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Component architecture in HIS: a drug order entry case study.

Historically, many healthcare information systems (HIS) have been designed around monolithic architectures that rely upon a single organization to provide most, if not all, of the system's business logic. Recent advances in distributed systems technology and healthcare standards make a component-based architecture feasible in building today's HIS. The First DataBank Drug Toolkit is used as a case study for the role of components in the design of a HIS. Several technical challenges associated with building truly plug and play components are discussed.

California↗

Statement on cardiopulmonary exercise testing in chronic heart failure due to left ventricular dysfunction: recommendations for performance and interpretation. Part I: definition of cardiopulmonary exercise testing parameters for appropriate use in chronic heart failure.

Cardiopulmonary exercise testing (CPET) provides a global assessment of the integrated response to exercise involving the pulmonary, cardiovascular, haematopoietic, neuropsychological, and skeletal muscle systems. This information cannot be obtained through investigation of the individual organ systems in isolation. The non-invasive, dynamic physiological overview permits the evaluation of both submaximal and peak exercise responses, providing the physician with relevant information for clinical decision making. The use of CPET in management of the chronic heart failure patient is increasing with the understanding that resting pulmonary and cardiac function testing cannot reliably predict exercise performance and functional capacity and that, furthermore, overall health status and prognosis are predicted better by indices of exercise tolerance than by resting measurements. Our aim is to produce a statement which provides recommendations on the interpretation and clinical application of CPET in heart failure, based on contemporary scientific knowledge and technical advances: the focus is on clinical indications, issues of standardization, and interpretative strategies for CPET.

Cardiac Output↗

Environmental biotechnology for sustainability.

In the post-industrial society, waste management is integrated in the concepts of responsibility, reliability and continuity. Therefore industry and public office are obliged to implement the concepts of structured environmental management systems more and more strictly. The endpoints are dependent on the type of wastes and on the priorities set by society. They will with time evolve towards more restriction of all kinds of emissions. This will require increasing inputs of labour, information technology and energy into waste treatment and overall waste management. Particularly for aqueous and gaseous wastes that are not contained, continuously improving treatment with maximum re-use and minimum dissipation in the ecosphere will be the trend of the future. Moreover, the public in general and the individual citizen in particular will request to have (bio)assays to monitor regularly and autonomously the quality of his environment. Such advanced waste management requires considerable energy input. It thus may come in conflict with current concerns about CO2-emissions and the Kyoto agreements. Innovative approaches to combine waste management and the International Climate Change Partnership (ICCP) directives, for instance by implementing biological carbon sequestration, are therefore warranted. Biotechnology has a major role to play particularly in terms of advanced treatment down to ng/l-levels and in terms of validating the quality of the environment by means of powerful and intelligent bio-monitoring devices.

Biotechnology↗

Development of security guidelines for existing healthcare systems.

As modern healthcare establishments become increasingly dependent upon information systems it is vital to ensure that adequate security is present to safeguard the confidentiality and integrity of data and the availability of systems. Whilst this is now generally recognized in the design of new systems, many existing operational systems have been implemented without security in mind. This paper describes the need for a standardized approach in the protection of existing healthcare systems within Europe and presents an overview of a new set of information security guidelines that have been developed specifically for the medical community. The guidelines discussed have been produced as a deliverable of the Commission of European Communities (CEC) SEISMED (Secure Environment for Information Systems in Medicine) project, under the Advanced Informatics in Medicine (AIM) programme.

Computer Security↗

Programmed database system at the Chang Gung Craniofacial Center: part II--digitizing photographs.

BACKGROUND: The archival tools used for digital images in advertising are not to fulfill the clinic requisition and are just beginning to develop. The storage of a large amount of conventional photographic slides needs a lot of space and special conditions. In spite of special precautions, degradation of the slides still occurs. The most common degradation is the appearance of fungus flecks. With the recent advances in digital technology, it is now possible to store voluminous numbers of photographs on a computer hard drive and keep them for a long time. METHODS: A self-programmed interface has been developed to integrate database and image browser system that can build and locate needed files archive in a matter of seconds with the click of a button. This system requires hardware and software were market provided. RESULTS: There are 25,200 patients recorded in the database that involve 24,331 procedures. In the image files, there are 6,384 patients with 88,366 digital pictures files. From 1999 through 2002, NT400,000 dollars have been saved using the new system. CONCLUSION: Photographs can be managed with the integrating Database and Browse software for database archiving. This allows labeling of the individual photographs with demographic information and browsing. Digitized images are not only more efficient and economical than the conventional slide images, but they also facilitate clinical studies.

