Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “TECHNOLOGY”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Technology evolution: the technology spectrum and its application to orthopedic technologies.

The evolution of clinical technologies presents potential adopters with considerations in planning for clinical program development that include the stage and the rate of a technology's evolution. This paper presents a conceptual framework for these considerations and applies the framework to orthopedic technologies. Eight orthopedic surgeons were asked to assess 14 orthopedic technologies and position each of them along a spectrum of research, clinical, and adopted technologies. The distribution of responses for each technology-year combination is presented, and estimates of central tendency, dispersion, and variances provide measures of the change in the distribution of responses over time for each technology and the change in the degree of rater consensus over time for each technology. While orthopedic trauma was chosen to illustrate the technology spectrum model, the model and assessment methodology is applicable to other medical specialties as well. Adoption of this framework in a hospital setting should enable more systematic and effective clinical program development.

Diffusion of Innovation↗

When and how to assess fast-changing technologies: a comparative study of medical applications of four generic technologies.

OBJECTIVES. To try to identify the optimal time at which to start assessing new and fast-evolving health technologies. To provide insight into factors influencing the timing of assessments and the choice of methods for assessing new and fast-changing technologies. HOW THE RESEARCH WAS CONDUCTED. A series of literature reviews were undertaken covering the general principles involved in the timing of health technology assessments (HTAs). Additionally, the reported assessments of laparoscopic cholecystectomy, chorionic villus sampling (CVS), teleradiology, teledermatology, genetic screening for predisposition to breast cancer, and gene therapy for cystic fibrosis were reviewed to try to identify the factors that influenced the timing of these assessments. Key individuals in each field were also interviewed. The selected technologies allowed comparison between those that were new and evolving and those that were relatively well-established. A bibliometric study of publication trends was also undertaken to see whether these trends would suggest points in the development of a technology that could be used as indicators that assessment should be started. RESEARCH FINDINGS. TIMING. The precise point at which assessment should start was not identified but the bibliometric study suggested that extending this approach might give useful results. For all health technologies, more regular reporting of outcomes and side-effects should be encouraged during the period after initial assessment and, where the technology is fast-changing, reassessment should take place from time to time. The precise intervals were not identified and the problem remains of deciding when a technology has changed enough to warrant reassessment. FACTORS INFLUENCING TIMING. Published reports of assessments did not generally specify the reasons for their timing, but a number of factors appear to have influenced the timing of those assessments, directly or indirectly. Product champions and opinion leaders pioneer the introduction of new technologies into clinical practice, and their reports may lead to the rapid diffusion of such technologies before they have been adequately evaluated, as was the case with laparoscopic cholecystectomy; this diffusion may limit the methods of evaluation that can then be used. It is therefore important to assess new health technologies before diffusion takes place. The extent to which regulatory control is imposed on the introduction of new health technologies can also influence the timing of assessments. Such controls might have helped to restrict the diffusion of laparoscopic cholecystectomy, making a large and widely generalisable randomised controlled trial (RCT) feasible. The source and availability of funding for studies may influence the nature and timing of trials. Many telemedicine evaluations were funded by commercial telecommunications organisations and were thus restricted in their timing (and biased towards the technological aspects of the applications) by the availability of funds. Media coverage undoubtedly has an influence although this influence is not always predictable; it may generate 'favourable' publicity about new health technologies, which can lead to immediate demands for the new technique, as was the case with laparosocpic cholecystectomy with its apparent benefits. Thus assessments should be made before media coverage exerts popular pressure on purchasers to adopt the technology and dissuades patients from participating in RCTs (because of fear they may be randomised to the standard treatment as occurred in a US trial of CVS). Innovators should also be cautious in the claims that they make to the media.(ABSTRACT TRUNCATED)

Breast Neoplasms↗

A model for technology assessment as applied to closed loop infusion systems. Technology Assessment Task Force of the Society of Critical Care Medicine.

