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How effective is the computer-based clinical practice guideline?

CONTEXT: The primary prevention of coronary artery disease in patients with diabetes could have a large impact on health care costs and outcomes. Guidelines for improving diabetic health indices are common, but significant challenges exist in implementing them. GENERAL QUESTION: How does integrating an evidence-based guideline into an electronic medical record affect patient care? SPECIFIC RESEARCH CHALLENGE: How can we implement the new guideline-enhanced medical record in a controlled manner and measure its impact on physician satisfaction, diabetes process measures, and the risk for cardiovascular disease? PROPOSED APPROACH: All patients in the University of Washington system have an electronic Web-based medical record. Patients with diabetes will be randomly assigned to a guideline-enhanced or standard electronic medical record. The electronic medical record allows measurement of most clinical process measures and outcomes. Physician satisfaction will be measured by survey. POTENTIAL DIFFICULTIES: Contamination may occur when guideline recommendations are applied to control patients as physicians gain experience with the guideline-enhanced record.

Coronary Disease↗

Challenges and opportunities to the design and implementation of chemoprevention trials for prostate cancer.

Since 1991 and the activation of the Prostate Cancer Prevention Trial as well as similar prevention studies in several other organ sites, the interest in prostate cancer prevention has increased substantially. Despite such interest, the challenges to prevention trials-in design, implementation, prioritization, and allocation of resources-are substantial. Simultaneously, there has been an explosion in new targets and agents that may have an effect in the prevention of this disease. In this manuscript, we discuss these challenges to the study of prostate cancer prevention and provide a blueprint for prioritization of future studies.

Adenocarcinoma↗

Overcoming the barriers to implementation of TQM/CQI in hospitals: myths and realities.

Many health care organizations are attempting to rapidly implement total quality management (TQM) and continuous quality improvement (CQI) philosophies and concepts. In the case of hospitals, a number of issues resulting from traditional organizational design and management practices as well as the characteristics of health care professionals pose significant challenges to rapid implementation. Recognizing and developing strategies to address these challenges, along with realizing that TQM and CQI represent viable processes for conducting organizational "preventive maintenance," may help in changing the focus of quality assessment and enhancement initiatives from processes that are "broken" to processes that should be "fixed" before they "break." This article discusses strategies for overcoming some of the major barriers and challenges to successful TQM and CQI implementation to the hospital setting.

Hospital Administration↗

Evaluating the Israeli health care reform: strategy, challenges and lessons.

Evaluating the implementation of health care reform provides important information on its effect, as well as a factual basis for deciding upon mid-course modifications. Although researchers in various countries are addressing the impact of reform, only few governments have initiated a structured, planned evaluation to accompany reform efforts. In Israel, the 1995 National Health Insurance Law earmarked 0.1% of the health care budget for research on the law, coordinated by the National Institute for Health Policy and Health Services Research. This paper describes the evaluation strategy of the JDC-Brookdale Institute which is taking part in the research efforts. Implementation of the evaluation strategy and the challenges of evaluating a major reform of the health system are discussed. The evaluation strategy combines elements of formative and summative evaluation using a 'case study' approach which seeks to integrate in-depth understanding of the changing health system and of health care provider's organizational behavior, with a variety of outcome measures. The Israeli case provides support for the proposition that an integrated approach to evaluating health reform provides a better understanding of the subject under review and thus a better basis for making useful recommendations to policy makers. In addition, such an approach enhances the validity and credibility of the data and thus the probability of making an impact, which is a main objective of formative evaluation. Examination of the Israeli case, provides important insights about evaluation of health system reform, and may benefit researchers in other countries attempting to evaluate health care reform.

Evaluation Studies as Topic↗

Expanding pediatric psychology beyond hospital walls to meet the health care needs of ethnic minority children.

OBJECTIVE: To discuss the need for an ecological model and new approaches for meeting the psychological and physical health care needs of minority children. METHOD: I support approaches that are informal, empowerment oriented, and culturally sensitive and that address illness prevention and health promotion. DISCUSSION: Assessment, intervention, and research challenges involved in implementing these approaches are identified, and some strategies for overcoming these challenges are discussed. CONCLUSIONS: Pediatric psychology can be expanded to embrace the advocated model and intervention approaches to better meet the health care needs of minority children.

