Building a culture of participation in a vertically integrated, regional health system.
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Traditional drug use evaluation (DUE) and Medicaid drug utilization review (DUR) prototypes do not meet the needs of managed care organizations. yet, creating entirely new systems for measuring quality drug use in managed care, such as HEDIS, needlessly discards the good clinical foundations already built in the other health care settings. A better solution would be for managed care to apply its hallmark traits, namely state-of-the-art electronic data management systems, integrated health care system interchange, and strong customer communication, to make the DUR process better. A strong union between clinical criteria and sophisticated health care management can revolutionize the DUR/DUE process.
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A "business-as-usual" attitude among board members won't do, says governance consultant Barry Bader. A system board must provide leadership through uncertain times by establishing and articulating clear strategic goals and core values. Mr. Bader identifies the 10 pathways that will lead to high performance--by the board and by the system.
Methods of biotechnology allow the isolation, sequencing, and synthesis of molecular structures. Molecular database systems are available, which allow the worldwide data access. Methods and concepts of bioinformatics are important for the analysis of these molecular data, which represent complex regulatory networks. In this paper we present the architecture of our molecular information system.
The development of sophisticated genetic tools during the past 15 years have facilitated a tremendous increase of fundamental and application-oriented knowledge of lactic acid bacteria (LAB) and their bacteriophages. This knowledge relates both to the assignments of open reading frames (ORF's) and the function of non-coding DNA sequences. Comparison of the complete nucleotide sequences of several LAB bacteriophages has revealed that their chromosomes have a fixed, modular structure, each module having a set of genes involved in a specific phase of the bacteriophage life cycle. LAB bacteriophage genes and DNA sequences have been used for the construction of temperature-inducible gene expression systems, gene-integration systems, and bacteriophage defence systems. The function of several LAB open reading frames and transcriptional units have been identified and characterized in detail. Many of these could find practical applications, such as induced lysis of LAB to enhance cheese ripening and re-routing of carbon fluxes for the production of a specific amino acid enantiomer. More knowledge has also become available concerning the function and structure of non-coding DNA positioned at or in the vicinity of promoters. In several cases the mRNA produced from this DNA contains a transcriptional terminator-antiterminator pair, in which the antiterminator can be stabilized either by uncharged tRNA or by interaction with a regulatory protein, thus preventing formation of the terminator so that mRNA elongation can proceed. Evidence has accumulated showing that also in LAB carbon catabolite repression in LAB is mediated by specific DNA elements in the vicinity of promoters governing the transcription of catabolic operons. Although some biological barriers have yet to be solved, the vast body of scientific information presently available allows the construction of tailor-made genetically modified LAB. Today, it appears that societal constraints rather than biological hurdles impede the use of genetically modified LAB.
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The Medical Office for the Twenty First Century (MOXXI) is a research project testing the potential benefits of an electronic prescription and drug management system for primary care physicians. This system includes a dynamic electronic pad for prescription entry with fields for treatment indications; a drug profiler with a graphic representation of the list of prescription medications purchased in the last year; a refill compliance calculator; dates of emergency room visits and hospital admissions; cost of drugs dispensed; and an alert system that detects interactions among drugs, treatment duplications, and contraindications with certain allergies or specific diseases. One concern expressed by physicians that could influence uptake and acceptability is the increased time that may be required to use the system. User abilities are a factor in this process, as well as user interface, user training and system speed.
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eLABook is a web-distributed knowledge management system designed to support the needs of clinicians and laboratory staff in the selection and interpretation of investigations in laboratory medicine. Access can be by hyperlinks at any point through the request-report cycle, by browsing down a hierarchy, and by various search approaches. The information describes service issues, which are predominantly locally determined, and clinical implications, which may be local, national, governmental and international. The application has been implemented across the Oxford Clinical Intranet to support secondary care in the four hospital sites of the Oxford Radcliffe Hospitals and by general practitioners in Oxfordshire. The knowledge base is capable of rapid changes in response to input from both developers and users. It supports authoring, editing and a full audit trail of changes. The selected architecture allows very large scale hierarchical structures and is designed to accommodate future needs for an object-distributed processing deployment.
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