OBJECTIVES: To test a model for the assessment of critical care technology on closed loop infusion control, a technology that is in its early stages of development and testing on human subjects. DATA SOURCES: A computer-assisted search of the English language literature and reviews of the gathered data by experts in the field of closed loop infusion control systems. STUDY SELECTION: Studies relating to closed loop infusion control that addressed one or more of the questions contained in our technology assessment template were analyzed. Study design was not a factor in article selection. However, the lack of well-designed clinical outcome studies was an important factor in determining our conclusions. DATA EXTRACTION: A focus person summarized the data from the selected studies that related to each of the assessment questions. The preliminary data summary developed by the focus person was further analyzed and refined by the task force. Experts in closed loop systems were then added to the group to review the summary provided by the task force. These experts' comments were considered by the task force and this final consensus report was developed. DATA SYNTHESIS: Closed loop system control is a technological concept that may be applicable to several aspects of critical care practice. This is a technology in the early stages of evolution and much more research and data are needed before its introduction into usual clinical practice. Furthermore, each specific application and each device for each application (e.g., nitroprusside infusion, ventilator adjustment), although based on the same technological concept, are sufficiently different in terms of hardware and computer algorithms to require independent validation studies. CONCLUSIONS: Closed loop infusion systems may have a role in critical care practice. However, for most applications, further development is required to move this technology from the innovation phase to the point where it can be evaluated so that its role in critical car practice can be defined. Each application of closed loop infusion systems must be independently validated by appropriately designed research studies. Users should be provided with the clinical parameters driving each closed loop system so that they can ensure that it agrees with their opinion of acceptable medical practice. Clinical researchers and leaders in industry should collaborate to perform the scientifically valid, outcome-based research that is necessary to evaluate the effect of this new technology. The original model we developed for technology assessment required the addition of several more questions to produce a complete analysis of an emerging technology. An emerging technology should be systematically assessed (using a model such as the model developed by the Society of Critical Care Medicine), before its introduction into clinical practice in order to provide a focus for human outcome validation trials and to minimize the possibility of widespread use of an unproven technology.

Algorithms↗

The great escape? Prospects for regulating access to technology through health technology assessment.

OBJECTIVE: Health technology assessment (HTA) can be used both to promote access to safe, efficacious, and cost-effective technologies, and to discourage access to undesirable ones. Yet HTA has had less success than might be hoped in pursuing the latter goal. This paper examines the scope of HTA as currently practiced to contribute to regulation of access to undesirable technologies. DESIGN: The study design is a critical analysis of HTA's methods, based on an exposition of the normative issues involved in restriction of access to health technologies. The paper classifies technologies that might figure as potential candidates for exclusion into five categories and underscores the key social and ethical dilemmas associated with limiting their use. RESULTS: For four of the five categories of technology outlined, limitation of access necessarily involves denial of benefit. Limitation of access thus inevitably raises difficult normative issues. We show that these are ill-addressed by the range of "evidence" typically considered in technology assessments, which centers predominantly on clinical and technical features such as efficacy, safety, and costs. CONCLUSIONS: If HTA is to enhance our ability to make reasonable decisions concerning the use and diffusion of health technologies, it must better integrate consideration of the social, political, and ethical dimensions of health technologies into the process of technology assessment. We suggest a framework within which to approach this goal.

Canada↗

Assessing medical technologies in development. A new paradigm of medical technology assessment.

OBJECTIVE: Our study aims to provide a practical contribution to the field of medical technology assessment within a new paradigm. This paradigm indicates the need for more comprehensive technology assessments in the development stage of a new technology. METHOD: We introduce a method, based on Saaty's Analytic Hierarchy Process, which quantitatively supports discussions between the various actors that shape the technology's development and diffusion. These discussions focus on technical, medical, social, and economical requirements relevant to the design and diffusion of the new technology. DISCUSSION: In contrast to more traditional technology assessments, our method encompasses the perspectives of the diverse actors in the social context of technology development and diffusion. It influences their decision making on technology design and diffusion in order to improve this technology's later clinical as well as social effectiveness.

Decision Support Techniques↗

Service program diagnostics and decision support technology for improving health technology service efficiency and productivity.

