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R Haux

Publications and source records attributed to R Haux.

At least 37 records · Page 2Linked to original sources

The International Partnership in Health Informatics Education.

The International Partnership for Health Informatics Education (IPHIE) seeks to promote education through international collaboration of graduate and undergraduate training programs in Medical and Health Informatics. In 1998 an International Partnership of Health Informatics Education was established at six universities: The University of Amsterdam, the Universities of Heidelberg and Heilbronn, the University of Health Informatics and Technology Tyrol at Innsbruck, the University of Minnesota and the University of Utah. The overall goal of this cooperation was to form a network for training and educating medical informatics faculty and students in order to prepare them for leading international positions in medical information and communication technology. In this paper we describe the current state of affairs of IPhiE: the activities undertaken, our experiences, the lessons we have learned over these past five years. In addition we outline our plans for the future.

International Cooperation↗

Soarian--workflow management applied for health care.

OBJECTIVES: To describe and comment on functionality and architecture of the software product Soarian developed by Siemens, to identify key differentiators to related products, and to comment on predecessor systems and beta versions. This has been done in the framework of a conference on health information systems of the IMIA. METHODS: Analyzing existing literature. Site visit of a predecessor system at Haukeland Sykehus, Bergen. Pilot of a beta version at the Erlangen University Medical Center, elaborating on major characteristics in discussion rounds. RESULTS: Soarian is a functional comprehensive, clinically oriented software product to support health care processes and to be used for health care professional workstations. It is a software product, designed and written completely new. Three major key differentiators were identified in comparison to related software products: Soarian's workflow engine, its embedded analytics, and its 'smart' user interface. The targeted reduced installation time is stated to be 12 months or less. CONCLUSIONS: Soarian has good chances to become one of the major software products for health care professional workstations in the international market to support patient-centered, shared care. Its global design may help to better support and maintain national or language specific versions. The first installations of Soarian will be critical, as they will show how the system will be accepted. To use such software products efficiently, organizational aspects within hospitals as well as between health care institutions have to be considered, e.g. strategic IT planning.

Computer Systems↗

Medical informatics and the quality of health: new approaches to support patient care - findings from the IMIA Yearbook of Medical Informatics 2003.

OBJECTIVES: The Yearbook of Medical Informatics is published annually by the International Medical Informatics Association (IMIA) and contains a selection of excellent papers on medical informatics research which have been recently published (http://www. yearbook.uni-hd.de). The 2003 Yearbook of Medical Informatics took as its theme the role of medical informatics for the quality of health care. In this paper, we will discuss challenges for health care, and the lessons learned from editing IMIA Yearbook 2003. RESULTS AND CONCLUSIONS: Modern information processing methodology and information and communication technology have strongly influenced our societies and health care. As a consequence of this, medical informatics as a discipline has taken a leading role in the further development of health care. This involves developing information systems that enhance opportunities for global access to health services and medical knowledge. Informatics methodology and technology will facilitate high quality of care in aging societies, and will decrease the possibilities of health care errors. It will also enable the dissemination of the latest medical and health information on the web to consumers and health care providers alike. The selected papers of the IMIA Yearbook 2003 present clear examples and future challenges, and they highlight how various sub-disciplines of medical informatics can contribute to this.

Delivery of Health Care↗

Medical informatics specialists: what are their job profiles? Results of a study on the first 1024 medical informatics graduates of the Universities of Heidelberg and Heilbronn.

OBJECTIVES: Since 1972, the University of Heidelberg and the University of Applied Sciences Heilbronn have jointly been running a medical informatics program. To continuously provide high quality education, the curriculum is regularly evaluated among its graduates. The objectives of this study were to assess the job situation of the graduates and to evaluate the curriculum from their viewpoint. METHOD: Anonymous inquiry of all medical informatics graduates, having finished their studies before March 31, 2001 (n=1024) using a structured questionnaire. RESULTS: The questionnaire was answered by 446 (compliance: 45.5%) graduates. About one third (146 of 444 valid cases) are working in software/hardware companies. 179 (43.0% of 416 valid cases) graduates are working within medical informatics, 214 (51.4%) are working outside of medical informatics, but within other informatics. 23 (5.5%) graduates are working neither in medical nor in other informatics. 15 percent of the responding graduates have received a doctor's degree. Software engineering, database and information systems are regarded as most important parts of the education. The majority of the graduates are satisfied with their education as well as with their personal career. CONCLUSIONS: The variety of jobs, the job profiles, and the high level of our graduates' satisfaction with their education indicate the relevance of specialized medical informatics programs with a curricular profile like the one in Heidelberg/Heilbronn. Investigations like this can help to adjust the contents of the curriculum to professional needs.

