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Biomedical subjects

O J Bott

Publications and source records attributed to O J Bott.

7 recordsLinked to original sources

Pre-operative dynamic interactive exploration of complex articular fractures using a novel 3D navigation tool.

OBJECTIVES: Trauma surgeons possess specific anticipative pathoanatomical and procedural domain knowledge that can be used for information extraction from original CT image data. This knowledge so far remains unused in clinical workflow and surgeons do not take an active part in the process of image generation and processing. The objectives of our work are to propose and employ a strategy to directly involve surgeons in a dynamic image exploration process and to exemplarily assess the clinical use of this approach for pre-operative diagnosis of complex articular fractures. METHODS: We used an interactive 3D navigation tool with a novel human-computer interface for the exploration of articular fractures of two selected anatomical structures. The system offers dynamic interaction with a virtual 3D reconstruction model and the possibility to create on-the-fly oblique multiplanar reformations by tracking hand movements. Three expert surgeons performed exemplary explorations and rated the use of the method for preoperative diagnosis in informal interviews. RESULTS: The approach and the system were well received by the three surgeons. The dynamic interaction was rated to be helpful in understanding fracture morphology. Two examples--a radius and a calcaneal fracture--are presented. CONCLUSIONS: Surgeons with their specific domain knowledge should be involved in the process of image processing. The benefit of using oblique multiplanar reformations for pre-operative planning in articular fractures appears to be substantial and they should therefore be included in radiological and surgical textbooks. Further evaluation is necessary to assess the use of interactive exploration systems in routine diagnosis.

Feasibility Studies↗

Expanding the scope of health information systems. Challenges and developments.

OBJECTIVES: To identify current challenges and developments in health information systems. METHODS: Reports on HIS, eHealth and process support were analyzed, core problems and challenges were identified. RESULTS AND CONCLUSION: Health information systems are extending their scope towards regional networks and health IT infrastructures. Integration, interoperability and interaction design are still today's core problems. Additional problems arise through the integration of genetic information into the health care process. There are noticeable trends towards solutions for these problems.

Computational Biology↗

Health information systems: between shared care and body area networks. Findings from the Section on health Information Systems.

OBJECTIVES: To summarize current excellent research in the field of health information systems (HIS). METHODS: Synopsis of the articles selected for the IMIA Yearbook 2006. RESULTS: Current research in the field of HIS is focused on supporting transinstitutional health care processes including health record systems, integration of new data types and knowledge based decision support, patient empowerment, the utilization of new technologies like wearable systems or ubiquitous computing in home and personal care, and methods and tools for the analysis, development, management, and evaluation of HIS. CONCLUSIONS: The best paper selection of articles on HIS comprises examples of excellent research on integration of HIS based on standards for electronic health records, methods and tools for HIS oriented change management, the use of wearable systems for telemedical surveillance of chronically ill patients, technology driven home care concepts for the elderly and physically disabled, and data privacy issues arising from the emergence of new clinical data types in the context of biomedicine. Besides successful research concerning important aspects of HIS, achieving interoperability and integration of health information subsystems and technology remains an important field of work.

Awards and Prizes↗

The challenge of ubiquitous computing in health care: technology, concepts and solutions. Findings from the IMIA Yearbook of Medical Informatics 2005.

OBJECTIVES: To review recent research efforts in the field of ubiquitous computing in health care. To identify current research trends and further challenges for medical informatics. METHODS: Analysis of the contents of the Yearbook on Medical Informatics 2005 of the International Medical Informatics Association (IMIA). RESULTS: The Yearbook of Medical Informatics 2005 includes 34 original papers selected from 22 peer-reviewed scientific journals related to several distinct research areas: health and clinical management, patient records, health information systems, medical signal processing and biomedical imaging, decision support, knowledge representation and management, education and consumer informatics as well as bioinformatics. A special section on ubiquitous health care systems is devoted to recent developments in the application of ubiquitous computing in health care. Besides additional synoptical reviews of each of the sections the Yearbook includes invited reviews concerning E-Health strategies, primary care informatics and wearable healthcare. CONCLUSIONS: Several publications demonstrate the potential of ubiquitous computing to enhance effectiveness of health services delivery and organization. But ubiquitous computing is also a societal challenge, caused by the surrounding but unobtrusive character of this technology. Contributions from nearly all of the established sub-disciplines of medical informatics are demanded to turn the visions of this promising new research field into reality.

Biomedical Technology↗

Analysis and Specification of Telemedical Systems Using Modelling and Simulation: the MOSAIK-M Approach.

BACKGROUND AND MOTIVATION: INCA (Intelligent Control Assistant for Diabetes) is a project funded by the EU with the objective to improve diabetes therapy by creating a personal control loop interacting with telemedical remote control. Development of telemedical systems generally is a complex task especially in international projects where engineering and user groups with different social and cultural background have to be included into the system development process. OBJECTIVES: To explore if and how sophisticated information system modelling and simulation techniques can improve the development of telemedical systems. METHODS: For system analysis and design the MOSAIK-M approach was chosen. MOSAIK-M means "Modelling, simulation, and animation of information and communication systems in medicine". It includes a generic process scheme, a meta model and a tool environment. The generic process scheme guides modelling projects to produce models of high quality in terms of correctness, completeness and validity. The meta model defines the modelling language.In INCA MOSAIK-M is used for analysis of the problem domain, specification of the telemedical system and cost/benefit-analysis. RESULTS: The MOSAIK-M approach was used to create two models: an "As Is"-model of the problem domain and a "To Be"-model of the INCA system. The "As Is"-model of conventional insulin pump based diabetes care comprises submodels of diabetes management, ambulatory and clinical care. The "To Be"-model describes a patient's diabetes management using a smart phone that controls an insulin pump based on continuously measured interstitial glucose. It also describes telemedical care of a patient by diabetologists and a call centre. Both models can be simulated enhanced by visualisation capabilities to explore specific cases or scenarios. This feature proved valuable for the evaluation of both models through domain experts. The "To Be" model is used to guide the implementation of the system. Both models are being augmented by cost structures to support cost/benefit-analysis. CONCLUSIONS: Even a complex telemedical system like the INCA system can be successfully specified using sophisticated modelling and simulation based approaches like MOSAIK-M. The resulting specification is a result of its own and ensures a lasting effect of the definitions and specifications produced during the project. International cooperation and evaluation of the system design prior to its implementation profit from simulation and visualisation capabilities of MOSAIK-M.

Computer Simulation↗

Strategic information management plans: the basis for systematic information management in hospitals.

Information management in hospitals is a complex task. In order to reduce complexity, we distinguish strategic, tactical, and operational information management. This is essential, because each of these information management levels views hospital information systems from different perspectives, and therefore uses other methods and tools. Since all these management activities deal only in part with computers, but mainly with human beings and their social behavior, we define a hospital information system as a sociotechnical subsystem of a hospital. Without proper strategic planning it would be a matter of chance, if a hospital information system would fulfil the information strategies goals. In order to support strategic planning and to reduce efforts for creating strategic plans, we propose a practicable structure.

Hospital Information Systems↗

Specification of a computer-based information system for ophthalmology using modeling and simulation techniques.

A model of an information system for ophthalmologic practices has been constructed using an object-oriented development environment. This model allows us to dynamically visualize the proceedings in a medical environment by graphical means. The model includes an object-oriented basis data model for ophthalmologic applications and tools for the medical staff e.g., a patient record browser. Special (sub)systems can be integrated into the basis model. Some aspects of the development process will be discussed.

Computer Graphics↗