForjanetal., author = {Urbauer, Philipp and Frohner, Matthias and Forjan, Mathias and Pohn, Birgit and Sauermann, Stefan and Mense, Alexander}, title = {Ein Erfahrungsbericht {\"u}ber Kommunikationsstandards und deren Umsetzung im Bereich Telemonitoring: Vom Blutdruckmessger{\"a}t zur elektronischen Gesundheitsakte}, subject = {Telemonitoring}, language = {de} } @misc{UrbauerFrohnerForjanetal., author = {Urbauer, Philipp and Frohner, Matthias and Forjan, Mathias and Pohn, Birgit and Sauermann, Stefan and Mense, Alexander}, title = {A Closer Look on Standards Based Personal Health Device Communication: A R{\´e}sum{\´e} over Four Years Implementing Telemonitoring Solutions}, subject = {eHealth}, language = {en} } @inproceedings{UrbauerForjan, author = {Urbauer, Philipp and Forjan, Mathias}, title = {Integration of Health and Public Transport Data to Enable Decision Support for Seniors to Reduce Risk of Infection with Communicable Diseases.}, series = {9th International Conference on Software Development and Technologies for Enhancing Accessibility and Fighting Info-exclusion DSAI (2020)}, booktitle = {9th International Conference on Software Development and Technologies for Enhancing Accessibility and Fighting Info-exclusion DSAI (2020)}, subject = {eHealth}, language = {en} } @inproceedings{HerzogForjanSauermannetal., author = {Herzog, Juliane and Forjan, Mathias and Sauermann, Stefan and Mense, Alexander and Urbauer, Philipp}, title = {Development of a Virtual Lab for Practical eLearning in eHealth}, series = {Proceedings of eHealth 2015 - Health Informatics Meets eHealth}, booktitle = {Proceedings of eHealth 2015 - Health Informatics Meets eHealth}, subject = {Virtual Lab}, language = {en} } @misc{HerzogSauermannMenseetal., author = {Herzog, Juliane and Sauermann, Stefan and Mense, Alexander and Forjan, Mathias and Urbauer, Philipp}, title = {Development of Knowledge Profiles for International eHealth eLearning Courses}, subject = {Knowledge Profiles}, language = {en} } @misc{FrohnerUrbauerForjanetal., author = {Frohner, Matthias and Urbauer, Philipp and Forjan, Mathias and Pohn, Birgit and Gerbovics, Ferenc and Sauermann, Stefan and Mense, Alexander}, title = {Development of an Android App in compliance with the Continua Health Alliance Design Guidelines for medical device connectivity in mHealth}, subject = {App development}, language = {en} } @article{UrbauerFrohnerForjanetal., author = {Urbauer, Philipp and Frohner, Matthias and Forjan, Mathias and Pohn, Birgit and Sauermann, Stefan and Mense, Alexander}, title = {A Closer Look on Standards Based Personal Health Device Communication: A R{\´e}sum{\´e} over Four Years Implementing Telemonitoring Solutions}, series = {European Journal for Biomedical Informatics}, volume = {2012}, journal = {European Journal for Biomedical Informatics}, number = {Vol 8, Issue 3}, pages = {65 -- 70}, subject = {eHealth}, language = {en} } @inproceedings{HerzogSauermannMenseetal., author = {Herzog, Juliane and Sauermann, Stefan and Mense, Alexander and Forjan, Mathias and Urbauer, Philipp}, title = {Development of Knowledge Profiles for International eHealth eLearning Courses}, series = {Proceedings of Medical Informatics in Europe (MIE 2015) - Digital Healthcare Empowering Europeans}, booktitle = {Proceedings of Medical Informatics in Europe (MIE 2015) - Digital Healthcare Empowering Europeans}, subject = {Knowledge Profiles}, language = {en} } @inproceedings{FrohnerUrbauerForjanetal., author = {Frohner, Matthias and Urbauer, Philipp and Forjan, Mathias and Pohn, Birgit and Gerbovics, Ferenc and Sauermann, Stefan and Mense, Alexander}, title = {Development of an Android App in compliance with the Continua Health Alliance Design Guidelines for medical device connectivity in mHealth}, series = {46th annual conference of the German Society for Biomedical Engineering(BMT 2012)}, booktitle = {46th annual conference of the German Society for Biomedical Engineering(BMT 2012)}, pages = {1051 -- 1053}, subject = {App development}, language = {en} } @inproceedings{WagnerJankBalzetal., author = {Wagner, Fabian and Jank, Miran and Balz, Andrea and Forjan, Mathias and Urbauer, Philipp}, title = {Immersive Spatial Planning in Healthcare: Developing a Pipeline to Automatically Convert Computer Aided DesignData to Virtual Reality}, series = {dHealth 2023, 17th Annual Conference on Health Informatics meets Digital Health}, volume = {301}, booktitle = {dHealth 2023, 17th Annual Conference on Health Informatics meets Digital Health}, doi = {https://doi.org/10.3233/shti230019}, pages = {96 -- 101}, abstract = {Equipping rooms used for medical purposes, like e.g., intensive care units, is an expensive and time-consuming task. In order to avoid extensive subsequent adjustments due to inappropriate layout visualization or geometric conditions difficult to identify in 2D plans, it is of utmost importance to provide an optimal planning environment to future users such as physicians and nurses. In this paper we present the concept of a fully automatized pipeline, which is designed to visualize computer aided design (CAD) data using virtual reality (VR). The immersive VR experience results in improvement of efficiency in the decision- making process during the planning phase due to better spatial imagination. The pipeline was successfully tested with CAD data from existing Intensive Care Units. The results indicate that the pipeline can be a valuable tool in the field of spatial planning in healthcare, due to simple usage and fast conversion of CAD data. The next step will be the development of a plugin for CAD tools to allow for interactions with the CAD models in Virtual Reality, which is not yet possible without manual intervention}, subject = {Virtual Reality}, language = {en} } @inproceedings{JankWagnerUrbaueretal., author = {Jank, Miran and Wagner, Fabian and Urbauer, Philipp and Balz, Andrea and Forjan, Mathias}, title = {Extended Reality Solutions in Medical Context and Educational Approaches}, series = {Healthcare Transformation with Informatics and Artificial Intelligence / 21th International Conference on Informatics, Management and Technology in Healthcare}, booktitle = {Healthcare Transformation with Informatics and Artificial Intelligence / 21th International Conference on Informatics, Management and Technology in Healthcare}, publisher = {iOS Press}, doi = {10.3233/SHTI230548}, pages = {521 -- 524}, abstract = {The healthcare sector is growing in importance as people continue to age and pandemics complicate the boundary conditions of such systems. The number of innovative approaches to solve singular tasks and problems in this area is only slowly increasing. This is particularly evident when looking at medical technology planning, medical training and process simulation. In this paper a concept for versatile digital improvements to these problems by using state of the art development methods of Virtual Reality (VR) and Augmented Reality (AR) are presented. The programming and design of the software is done with the help of Unity Engine, which provides an open interface for docking with the developed framework for future work. The solutions were tested under domain specific environments and have shown good results and positive feedback.}, subject = {Virtual Reality}, language = {en} }