Career Mobility↗

Health care in the information society: what should be the role of medical informatics?

OBJECTIVE: To discuss the consequences for medical informatics in encouraging and advancing the development of information processing methodology (IPM) and information and communication technology (ICT) to contribute to high-quality and efficient health care. METHODS: Characterization of the current state of ICT, commenting on literature. RESULTS AND CONCLUSIONS: Medical informatics is the discipline, concerned with the systematic processing of data, information, and knowledge in medicine and health care. Our societies are continuously being influenced by modern IPM and ICT. It can be expected that these developments, leading us into an "information society", will continue. Three factors may significantly influence health care in the near future: the development of the population towards an aging society, progress in medicine, and progress in informatics. The major aims that will have to be achieved are the (1) patient-centered use of medical data, (2) process-integrated decision support, using high-quality medical knowledge, and (3) comprehensive use of patient data for clinical research and health reporting. Medical informatics research is needed on the electronic patient record, modern architectures for health information systems, and medical knowledge bases. In order to adequately pursue the goal of "transforming health care through innovative use of ICT for the 21st century", health care professionals are needed, who are well-trained in medical informatics, respectively health informatics. Medical informatics must offer such educational programs and assure a sufficiently high quality of education.

Delivery of Health Care↗

Systems analysis in health care: framework and example.

OBJECTIVES: Due to the high complexity of structures and processes in health care, thorough systems analyses in health care run the risk of becoming very complex and difficult to handle. Therefore, we aimed to support systematic systems analysis in health care by developing a comprehensive framework that presents and describes potential areas of analysis. METHODS: A framework for systems analysis in health care was developed and applied in a health care setting. To provide a clear structure, the framework describes the potential views and levels of systems analyses in a health care environment. RESULTS: The framework comprises five views (roles and responsibilities, information processing and tools, communication, business processes, teams structure and cooperation) and five levels of analysis (overall organization, organizational unit, staff member, role, task). The framework was successfully applied in an analysis of the structures and processes of the Department of Child and Adolescent Psychiatry of the University Medical Center Heidelberg. CONCLUSIONS: The proposed comprehensive framework aims to structure the views and levels of systems analysis in the complex health care environment. Our first experiences support the usefulness of such a framework.

Communication↗

Medical Imaging Informatics and Medical Informatics: opportunities and constraints. Findings from the IMIA yearbook of Medical Informatics 2002.

OBJECTIVES: The Yearbook of Medical Informatics is published annually by the International Medical Informatics Association (IMIA) and contains a selection of recent excellent papers on medical informatics research (http://www.yearbook.uni-hd.de). The 2002 Yearbook of Medical Informatics took as its theme the topic of Medical Imaging Informatics. In this paper, we will summarize the contributions of medical informatics researchers to the development of medical imaging informatics, discuss challenges and opportunities of imaging informatics, and present the lessons learned from the IMIA Yearbook 2002. RESULTS AND CONCLUSIONS: Medical informatics researchers have contributed to the development of medical imaging methods and systems since the inception of this field approximately 40 years ago. The Yearbook presents selected papers and reviews on this important topic. In addition, as usual, the Yearbook 2002 also contains a variety of papers and reviews on other subjects relevant to medical informatics, such as Bioinformatics, Computer-supported education, Health and clinical management, Health information systems, Knowledge processing and decision support, Patient records, and Signal processing.

Computer-Assisted Instruction↗

A requirements index for information processing in hospitals.

OBJECTIVES: Reference models describing typical information processing requirements in hospitals do not currently exist. This leads to high hospital information system (HIS) management expenses, for example, during tender processes for the acquisition of software application programs. Our aim was, therefore, to develop a comprehensive, lasting, technology-independent, and sufficiently detailed index of requirements for information processing in hospitals in order to reduce respective expenses. METHODS: Two-dozen German experts established an index of requirements for information processing in university hospitals. This was done in a consensus-based, top-down, cyclic manner. Each functional requirement was derived from information processing functions and sub-functions of a hospital. RESULTS: The result is the first official German version of a requirements index, containing 233 functional requirements and 102 function-independent requirements, focusing on German needs. The functional requirements are structured according to the primary care process from admission to discharge and supplemented by requirements for handling patient records, work organization and resource planning, hospital management, research and education. Both the German version and its English translation are available in the Internet. CONCLUSIONS: The index of requirements contains general information processing requirements in hospitals which are formulated independent of information processing tools, or of HIS architectures. It aims at supporting HIS management, especially HIS strategic planning, HIS evaluation, and tender processes. The index can be regarded as a draft, which must, however, be refined according to the specific aims of a particular project. Although focused on German needs, we expect that it can also be useful in other countries. The high amount of interest shown for the index supports its usefulness.