Craniofacial Abnormalities↗

Digital patient records and the medical desktop: an integrated physician workstation for medical informatics training.

The Institute of Medicine and others have advocated a shift from a paper-based to an electronic medical record and many authorities have advanced the concept of a physician workstation that can provide access to a wide variety of both clinically and reference oriented medical information. We have developed a working model of an integrated physician workstation based on a graphically oriented "Medical Desktop," for personal computers. This system gives the user access to much of the information necessary for the practice of medicine, by integrating an electronic medical record (notes, orders, consults, lab values, and radiological studies, organized both independently and in a "Visual Chart") with tools such as drug references, clinical manuals, textbooks of medicine, literature searching, expert system decision support, and electronic communication. It contains an on-line help system that facilitates use and allows access to all the systems' capabilities. This system has been used to teach students and physicians the methods and potential of computer-based medical information management to prepare them for the impact of computers in their practices and educate them concerning the imperative for the involvement of all health care providers in implementing these changes.

Computer Graphics↗

Academic health centers and HMOs: a systems perspective on collaboration in training generalists physicians and advancing mutual interests.

Academic health centers (AHCs) and health maintenance organizations (HMOs) often hold each other at arm's length because of fundamental organizational differences. AHCs view HMOs as too intrusive in the clinical management of patients and too concerned with the financial bottom line. HMOs view AHCs as organizationally fragmented and expensive in providing health care services. AHCs must expand their primary care networks and reassess their mission and public accountability in training a more balanced physician workforce. HMOs are growing rapidly and need well-trained generalist physicians to support that growth. This paper uses an organizational systems model in examining AHCs and HMOs to identify common needs, mutual interests, areas for potential collaboration, and bridging strategies. These include health care systems development, professional education, information management systems, and health services research. As the financing and delivery of health care continue to change and to become more integrated, both organizations have much to gain from collaboration.

Academic Medical Centers↗

Dual-modality PET/CT tomography for clinical oncology.

Diagnosis and follow-up in clinical oncology are traditionally based on computed tomography (CT). In recent years, however, functional imaging using positron emission tomography (PET) has been recognized as an important imaging modality and adjunct to CT that provides complementary metabolic information in many oncology applications. To overcome the challenges of aligning independently acquired PET and CT image sets several ad hoc concepts of integrating PET and CT imaging in a single device have been proposed. This article comments on the development of the first combined dual-modality PET/CT prototype at the University of Pittsburgh, and illustrates commercial advances to dual-modality PET/CT tomography. The current PET/CT designs from the major manufacturers comprise a commercial CT scanner in tandem with a commercial PET scanner. While the level of physical integration is actually less than that of the original prototype it is fair to assume that current PET/CT models may serve as intermediate solutions towards near-future design concepts that aim at greatly reduced costs of the dual-modality tomographs and offer a greater level of physical integration. The goal of the next generation of PET/CT systems is to design and build a device specifically for imaging the function and anatomy of cancer in the most informative and effective way without necessarily conceptualizing it as combined PET and CT scanners. Such a concept of a diagnostic imaging device relates more to a disease management approach rather than the usual division into medical specialities such as radiology and nuclear medicine.

Adult↗

Collaborating for a cause--Creating partnerships between IT and academia.

An international nursing shortage is driving the redesign of nursing education curriculum. Providing nursing students with an opportunity for hands on use of advanced healthcare technology is critical to the development of highly competent nurses who are prepared not only to fully interact in the healthcare domain, but to also participate in its re-engineering via IT. The academic institution with an integrated IT solution in clinical simulation labs can become a place where students can learn the skills, understand the potential, participate in the selection and evaluation of software systems and eventually help to craft IT solutions that benefit both the patient and the practice of nursing and medicine. As the healthcare environment continues to change - pushing curricular redesign, the expectation that educators will increase the integration of IT into coursework and clinical experiences is increasing. The challenge however, is not only to educate the students, but to also educate faculty who often possess limited amounts of IT knowledge. Faculties, like students, have limited time and learning outcomes are enhanced when hands-on and practical educational opportunities are available. This presentation therefore will not only focus on the student; instead, the gestalt of integrated teaching/learning from faculty and student perspectives will be addressed. The challenges, including identifying partnership opportunities, identifying financial resources to support such partnerships, gaining institutional support, determining criteria to evaluate student performance, and strategies for engendering faculty support will be discussed, along with solutions on how they can be overcome. The presentation will also highlight the benefits of the partnership for both the institution and the industry vendor. The institution can benefit from the access to the vendor's software, hardware, and expertise. By using advanced clinical solutions in the classroom and hospital setting, students and faculty can benefit from access to evidence based content and knowledge management. Opportunities for faculty and student research also become possible. In turn, the vendor has access to the institution's intellectual capital, participation in research studies co-authorship in academic publications, and enhancements of product design. The outcome is a nursing informatics educational partnership empowering nurses to utilize and drive the enhancements of advanced technology to improve the delivery of patient care.

