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At least 19 recordsLinked to original sources

Training for biomedical engineering in India.

There are biomedical engineers in India and a demand for their services, but there is an absence of trained technical staff to apply the subject within the hospitals. The current situation of the medical electronics aspect of biomedical engineering within Industry, the Hospitals and Educational Institutions is described and some of the problems identified. The particular problems of the growth of a complex technical subject within a developing country are also considered.

Biomedical Engineering

Home care: a biomedical engineering challenge.

The contributions of biomedical engineering to health care delivery have focused on techniques for acquiring and processing patient data, primarily in the high technology setting of modern hospitals. The increased sophistication of hospitals is responsible in large measure for the soaring costs of health care. The current trend toward both ambulatory and home care provides new and challenging opportunities for biomedical engineering to bear on problems of great social and economic consequence in facilitating safe and effective care of the chronically ill in the security and comfort of their own homes. Techniques which are refined for use by the expanding population of both aged and handicapped individuals are also of potential value for the home care of younger patients with broader life expectancy. Projections into the future prospects for home care elicit a wide diversity of opportunities of great significance to the future of the health professions and society as a whole.

Aged

Education and certification of biomedical engineers in Canada.

The education of biomedical engineers in Canada is discussed, with reference to the Canadian health care system and related industry. Information on specific educational programmes, with enrollment data, is presented. The paper concludes with brief comments on the certification of clinical engineers in Canada.

Biomedical Engineering

Biomedical engineering. A means to add new dimension to medicine and research.

Biomedical engineering is an evolving science that seeks to insert technically oriented and trained personnel to assist medical professionals in solving technological problems in the pursuit of innovations in the delivery of health care. Consequently, engineering solutions are brought to bear on problems that previously were outside the training of physicians and beyond the understanding or appreciation of the conventionally educated electrical or mechanical engineers. This physician/scientist/engineer team has a capability to extend medicine and research far beyond the capability of a single entity operating alone. How biomedical engineering has added a new dimension to medical science at the Kennedy Space Center is described.

Adaptation, Physiological

Opportunities for the cellular approach in biomedical engineering.

This review is a commentary on recent, altered perspectives about biomedical engineering and its role in medicine. It is argued that, rather than being a peripheral specialty, medical engineering and engineering principles in general have a direct application to biochemical medicine and cell biology. A brief description is given of the cell as a compartmentalised reactor system, and the ways in which it is possible to replace lost or aberrant cell function. Specific topics are then covered to illustrate the general thesis. These are: polymers for cell mimicry, cell-surface interactions, biomolecule transport, cell transport phenomena, cell signalling, harnessing of cells for therapy and microbial interactions. These disparate subject areas have a common thread of interest for the biomedical engineer, and are presented here in a way which highlights key points of relevance for engineering. Though necessarily brief, the various descriptions in this review provide a film indication that a rigorous approach to the assessment, modelling and use of cells along sound engineering lines is vital for the future. It is concluded that, without this approach, our understanding of cell biology will remain semiquantitative and semiempirical.

Biological Transport

The biomedical engineer in the hospital.

The role of the hospital biomedical engineer is described with reference to design and development of equipment and its maintenance, provision of a technical advisory service, and teaching.

Australia

Education and professional training of biomedical engineers in West Germany.

The health service and educational systems, together with industry and research centres, are the primary institutions involved in the development of the bio-engineering profession in West Germany. Since industry and research institutions in West Germany are similar in structure to those in other countries, for the purposes of international comparison only the health service and educational systems are described. The questions "how many bioengineers are needed?" and "how many should be trained?", were the motivation for a professional field analysis commissioned by the German Society for Biomedical Engineering. This commission found a need for about seven thousand bioengineers and biotechnicians in West Germany. It is shown, however, that there are actually very few positions open, and some measures to create more positions are discussed.

Biomedical Engineering