Our in-depth survey of both the state of the art and the results of application, implementation, and rollout of problem resolution diagnostics in control help desks and field service clearly shows the potential of online remote diagnostics technology (Figure 9) to improve service force productivity and efficiency and to make more effective use of service resources (people and parts). Our survey of the current and planned future expenditures for diagnostics used in field service clearly indicates that the overall service diagnostics market is currently sizable, in the range of $2 billion as of 1997, and is projected to grow to approximately $2.6 billion by 2000. This current expenditure and growth will occur primarily in the electronics arena, but there are still substantial development and application investments occurring in both electromechanical and mechanical areas. We believe that the pace of investment will fall off as the service industry shifts from development and experimental research to the application and rollout of standard off-the-shelf technology. Thus, the overall pattern of the diagnostics market indicates a continuing increase in expenditures by the field service industry for electronics-oriented service diagnostics and some increase with respect to use of this technology in electromechanical and mechanical applications. The application and use of diagnostics technology will also be affected by the ability of the field service management community to recognize the need to search for an optimum as opposed to a feasible solution to dispatch, assignment, call screening, call avoidance, and logistics deployment. The further rollout of affordable wireless communications technology such as Ardis and Ram mobile and the new cellular-based CPDP technology, coupled with the increased availability of inexpensive wireless-based laptops, portables, and CD-ROM-based problem resolution and diagnostics technology clearly shows the value of this technology in improving service productivity, efficiency, and profitability. As we move from very expensive academically and research and development-oriented diagnostics applications to the purchase and use of off-the-shelf software and predeveloped knowledge bases, it is clear that this technology will be broadly applied.

Cost-Benefit Analysis↗

Technological paternalism: on how medicine has reformed ethics and how technology can refine moral theory.

The objective of this article is to investigate ethical aspects of technology through the moral term "paternalism". The field of investigation is medicine. The reason for this is twofold. Firstly, "paternalism" has gained moral relevance through modern medicine, where physicians have been accused of behaving paternalistic and threatening patients' autonomy. Secondly, medicine is a brilliant area to scrutinise the evaluative aspects of technology. It is argued that paternalism is a morally relevant term for the ethics of technology, but that its traditional conception is not adequate to address the challenges of modern technology. A modification towards a "technological paternalism" is necessary. That is, "technological paternalism" is a fruitful term in the ethics of technology. Moreover, it is suited to point out the deficiencies of the traditional concept of paternalism and to reform and vitalise the conception of paternalism in ethics in order to handle the challenges of technology.

Biomedical Technology↗

The use of instructional technology in poultry science curricula in the United States and Canada: 1. Demographics of technology and software use.

This paper describes a study conducted in recognition of the increasingly widespread use of computers and the importance of exposure to instructional technologies in all aspects of poultry science curriculum. The study consisted of the distribution and analyses of two cross-sectional surveys to gather detailed information on the use of instructional technology (IT) in poultry science curricula in the US and Canada. One survey was sent to departments to obtain profiles of poultry science degree programs and the availability of IT and general support for its use. A second survey was designed to obtain individual profiles of faculty use of IT and attitudes toward the use of such technologies. Information presented in this paper includes basic demographics, estimates of survey validity, and a cross-section of instructional technologies used in poultry science education. The survey found that poultry science faculty reported higher levels of use for some instructional technologies than was expected from recent reports in the literature for higher education in general. Traditional technologies were widely used for instruction, but computers and the Internet were almost as popular. Reasons for the high levels of use may be due to an increasing user-friendliness of equipment and software applications, as well as the rapid acceptance over the past 2 yr of computers and Internet technologies among the general public. Involvement with IT projects appears to be changing from passive to active, consistent with faculty reports of high interest levels and active experimentation with technology and software.

Agriculture↗

Using a technological community framework to manage new medical technologies. The case of umbilical cord blood (UCB) banking.