Adolescent↗

Developing an integrated information system for specialized addiction treatment agencies.

This article outlines the development of an integrated information system for specialized alcohol and drug treatment agencies in Ontario, Canada. The system is being developed following a strategic planning process involving provincial funding ministries and coalitions of service providers. An overview of the system's development is provided and the implementation of one subcomponent, a client-tracking system, is described. Some challenges to the implementation of this component are identified.

Alcoholism↗

Case study methodology in tissue viability. Part 2: A study to determine the levels of knowledge of nurses providing care for patients with leg ulcers in an acute hospital setting.

One of the main components of the clinical governance framework is a comprehensive programme of quality improvement activity that includes the implementation of evidence-based, everyday clinical practice. This paper addresses the challenges surrounding the implementation of one area of evidence-based practice, the management of leg ulcers in an acute hospital trust. The aim of the study was to distinguish the levels of knowledge of nurses providing care for patients with leg ulcers within an acute hospital setting. The design used was that of a collective case study. Each 'case' was a patient with a leg ulcer and the nurses who cared for that patient. They were studied in order to provide insight into the nurses' understanding of leg ulcer management. A number of themes were identified as being common to all the cases. They are: evidence-based practice, nursing skills, quality of life, patient understanding of their ulcer and pain. Each of these themes identified areas of knowledge deficit in the nurses. As part of the implementation of a leg ulcer policy an education programme is being developed to address these deficits.

Bandages↗

Implementing standards for radiation sterilization. The challenges.

This article discusses the limitations of the methods offered in the radiation standards for selecting radiation dose. It highlights the difficulty of using these methods for product-specific dose-setting and, in particular, their inability to determine this for products with low bioburdens. Issues relating to the appropriateness of 25 kGy are also discussed.

Equipment and Supplies↗

Computer-based radiological teaching programs: the challenge and trauma of development and implementation.

Computers are becoming an invaluable part of the radiologist's environment whether they are used as a source of the patient's clinical or laboratory information, to store x-ray or pathologic reports or as a viewing station for films. The use of computers in the educational environment is but a natural extension of the increased computerization of the radiologic department. This article reviews the use of personal computers in a teaching environment via the construction of the computed tomography teaching program entitled "CT: The Game." The decisions that must be made in terms of hardware and software prior to program development as well as the actual development are discussed. The potential of computers in terms of continuing education as well as in residency training programs is discussed with the potential for the future addressed.

Computer Systems↗

Outcomes system implementation for subacute care.

The emergence of subacute care, seen as a cost-effective alternative to other, more expensive settings, is an important option for case managers. The current, rapid growth of subacute care, the diversity of subacute programs, the differences in patient types, and the lack of consistent standards to define subacute care illustrate the critical need for the case manager's role in balancing quality and cost. The lack of solid clinical outcomes data for patients treated in subacute care make it difficult for case managers to assess quality. Outcomes data, as a measurable dimension of quality, may include clinical effectiveness measures, associated costs, and patient/family satisfaction. Outcomes data can be used as a tool by the case manager to facilitate the coordination of patient care. Although there is an increased consumer interest in outcomes across all health care modalities, there is limited outcomes research available to document the efficacy of subacute care. As the pressure increases for outcomes data on subacute care by consumers and payers, efforts toward facility implementation of outcomes systems to assess subacute care are growing. The unique challenges to outcomes implementation in a skilled nursing facility-based setting are discussed, and strategies for successful implementation are presented. Basic subacute outcomes implementation issues of organizational support, staff participation, and data collection are reviewed. Ideas for case management involvement with facility implementation are discussed.

Case Management↗

The challenge of exercise: practical advice for implementation into clinical practice.