Computer Systems↗

Electronic signature for medical documents--integration and evaluation of a public key infrastructure in hospitals.

OBJECTIVES: Our objectives were to determine the user-oriented and legal requirements for a Public Key Infrastructure (PKI) for electronic signatures for medical documents, and to translate these requirements into a general model for a signature system. A prototype of this model was then implemented and evaluated in clinical routine use. METHODS: Analyses of documents, processes, interviews, observations, and of the available literature supplied the foundations for the development of the signature system model. Eight participants of the Department of Dermatology of the Heidelberg University Medical Center evaluated the implemented prototype from December 2000 to January 2001, during the course of an intervention study. By means of questionnaires, interviews, observations and database analyses, the usefulness and user acceptance of the electronic signature and its integration into electronic discharge letters were established. RESULTS: Since the major part of medical documents generated in a hospital are signature-relevant, they will require electronic signatures in the future. A PKI must meet the multitude of responsibilities and security needs required in a hospital. Also, the signature functionality must be integrated directly into the workflow surrounding document creation. A developed signature model, fulfilling user-oriented and legal requirements, was implemented using hard and software components that conform to the German Signature Law. It was integrated into the existing hospital information system of the Heidelberg University Medical Center. At the end of the intervention study, the average acceptance scores achieved were mean = 3.90; SD = 0.42 on a scale of 1 (very negative attitude) to 5 (very positive attitude) for the electronic signature procedure. Acceptance of the integration into computer-supported discharge letter writing reached mean = 3.91; SD = 0.47. On average, the discharge letters were completed 7.18 days earlier. CONCLUSION: The electronic signature is indispensable for the further development of electronic patient records. Application-independent hard and software components, in accordance with the signature law, must be integrated into electronic patient records, and provided to certification services using standardized interfaces. Signature-oriented workflow and document management components are essential for user acceptance in routine clinical use.

Authorship↗

Networking in shared care--first steps towards a shared electronic patient record for cancer patients.

OBJECTIVES: This paper aims at identifying the data protection and security requirements for a cross-institutional EPR. Three possible models and the first steps towards a cross-institutional EPR for the Thoraxklinik Heidelberg and the Department of Clinical Radiology of the University Medical Center of Heidelberg shall be discussed. METHODS: A comprehensive analysis of literature and legal documents supplied information for determining the data protection and security requirements. By means of information system analysis, the technical preconditions in both institutions as well as three possible models towards a cross-institutional EPR were identified. RESULTS: According to the German penal code it is only allowed to reveal patient information to external physicians in cases of so-called "treatment connection". An extension of the written consent, signed by the patient, verifying the patient agreement that his/her patient data will be stored in a cross-institutional EPR is needed. Among the three models that we identified, the model that constitutes of a virtual EPR with distributed data capture in both institutions was favored. By means of SecuRemote software a secure connection between the Thoraxklinik Heidelberg and the Department of Clinical Radiology was established, allowing the physicians to view the complete cross-institutional health information of a jointly treated patient during the weekly consultation on radiotherapy. CONCLUSIONS: Many requirements listed in this paper are requirements for electronic patient records in general. Besides these general requirements there are specific requirements for a cross-institutional EPR. The legal situation in Germany complicates the development and implementation of a cross-institutional EPR. However, we think that the efforts are reasonable, because a cross-institutional EPR will be able to improve the communication between health institutions, medical disciplines and persons involved in shared care processes. It provides them with more complete health information about the jointly treated patients. A cross-institutional EPR is, therefore, expected to improve the quality of patient care.

Ambulatory Care Facilities↗

Nursing process documentation systems in clinical routine--prerequisites and experiences.