Cooperative Behavior↗

Unsolved problems in diastole.

It is now recognized that a sizable portion of patients who exhibit symptoms of congestive heart failure have relatively well-preserved systolic function, but have significantly elevated LV filling pressures. This syndrome, termed "diastolic heart failure," is associated with various conditions such as aging, anatomic abnormalities, hypertension, ischemic disease, tachycardia, and atrial fibrillation. Advances in the proper medical and surgical management of these patients will depend on the continued delineation of the basic physiologic mechanisms that account for normal and pathologic cardiac diastolic function. This goal can only be achieved by the integration of information acquired from basic science investigations conducted in vitro and in vivo, mathematic modeling simulation studies, and prospective, community-based investigations that characterize the incidence, prevalence, and natural history of the disease. In addition, randomized clinical trials will be needed to determine the optimal treatment strategies for this group of patients--strategy choices undoubtably complicated by a disease whose treatment is influenced to a large extent by its origin. The future therapies evaluated in these randomized clinical trials will most likely range from medical therapies that target either the heart directly or the peripheral vascular system, to surgical interventions such as direct myocardial revascularization, to gene therapy. Finally, it is worth mentioning one more unresolved issue that is of general practical concern not only to the physiologist studying diastolic function, but also to the clinician: whether or not it is even feasible to develop a single, sensitive, specific, clinically relevant index of diastolic function that is free from the contaminating influences of rate, contractility, and load. As observed by Glantz 20 years ago, developing indexes with the hope that one might fully delineate the left ventricle's diastolic properties, rather than concentrating on discovering the physiologic significance of such indexes, is probably counterproductive. More recently, in a related article, Slinker implied that an operational definition of any aspect of cardiac function must allow for the measurement of that function over an adequate range of essential variables. Therefore, as previously mentioned, the physiologist studying cardiac function has the daunting task of trying to understand, in a precise way, how the processes and mechanisms of the various phases of the cardiac cycle couple together to produce either a normal or abnormal functioning heart. It seems clear that because of the complex weave of factors that control overall cardiac diastolic function, the derivation of any single index that adequately describes LV diastolic function in vivo may not be possible.

Diastole↗

The SARS-CoV-2 Integrated Genomic Epidemiology Database (IGED): Linking viral genomes with patient-level metadata to advance statewide genomic surveillance in California.

In July 2021, the California Code of Regulations Title 17 required all laboratories performing SARS‑CoV‑2 whole genome sequencing (WGS) to report their sequencing results to the California Department of Public Health (CDPH). These viral genomic data and patient metadata were compiled into the Integrated Genomic Epidemiology Database (IGED). Linking anonymized viral sequences with patient‑level information enabled monitoring of infectiousness, pathogenicity, transmission dynamics, evolution, and vaccine evasion among emerging SARS‑CoV‑2 lineages. Laboratories performing SARS-CoV-2 WGS transmitted sequencing results to CDPH through Electronic Laboratory Reporting (ELR) and non-ELR pathways. CDPH applied uniform reporting requirements but allowed flexibility in specific data formats to accommodate diverse data systems. To preserve data quality and interoperability across heterogeneous sources, CDPH implemented standardization, validation, and deduplication protocols. Snowflake, a cloud‑based data storage and analytics platform, and Posit Connect, a cloud deployment and automation platform, supported the management, processing, and integration of data within the IGED. The IGED established links between SARS‑CoV‑2 WGS data and epidemiologic metadata for 801,418 sequences, representing 81.7% of all sequences reported in California. Lineages reported to the IGED showed strong concordance with lineage proportions in GISAID. Sequences reported to the IGED had average turnaround times longer than one month, and the majority of sequencing was performed in Southern California and Los Angeles. The IGED enhanced genomic surveillance through predictive modeling and monitoring concerning evolutionary trends such as recombination and saltations in persistent infections. Development of the IGED highlighted the need for standardized data requirements, sustained funding for sequencing, incentives for data submission, and interdisciplinary collaboration to build an effective genomic surveillance system. This framework for linking genomic and epidemiologic data has not only generated critical insights for SARS‑CoV‑2 but also provided the foundation for CDPH and other public health organizations to develop similar IGED‑like systems for other priority pathogens as genomic surveillance expands.