Regular physical activity has important physiological and psychological benefits for all people. There are, however, special concerns for people with diabetes that require consideration before recommending an exercise program. Risks associated with exercise include exercise-induced hypoglycemia or hyperglycemia and worsening of long-term complications. Safe participation in all forms of exercise is possible through proper screening and teaching specific diabetes self-management skills.

Diabetes Mellitus, Type 1↗

Health management education and reformation of nursing education in the Slovak Republic.

This article details changes in nursing in the Slovak Republic. Nurses are an important part of the rapidly changing health care systems in the Slovak Republic, especially as nursing and health care move from a traditional to a more holistic approach. Nursing must adapt to the changes in the health care systems, including taking on more managerial responsibilities, requiring greater knowledge and skills. This article discusses the background and curriculum development of nursing education, from a traditional nursing education at the secondary school level to more advanced graduate-level programs, as nursing takes on a greater role in the Slovak Republic. Finally, the article details the need to implement the changes in education to the practice of nursing as well as the challenges of such implementation.

Curriculum↗

Implementing computerized tracking at a community health center: challenges and solutions.

A computerized tracking system for both preventive care and chronic disease tracking was implemented at a community health center, using a PC based local area network interfaced with a mainframe scheduling and billing system. Initial database construction used downloads of historical billing data, but ongoing database maintenance is accomplished by using an optical mark-sense scanner to construct both billing and clinical tracking files from custom-designed encounter forms. In this way, expanded clinical data is collected with an actual reduction in manually keyed data, reducing the ongoing cost of the system.

Ambulatory Care Information Systems↗

Transparent image access in a distributed picture archiving and communications system: the Master Database broker.

A distributed design is the most cost-effective system for small-to medium-scale picture archiving and communications systems (PACS) implementations. However, the design presents an interesting challenge to developers and implementers: to make stored image data, distributed throughout the PACS network, appear to be centralized with a single access point for users. A key component for the distributed system is a central or master database, containing all the studies that have been scanned into the PACS. Each study includes a list of one or more locations for that particular dataset so that applications can easily find it. Non-Digital Imaging and Communications in Medicine (DICOM) clients, such as our worldwide web (WWW)-based PACS browser, query the master database directly to find the images, then jump to the most appropriate location via a distributed web-based viewing system. The Master Database Broker provides DICOM clients with the same functionality by translating DICOM queries to master database searches and distributing retrieval requests transparently to the appropriate source. The Broker also acts as a storage service class provider, allowing users to store selected image subsets and reformatted images with the original study, without having to know on which server the original data are stored.

CD-ROM↗

Poultry vaccines: an analysis of the animal trials required for vaccine testing and the way to reduce or refine these tests.

The testing of vaccines for use in chickens requires a large number of animal trials. Especially for poultry vaccines, quality testing of each batch consists of testing for extraneous agents in chickens for all products and potency tests for inactivated products. For the licensing of a vaccine a number of safety and efficacy tests is necessary. The safety testing covers dose and overdose studies, and the influence on reproductive performances and immunological functions. For live vaccines some additional trials concerning spread of vaccine strains, dissemination in the vaccinated animals and reversion to virulence are required. Some possibilities for combining several tests are presented. The purpose is to reduce the number of animals needed in these trials. The efficacy testing mostly requires challenge tests to define onset, level and duration of immunity. Serological test systems to replace the challenges are rarely implemented. The example of efficacy testing of infectious bursal disease vaccines demonstrates the possible replacement of a challenge by a serological test system. Parameters are morbidity, mortality, histological findings, bursa/body-ratios, and humoral antibodies detected by serum neutralization and ELISA.

Animal Welfare↗

The 2026 Bundibugyo Ebola Outbreak: A Warning for Global Preparedness for Future Epidemics.