Documentation of the nursing process is an important, but often neglected part of clinical documentation. Paper-based systems have been introduced to support nursing process documentation. Frequently, however, problems, such as low quality and high writing efforts, are reported. However, it is still unclear if computer-based documentation systems can reduce these problems. At the Heidelberg University Medical Center, computer-based nursing process documentation projects began in 1998. A computer-based nursing documentation system has now been successfully introduced on four wards of three different departments, supporting all six phases of the nursing process. The introduction of the new documentation system was accompanied by systematic evaluations of prerequisites and consequences. In this paper, we present preliminary results of this evaluation, focusing on prerequisites of computer-based nursing process documentation. We will discuss in detail the creation and use of predefined nursing care plans as one important prerequisite for computer-based nursing documentation. We will also focus on acceptance issues and on organizational and technical issues.

Adult↗

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↗

Information processing in healthcare at the start of the third Millennium: potential and limitations.

The 21st century is said to be a century of the information society. We should be aware that continuing progress in information processing methodology (IPM) and information and communication technology (ICT) is changing our societies, including medicine and health care. At the start of the third Millennium we should ask ourselves, what progress can we expect from modern IPM/ICT for healthcare in the coming decade, what concerns does the information society have to face, and what steps have to be taken. These questions were addressed by clinicians, researchers and industrial representatives in a panel discussion at the joint conference ISCB-GMDS-99 of the International Society of Clinical Biostatistics and the German Society for Medical Informatics, Biometry and Epidemiology. Important aspects raised by the panelists and in the subsequent discussion were: (1) the main goal of expanding IPM/ICT should be to further improve quality of care, while maintaining reasonable costs; (2) with the support of modern IPM and ICT the boundaries between inpatient and outpatient care will fade away enabling a more efficient, patient-centered health care; (3) cooperation between health-care professionals will increase; there will be different ways of communication between them and with the patient, including modern ICT and the Internet; (4) society must be concerned with achieving equal opportunities in being informed about and in using new ICT; (5) misuse of data will remain a serious problem and can become an obstacle to progress.

Biometry↗

Digital Libraries and Recent Medical Informatics Research. Findings from the IMIA Yearbook of Medical Informatics 2001.

The Yearbook of Medical Informatics is published annually by the International Medical Informatics Association (IMIA) and contains a selection of recent excellent papers on medical informatics research (http://www.med.uni-heidelberg.de/mi/yearbook/index.htm). The special topic of the just published Yearbook 2001 is "Digital Libraries and Medicine". Digital libraries have changed dramatically and will continue to change the way we work with medical knowledge. The selected papers present recent research and new results on digital libraries. As usual, the Yearbook 2001 also contains a variety of papers on other subjects relevant to medical informatics, such as Electronic Patient Records, Health Information Systems, Health and Clinical Management, Decision Support Systems, Education, as well as Image and Signal Processing. This paper will briefly introduce the contributions covering digital libraries and will show how medical informatics research contributes to this important topic.

Humans↗

ISCB-GMDS-99.

Explore the source record for details and available documents.

Biometry↗

A randomized evaluation of a computer-based nursing documentation system.

A two-month randomized, controlled trial based on 60 patients has been performed on a ward of the Department of Psychiatry at Heidelberg University Medical Center, Germany, to investigate the influence of computer-based nursing documentation on time investment for documentation, quality of documentation and user acceptance. Time measurements, questionnaires, documentation analysis and interviews were used to compare patients documented with the computer-based system (PIK group) with the control group (patients documented with the paper-based system). The results showed the advantages and disadvantages of computer-based nursing documentation. Time needed for nursing care planning was lower in the PIK group. Some formal aspects of quality were considerably better in the PIK group. On the other hand, time required for documentation of tasks and for report writing was greater in the PIK group. User acceptance increased significantly during the study. The interviews indicated a positive influence of PIK on the cooperation between nurses and physicians.

Attitude to Computers↗

On the necessity of systematically planning clinical tumor documentation.

Tumor documentation is an important task for both clinical research and patient care. Documentation systems for these purposes have to be planned systematically and should be goal oriented. We applied the method of a so-called 'standardized documentation protocol' for systematically planning two documentation systems in oncology: one for the tumor center Heidelberg/Mannheim and the other for a nationwide project in the field of documentation and therapy planning in pediatric oncology. The method proved to be helpful in both cases even though the resulting documentation protocols are completely different and although they served different objectives. Therefore, the aim of the paper is to motivate and help medical informatics professionals to systematically plan other documentation systems using this method.

Child↗