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Biomedical Platforms

Author : Peter Keating
Publisher : MIT Press
Page : 574 pages
File Size : 40,24 MB
Release : 2003
Category : Computers
ISBN : 9780262112765

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An examination of postwar medicine based on the notion of the biomedical platform--the theoretical and clinical meeting ground between the normal and the pathological.

Advanced Systems for Biomedical Applications

Author : Olfa Kanoun
Publisher : Springer Nature
Page : 291 pages
File Size : 31,68 MB
Release : 2021-07-19
Category : Technology & Engineering
ISBN : 3030712214

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The book highlights recent developments in the field of biomedical systems covering a wide range of technological aspects, methods, systems and instrumentation techniques for diagnosis, monitoring, treatment, and assistance. Biomedical systems are becoming increasingly important in medicine and in special areas of application such as supporting people with disabilities and under pandemic conditions. They provide a solid basis for supporting people and improving their health care. As such, the book offers a key reference guide about novel medical systems for students, engineers, designers, and technicians.

Biomedical Engineering and Information Systems: Technologies, Tools and Applications

Author : Shukla, Anupam
Publisher : IGI Global
Page : 384 pages
File Size : 20,1 MB
Release : 2010-07-31
Category : Medical
ISBN : 161692005X

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"Bridging the disciplines of engineering and medicine, this book informs researchers, clinicians, and practitioners of the latest developments in diagnostic tools, decision support systems, and intelligent devices that impact and redefine research in and delivery of medical services"--Provided by publisher.

Medicine-Based Informatics and Engineering

Author : Franco Simini
Publisher : Springer Nature
Page : 210 pages
File Size : 39,66 MB
Release : 2021-12-07
Category : Technology & Engineering
ISBN : 3030878457

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This book originates from the idea to adapt biomedical engineering and medical informatics to current clinical needs and proposes a paradigm shift in medical engineering, where the limitations of technology should no longer be the starting point of design, but rather the development of biomedical devices, software, and systems should stem from clinical needs and wishes. Gathering chapters written by authoritative researchers, working the interface between medicine and engineering, this book presents successful attempts of conceiving technology based on clinical practice. It reports on new strategies for medical diagnosis, rehabilitation, and eHealth, focusing on solutions to foster better quality of life through technology, with an emphasis on patients’ and clinical needs, and vulnerable populations. All in all, the book offers a reference guide and a source of inspiration for biomedical engineers, clinical scientists, physicians, and computer scientists. Yet, it also includes practical information for personnel using biomedical equipment, as well as timely insights that are expected to help health agencies and software firms in their decision-making processes.

Metadata-driven Software Systems in Biomedicine

Author : Prakash M. Nadkarni
Publisher : Springer Science & Business Media
Page : 411 pages
File Size : 18,50 MB
Release : 2011-05-27
Category : Medical
ISBN : 0857295101

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While the use of database technology is ubiquitous throughout IT (and health IT in particular), it is not generally appreciated that, as a database increases in scope, certain designs are far superior to others. In biomedical domains, new knowledge is being generated continually, and the databases that must support areas such as clinical care and research must also be able to evolve while requiring minimal or no logical / physical redesign. Appropriately designed metadata, and software designed to utilize it effectively, can provide significant insulation against change. Many of the larger EMR or clinical research database vendors have realized this, but their designs are proprietary and not described in the literature. Consequently, numerous misconceptions abound among individuals who have not had to work with large-scale biomedical systems, and graduates of a health or bioinformatics program may find that they need to unlearn what they were taught in database and software design classes in order to work productively with such systems. A working knowledge of such systems is also important for individuals who are not primarily software developers, such as health informaticians, medical information officers and data analysts. This book is, in a sense, intended to prepare all of the above individuals for the real world.

Biomedical Research and Integrated Biobanking: An Innovative Paradigm for Heterogeneous Data Management

Author : Massimiliano Izzo
Publisher : Springer
Page : 115 pages
File Size : 16,9 MB
Release : 2016-03-17
Category : Technology & Engineering
ISBN : 3319312413

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This doctoral thesis reports on an innovative data repository offering adaptive metadata management to maximise information sharing and comprehension in multidisciplinary and geographically distributed collaborations. It approaches metadata as a fluid, loosely structured and dynamical process rather than a fixed product, and describes the development of a novel data management platform based on a schemaless JSON data model, which represents the first fully JSON-based metadata repository designed for the biomedical sciences. Results obtained in various application scenarios (e.g. integrated biobanking, functional genomics and computational neuroscience) and corresponding performance tests are reported on in detail. Last but not least, the book offers a systematic overview of data platforms commonly used in the biomedical sciences, together with a fresh perspective on the role of and tools for data sharing and heterogeneous data integration in contemporary biomedical research.

Intelligent Medical Technologies and Biomedical Engineering: Tools and Applications

Author : Shukla, Anupam
Publisher : IGI Global
Page : 376 pages
File Size : 31,92 MB
Release : 2010-06-30
Category : Business & Economics
ISBN : 1615209786

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Intelligent Medical Technologies and Biomedical Engineering: Tools and Applications helps young researchers and developers understand the basics of the field while highlighting the various developments over the last several years. Broad in scope and comprehensive in depth, this volume serves as a base text for any project or work into the domain of medical diagnosis or other areas of medical engineering.

Biomedical Engineering

Author : National Institute of General Medical Sciences (U.S.)
Publisher :
Page : 62 pages
File Size : 39,95 MB
Release : 1969
Category : Biomedical engineering
ISBN :

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Biomedical Applications of Microfluidic Devices

Author : Michael R. Hamblin
Publisher : Academic Press
Page : 352 pages
File Size : 44,98 MB
Release : 2020-11-12
Category : Technology & Engineering
ISBN : 0128187921

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Biomedical Applications of Microfluidic Devices introduces the subject of microfluidics and covers the basic principles of design and synthesis of actual microchannels. The book then explores how the devices are coupled to signal read-outs and calibrated, including applications of microfluidics in areas such as tissue engineering, organ-on-a-chip devices, pathogen identification, and drug/gene delivery. This book covers high-impact fields (microarrays, organ-on-a-chip, pathogen detection, cancer research, drug delivery systems, gene delivery, and tissue engineering) and shows how microfluidics is playing a key role in these areas, which are big drivers in biomedical engineering research. This book addresses the fundamental concepts and fabrication methods of microfluidic systems for those who want to start working in the area or who want to learn about the latest advances being made. The subjects covered are also an asset to companies working in this field that need to understand the current state-of-the-art. The book is ideal for courses on microfluidics, biosensors, drug targeting, and BioMEMs, and as a reference for PhD students. The book covers the emerging and most promising areas of biomedical applications of microfluidic devices in a single place and offers a vision of the future. Covers basic principles and design of microfluidics devices Explores biomedical applications to areas such as tissue engineering, organ-on-a-chip, pathogen identification, and drug and gene delivery Includes chemical applications in organic and inorganic chemistry Serves as an ideal text for courses on microfluidics, biosensors, drug targeting, and BioMEMs, as well as a reference for PhD students