A technological community framework can be used to explain and manage new medical technologies. It describes emergence, commercialization, and standardization of an innovation or technology within the context of its whole network (or community) of stakeholders. This framework is used to illustrate the emergence, commercialization, and standardization of a relatively new medical technology--umbilical cord blood (UCB) banking. Umbilical cord blood may prove to be a source of stem cells for bone marrow transplant that is safer, more accessible, and less expensive than current sources of stem cells. The technological community framework can signal potential problems as the technology emerges, and help healthcare delivery systems and providers to effectively assess and manage the technology. The framework can also be applied to other medical technologies and innovations.

Biomedical Technology↗

Developing a model for technology assessment. A system helps its facilities prepare for technological change.

In 1991 the Franciscan Health System (FHS), Philadelphia, created a Technology Assessment Task Force to support specific goals and strategies in the FHS strategic plan and to help prepare its members for technological change. Because FHS is a large and diverse system, with facilities in seven states both on the East Coast and in the Pacific Northwest, the task force needed to develop flexible recommendations with broad applicability. The task force recommended a time-phased approach for changing the way technology is identified, acquired, and used in FHS organizations. Key recommendations included (1) creating a standing FHS technology steering committee, (2) implementing a technology assessment model for selected technology activities, (3) sponsoring systemwide technology conferences, and (4) reviewing FHS technology actions, revising as appropriate. The system and hospital leadership adopted the task force's recommendations and are now implementing them.

Catholicism↗

Technology Transfer--Bridging Space and Society. The Students of the Technology Transfer Design Project Team (ISU Summer Session 1997).

Strategies, policies and methods by which technologies can he cross-fertilized between the space and non-space sectors were examined by students of the design project "Technology Transfer--Bridging Space and Society". This project was undertaken by students attending the 1997 10th Anniversary Summer Session Program of the International Space University. General issues relating to transfer of technology were discussed including definitions and mechanisms (push, pull, interactive and pro-active). As well as looking at case studies and the impact of national policies on space agencies, the design project also sought to look at technology transfer on a country-by-country basis, selecting various countries for scrutiny and reporting on their technology transfer status. The project report shows how transfer of technology varies between nations and when analyzed with the case studies identifies the general strategies, policies and methods in use and how they can he improved. Finally, the report seeks to recommend certain issues to governments, space agencies and industrial organizations to facilitate the transfer of technology. These include the development of a generic metrics system and the implementation of better appropriate procedures and mechanisms for a positive diffusion process between space and non-space sectors.

Europe↗

Technology transfer to the developing world: does new technology have any relevance for developing countries?

Technology is not limited to equipment and commodities but includes know-how, understanding and the ability to control and exploit underlying principles and processes. Diverse technologies, not only those termed 'biomedical', affect the incidence and control of all diseases including tuberculosis. 'New technology' implies something recently developed, but any technology is new to those without prior experience. For developing countries, technologic novelty is far less important than relevance, which encompasses, among other things: direct application to reducing risk of infection and disease; affordability and cost-effectiveness; saving foreign exchange; satisfying public demand with political benefit to the government; and promotion of social equity. The value of health gained by the new technology should exceed its cost, but this is difficult to measure. It is usually presumed that industrial countries are eager to export technologies, but intellectual property and patient regulations of the importing country may inhibit such transfers. Similarly, ethical issues involving protection of human subjects and informed consent may complicate clinical trials and technology assessment in the developing country environment.

Cost-Benefit Analysis↗

Technology and primary care in the United States. A challenge for technology assessment.

This article examines technology in primary care and its implications for technology assessment. Following an overview of the primary care setting and the importance of medical technology to primary care providers, the article identifies the new decisionmakers in medicine who both direct and respond to technological change in primary care, focusing, in particular, on their needs for information on primary care technologies. Furthermore, new methodologic issues for technology assessors are posed and examined. Finally, the authors offer conclusions about the need for changes in technology assessment and speculate about its future in primary care.

Data Collection↗

Guidelines for medical technology in critical care. Technology Subcommittee of the Working Group on Critical Care, Ontario Ministry of Health.