Journal Article↗

A decision support system for AIDS intervention and prevention.

In recent years, the importance of information systems has been identified as a vital issue to continuing success in AIDS intervention and prevention (AIP). The advances in information technology have resulted in integrative information systems including decision support systems (DSS). The concept of DSS for AIP was created at the intersection of two trends. The first trend was a growing belief that AIP information systems are successful in automating operations in AIP programs. The second was a continuing improvement in modeling and software development in the AIP area. This paper presents an integrated DSS for AIP. The system is integrated with a database and achieves its efficiency by incorporating various algorithms and models to support AIP decision processes. The application examples include screening AIDS-risky behaviors, evaluating educational interventions, and scheduling AIP sessions. The implementation results present evidence of the usefulness of the system in AIP.

AIDS Serodiagnosis↗

Efforts to improve patient safety in large, capitated medical groups: description and conceptual model.

Medical care should be safer. Inpatient problems and solutions have received the most attention; this outpatient qualitative case study addresses a gap in knowledge. We describe safety improvements among large physician groups, model the key influences on their behavior, and identify beneficial public and private policies. All groups were trying to reduce medical injury, which was part of the sample design. The most commonly targeted problems are those that are similar across groups: shortcomings in diagnosis, abnormal tests follow-up, scope of practice and referral patterns, and continuity of care. Medical group innovators vary greatly, however, in implementation of improvements, that is, in the extent to which they implement process changes that identify events/problems, analyze and track incidents, decide how to change clinical and administrative practices, and monitor impacts of the changes. Our conceptual model identifies key determinants: (1) demand for safety comes from external factors: legal, market, and professional; (2) organizational responses depend on internal factors: group size, scope, and integration; leadership and governance; professional culture; information-system assets; and financial and intellectual capital. Further, safety is an aspect of quality (the same tools, decision making, interventions, and monitoring apply), and safety management benefits from prior efficiency management (similar skills and culture of innovation). Observed variation in even simple safeguards shows that existing safety incentives are too weak. Our model suggests that the biggest improvement would come from boosting the demand for quality and safety from both private and public larger group purchasers. Current policy relies too much on litigation and discipline, which have sometimes helped, but not solved, problems because they are inefficient, tend to drive needed information underground, and complicate needed cultural change. Patients' safety demand is also weak for want of information and market power. Big purchasers' demands, however, quickly influence the internal environment of medical groups, helping managers advance quality safety toward the top of groups' congested decision-making "queues."

Ambulatory Care↗

The cost management organization: the next step for materiel management.

With Materiel Management's transition over the last decade from simple logistics to analysis and cost management, it has gained recognition as a key part of the management team responsible for supplies, equipment, standards, and associated processes to identify, purchase, store, distribute, issue, and dispose of supplies and equipment. The materiel manager's job consists of putting the right product in the right place at the right time and in the right quantity at the best total delivered cost. In this context, Materiel Management has made powerful impacts to lower costs associated with: Distribution--costs have been lowered by actively adopting advanced supply channel management techniques such as primary suppliers, JIT, stockless programs, case cart/custom kit/procedure based delivery systems, modified stockless programs as well as margin management through cost plus, flat fee, or margins paid per activity. Cost of goods--lowered through aggregated purchasing in the forms of regional and national purchasing alliances and local capitation or other gain/risk share programs. Internal process costs--lowered by out-sourcing and/or integrating supplier processes and personnel into operations via partnership approaches. We have also reduced transactional costs through EDI transaction sets and the emerging use of the inter and intranet/electronic commerce, procurement cards, and evaluated receipt settlement processes. De-layering--We have lowered the operating costs of Materiel Management overhead by re-design/re-engineering, resulting in reduced management and greater front line authority. Quality--We have learned to identify and respond to customer and supplier needs by using quality improvement tools and ongoing measurement and monitoring techniques. Through this we have identified the waste of non-beneficial products and services. We have adopted supplier certification measurers to ensure quality is built into processes and outcomes. With so much already accomplished, it should be easy to rest on these laurels and simply operate. However, we believe that this is just a beginning. A new generation of highly educated leaders are emerging and taking advantage of the contributions of pioneers who laid the ground work. These new leaders will have advanced management, statistics, and behavioral sciences skills. They will be analysts and organizational motivators. Their goal will be to improve financial and clinical performance measured by real time process and performance data. The new leaders will have information at their fingertips thanks to significant leaps forward in data collection, automated continuous replenishment processes, and software designed for better management of clinical and cost outcomes. This article documents significant Materiel management accomplishments and conceptualizes cost management processes. The cost management organization is the logical evolution in our efforts for better outcomes in healthcare Materiel management.