Dear Editor, The 2026 Bundibugyo Ebolavirus (BDBV) outbreak has once again demonstrated that the threat of emerging diseases remains a major global health challenge. The outbreak, first detected in the Democratic Republic of Congo (DRC) and spread to Uganda, is not only a regional crisis but also a test of the world's preparedness for pathogens with epidemic potential. Unlike Zaire Ebolavirus (EBOV), which has benefited from effective vaccines and treatments in recent years, BDBV still lacks a licensed vaccine or specific treatment[1]. As of June 6, a total of 515 laboratory-confirmed cases and 91 deaths have been reported in DRC, while Uganda has reported 19 laboratory-confirmed cases and two deaths. The occurrence of unexplained deaths among both the community and healthcare workers, along with prior reports of an unidentified hemorrhagic fever, suggest that the outbreak has been likely originated in March 2026 or even earlier. Accordingly, the virus is believed to have spread unnoticed for several weeks before being identified through genomic sequencing in mid-May 2026[2]. The resurgence of Ebola in Africa results from a complex interaction of environmental, social, and political factors. Deforestation, the development of mining activities, the expansion of agriculture, and increased human contact with wildlife have elevated the likelihood of spillovers from wildlife reservoirs, particularly fruit bats, which are considered the most likely natural hosts of ebolaviruses. Moreover, weak disease surveillance systems and limited access to health services have delayed the identification of early cases. The similarity of the initial symptoms of Ebola to other endemic diseases in the region, such as malaria, makes early diagnosis difficult and provides ample opportunity for transmission to spread. Insecurity, misinformation, attacks on healthcare facilities, and armed conflict in the region have also posed serious challenges to the implementation of contact tracing programs and rapid response to the epidemic[3,4]. One of the most critical challenges highlighted by this outbreak is the weakness of diagnostic capacities in the affected areas. The initial 2007 outbreak of BDBV proved that delayed lab confirmation paralyzes public health responses[5]. Now, dealing with a much larger outbreak in 2026, the persistence of this challenge highlights a dangerous failure to invest in diagnostic infrastructure over the last 19 years. Many health facilities do not have access to molecular laboratories, rapid sample transport systems, and biosafety infrastructure[6]. These limitations delay the diagnosis and isolation of patients, thus perpetuating disease transmission. Investment in the development of mobile laboratories, rapid point-of-care diagnostic tests, and digital reporting systems can dramatically reduce the time to diagnosis and response to an outbreak. The BDBV outbreak shows that laboratory preparedness must be considered an essential part of global health security. Furthermore, the early detection of emerging pathogens depends not only on diagnostic technologies but also on the expertise of local scientists who are able to recognize unusual epidemiological and laboratory patterns. During the current outbreak, suspected Ebola cases initially tested negative using common diagnostic tests (designed for Zaire Ebola Virus), which delayed the identification of the BDBV. Specifically, field-based diagnostics in Bunia were calibrated exclusively to detect the EBOV responsible for recent Congolese outbreaks. Consequently, patient samples collected throughout late April and early May yielded negative results, requiring cross-country transport to Kinshasa for genomic confirmation[2]. This experience revealed a major vulnerability in outbreak preparedness: diagnostic tools designed for known threats may be ineffective in detecting less common or unexpected pathogens. Therefore, strengthening local scientific capacities, developing genomic surveillance, and expanding access to flexible and adaptable diagnostic platforms should be considered as a top priority for global health security. The lack of a licensed vaccine for BDBV was one of the most significant challenges of this epidemic. While the rVSV-ZEBOV vaccine has played a significant role in controlling Zaire ebolavirus, there is no licensed vaccine for BDBV. In response to this outbreak, efforts to develop mRNA-based vaccines, adenoviral vectors, rVSV-based vaccines, and multipotent vaccines have been accelerated[7]. However, the experience of this epidemic has shown that the development of medical products for rare diseases continues to face financial and investment constraints. This challenge highlights the need for sustained support from governments and international institutions for research and development of pathogens with epidemic potential. The 2026 Bundibugyo outbreak provides several key lessons for the global community. First, early detection and rapid diagnosis are the most important factors in containing the epidemic. The 19-year interval between the 2007 BDBV outbreak and the 2026 outbreak underscores persistent shortcomings in investment toward decentralized, pan-ebolavirus diagnostic infrastructure, with diagnostic delays hindering timely outbreak identification in both instances. Second, the trust and active participation of local communities are as important as medical interventions. Additionally, the rapid cross-border transmission dynamics between the DRC and Uganda demonstrate that blanket travel restrictions and border closures are impractical. As communities in the Great Lakes region routinely cross national borders for trade and healthcare, coordinated regional surveillance and timely information sharing are likely to be more effective than broad border closures in mitigating disease transmission[8]. Third, the protection of health workers must be a priority in preparedness plans. Fourth, a "One Health" approach is essential for simultaneous monitoring of humans, animals, and the environment. Although BDBV is not a new pathogen, the lack of licensed medical interventions and limited investment in research reflect many of the vulnerabilities associated with the concept of "Disease X."[9]. Unlike Zaire Ebola Virus, for which licensed vaccines and monoclonal antibody therapies are available, BDBV forces public health responses to rely almost entirely on non-pharmaceutical interventions such as isolation and infection control[10]. This gap reflects the structural inequity in global health research and development funding, with pathogens affecting resource-limited regions receiving insufficient attention until they spark an international emergency[2]. The BDBV outbreak proves that global epidemic preparedness cannot be pathogen-selective; it requires proactive investment in broad-spectrum countermeasures and resilient frontline health systems[8]. In conclusion, the 2026 BDBV outbreak is a serious wake-up call for the global health system. The epidemic revealed that gaps in surveillance systems, diagnostic capacities, vaccine development, and preparedness for emerging diseases persist. Investing in health infrastructure, developing Pan-Ebolavirus vaccines, strengthening laboratories, expanding the One-Health approach, and supporting research on emerging zoonotic pathogens must be at the top of global health security priorities. Otherwise, the BDBV outbreak may be just a prelude to larger crises to come.