OBJECTIVE: To examine the current status of technology in critical care medicine and to present guidelines for technologies commonly used in Ontario critical care units. DATA SOURCES: A computerized search of the medical literature, interviews with relevant people and a review of existing guidelines or standards were conducted. STUDY SELECTION: Nonrandomized trials and retrospective reviews were included because of a paucity of prospective randomized controlled trials. DATA EXTRACTION: Technologies were assessed by individual committee members. The validity of the technologies was compared with accepted standards when available. All published clinical data were used to assess efficacy. DATA SYNTHESIS: After review of the data, discussion papers on ventilation, and electrocardiographic, hemodynamic and intracranial pressure monitoring were written by committee members and then reviewed by the subcommittee as a whole. For each technology an attempt was made to match need with the patient classifications of the Working Group on Critical Care. Critical care guidelines were then developed through the use of the nominal group and Delphi consensus-gathering techniques. The guidelines were reviewed by external experts. CONCLUSIONS: These guidelines should help in assessing quality assurance and the resources necessary for critical care. Also, they should enable health care providers and hospital administrators to make better decisions when acquiring critical care technology. Since the guidelines represent the current state of knowledge there must be a continuing assessment of the technology and review of the guidelines.

Critical Care↗

Technological stress: psychophysiological aspects of working with modern information technology.

There is rapid technological transformation occurring in both work and social life. The results of information technology, such as mobile telephones, computers, and electronic networks, have been looked upon as the key to solving several of the most pressing problems of the Western world. At the same time, numerous studies have shown that the great majority of computerization projects fail to meet their deadlines with the originally specified functionality mainly because human factors are not sufficiently taken into account during the planning and implementation phase of the project. In a study of the bodily, mental, and psychophysiological reactions of employees involved in the design of advanced telecommunications systems and of office employees using regular video display technology, several stress-related psychosomatic disorders have been identified. They include sleep disturbances, psychophysiological stress and somatic complaints. Controlled intervention programs aimed at enhancing organizational structures and individual coping strategies have been proved effective in counteracting the negative effects of working with information technology. The two-way interaction between the external information technology environment and bodily and mental reactions needs to be taken more into account in the design and use of modern information technology. There appears to be an increased awareness of human aspects when the risks and benefits of the rapid spread of information technologies are discussed.

Adaptation, Psychological↗

Medical technologies in developing countries: issues of technology development, transfer, diffusion and use.

The difficulties experienced in transfer of medical technology to developing countries are aggravated by partial and incomplete understanding of the cultural, social, economic, and institutional factors affecting technology development, transfer, dissemination and use. In this paper, it is argued that a more dynamic and comprehensive approach is needed for the analysis of these factors. Such an approach would provide the basis for linking existing information stemming from partial analyses of problems related to individual users, the health services or systems, and the technology itself. The starting point of any comprehensive analysis must be the structure of the society in which the technology is to be used. The value of a comprehensive analytical approach is illustrated by discussion of a medical technology still under development, a vaccine against malaria. This discussion further indicates that consideration of cultural, social, economic, and institutional factors in the developmental phases of a technology can contribute to ensuring acceptability and sustainability of the technology under the multifaceted conditions in which it is to be used.

Developing Countries↗

Putting technology to work: Users' perspective on integrating assistive technology into the workplace.

This qualitative study examined the experiences of people with disabilities who use assistive technology in open employment. This study aims to describe and understand the factors the participants perceived as important in integrating technology into the workplace, as well as the barriers encountered in the process. Fifteen people with a range of acquired and congenital disabilities as well as their employers (8) or co-workers (4) were interviewed. The interviews were transcribed and analyzed. Nud*ist Version 4(R) was used for data management. Emergent themes related to the integration of assistive technology were software compatibility, Information Technology (IT) and product support, and the interaction between technology and the work environment. Participants also reported on the impact of technology on their performance and comfort at work, as well as dealing with people and processes in the workplace. By identifying the issues and support strategies for technology users in the workplace, appropriate measures can be implemented to ensure that the spirit of disability discrimination legislation is realized.

Journal Article↗