Contract Services↗

The Rat Genome Database (RGD): developments towards a phenome database.

The Rat Genome Database (RGD) (http://rgd.mcw.edu) aims to meet the needs of its community by providing genetic and genomic infrastructure while also annotating the strengths of rat research: biochemistry, nutrition, pharmacology and physiology. Here, we report on RGD's development towards creating a phenome database. Recent developments can be categorized into three groups. (i) Improved data collection and integration to match increased volume and biological scope of research. (ii) Knowledge representation augmented by the implementation of a new ontology and annotation system. (iii) The addition of quantitative trait loci data, from rat, mouse and human to our advanced comparative genomics tools, as well as the creation of new, and enhancement of existing, tools to enable users to efficiently browse and survey research data. The emphasis is on helping researchers find genes responsible for disease through the use of rat models. These improvements, combined with the genomic sequence of the rat, have led to a successful year at RGD with over two million page accesses that represent an over 4-fold increase in a year. Future plans call for increased annotation of biological information on the rat elucidated through its use as a model for human pathobiology. The continued development of toolsets will facilitate integration of these data into the context of rat genomic sequence, as well as allow comparisons of biological and genomic data with the human genomic sequence and of an increasing number of organisms.

Animals↗

Integrating informatics into the graduate community health nursing curriculum.

Advanced practice of community health nursing is enhanced if the nurse is able to identify, create, and use databases to support nursing assessments of communities and to manage and evaluate community health programs. The College of Nursing, Rutgers, The State University of New Jersey, has revised its curriculum for community health nursing graduate students to include a strong focus on nursing informatics. This paper summarizes the integration of theoretical content and practice exercises into a pre-course workshop and four-course sequence. A focal point of this effort has been the "Healthy People 2000 Nursing Informatics Project," in which students develop an automated community-assessment tool and database related to the Year 2000 objectives. The use of this database and related national, state, and local databases to document community needs is emphasized. Students also evaluate nursing information systems and use information technologies to design and evaluate community health grant proposals. Curriculum development, evaluation, and modification are detailed in relation to student learning needs, faculty preparation, and equipment and consultation requirements.

Community Health Nursing↗

Anatomy of data integration.

Producing reliable information is the ultimate goal of data processing. The ocean of data created with the advances of science and technologies calls for integration of data coming from heterogeneous sources that are diverse in their purposes, business rules, underlying models and enabling technologies. Reference models, Semantic Web, standards, ontology, and other technologies enable fast and efficient merging of heterogeneous data, while the reliability of produced information is largely defined by how well the data represent the reality. In this paper, we initiate a framework for assessing the informational value of data that includes data dimensions; aligning data quality with business practices; identifying authoritative sources and integration keys; merging models; uniting updates of varying frequency and overlapping or gapped data sets.

Algorithms↗

A generalizable framework for information systems for physician recruitment/referral.

Hospital information systems have evolved from data processing systems for patient billing and payroll to decision-support systems which support decision making at the middle and upper management levels. With the advancements in the areas of database management, expert systems and networks, important hospital functions such as physician recruitment and referral which historically were performed using traditional procedures, are now performed using these computer-based technologies. Develops a generalizable framework for information systems for physician recruitment and referral using technologies of database management, expert systems and networks. This GIS-PRR system may be used by hospitals and other health-care providers to improve the efficiency and effectiveness of the physician recruitment/referral process.

Database Management Systems↗