Ebolavirus↗

Environmental biotechnology: the ongoing quest.

Environmental biotechnology, until now, has primarily focused on the development of technologies to treat aqueous, solid and gaseous wastes. At present, the basic knowledge on how biotechnology can handle these wastes has been acquired and the focus is now on the implementation of these processes as 'best available technology not entailing excessive costs' (BATNEEC) in the framework of strict and transparent environmental legislation. New environmental challenges continue to evolve, as it becomes clear that waste streams should be tackled in an overall holistic way. New technologies to reach this goal are currently under development. Novel aspects with respect to the domain of water treatment are, for example, the biomembrane reactor technology and the newly discovered processes to remove nitrogen by means of anaerobic ammonium oxidation. Also, most challenging is the continuing strive for re-use of treated wastewater. Indeed, water shortage is emerging in an increasing number of countries all over the world and necessitates the short cycling of water. Finally, biotechnology has a key role to play in the novel approaches to design wastewater treatment based on decentralised sanitation and reuse (DESAR). Solid waste is a major challenge worldwide. The implementation of anaerobic digestion to treat biowastes has become a grown-up technology. New approaches in which biotechnological processes are linked to physical processes, such as plasma technology, certainly deserve special attention for the coming decades. Soil and sediment clean up by means of biostimulation/remediation/augmentation is now well established. Certainly, a number of prospects need to be further explored, such as the use of special energy sources to stimulate in situ the microbial community and the seeding of knowledge to the in situ community by means of horizontal gene transfer mechanisms. A number of waste gases can be handled by biofilter systems. Biological treatment of wastegases is also evolving, inasmuch as that besides conventional chemical pollutants, now also highly problematic chemicals (even dioxins) can be dealt with through proper biotechnological approaches. A remarkable new potential is the use of well designed probiotics to upgrade aquaculture and together with conventional biological water treatment processes, to guarantee the overall water quality of this domain of food production.

Air Pollution↗

Towards personal health record: current situation, obstacles and trends in implementation of electronic healthcare record in Europe.

In this article, we define the electronic healthcare record and present its purpose as a tool for continuity of care. We briefly describe the current situation of usage and focus on the major challenges to wide implementation in Europe and beyond. Finally, we point out trends that show stronger involvement of the patients-citizens in the health care prevention and promotion processes, and discuss the impact on the future development of the electronic healthcare record into personal health records.

Computer Systems↗