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The perspective of biomedical electronics
2010 IEEE Sensors, 2010The key factors driving both research and market of biomedical electronics are aging populations, rising healthcare costs, the need for access to medical diagnosis and treatment in emerging and remote regions and in homes, and the fast development of biotechnologies.
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Biomedical Application of an Electronic Nose
Critical Reviews in Biomedical Engineering, 2000The analysis of volatiles secreted outside the human body to get information on the health status of the individuals has been proposed several times in the past. This kind of analysis is complex both from the point of view of sample collection and data interpretation when, for instance, gas chromatography is utilized.
Mantini, Alessandro +5 more
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Hydrogel sensors for biomedical electronics
Chemical Engineering JournalTing Zhang, Botao Liu, Fuqin Sun
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Proceedings of the IEEE, 2000
Lusted's brief paper, "Biomedical electronics: 2012 A.D." [1961], remains a shrewd prediction. Lusted focuses on three aspects of organ replacement and then on genetics. The physiological control systems for human organs have proved to be considerably more complex than the simple "feedback loop" of 1961. In his prediction, Lusted quite reasonably names
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Lusted's brief paper, "Biomedical electronics: 2012 A.D." [1961], remains a shrewd prediction. Lusted focuses on three aspects of organ replacement and then on genetics. The physiological control systems for human organs have proved to be considerably more complex than the simple "feedback loop" of 1961. In his prediction, Lusted quite reasonably names
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2009 IEEE Custom Integrated Circuits Conference, 2009
The integration of CMOS circuits with sensors and MEMS technologies is changing the paradigm leading to systems on chips. These systems support a very diverse range of applications in communications, harsh environment sensing, and imaging. The applications of circuits for backend stimulation of biological tissue, and intracortical sensing enable ...
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The integration of CMOS circuits with sensors and MEMS technologies is changing the paradigm leading to systems on chips. These systems support a very diverse range of applications in communications, harsh environment sensing, and imaging. The applications of circuits for backend stimulation of biological tissue, and intracortical sensing enable ...
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An electronic delay circuit for biomedical simulations
Medical & Biological Engineering, 1971In many control problems, e.g. in biology, time delays of the order of seconds or more play an important role. The present device is intended for simulations of such problems. Its accuracy (0·1 per cent) is of the same magnitude as that for most analogue computer components. It has been used in preliminary experiments (Fig.
H G, Karlsson +2 more
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Ultralow-Power Electronics for Biomedical Applications
Annual Review of Biomedical Engineering, 2008The electronics of a general biomedical device consist of energy delivery, analog-to-digital conversion, signal processing, and communication subsystems. Each of these blocks must be designed for minimum energy consumption. Specific design techniques, such as aggressive voltage scaling, dynamic power-performance management, and energy-efficient ...
Anantha P, Chandrakasan +2 more
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Biomedical Electronics: Potentialities and Problems
Science, 1962The present annual expenditure in the biomedical sciences, now less than 2 percent of the funds appropriated for defense, must be significantly increased if the great gain that can result from the adequate application of electronic technology in biomedical science is to be realized.
Robert S. Ledley, Lee B. Lusted
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Developments in electronic publishing in the biomedical sciences
Program, 2003This paper reports on developments in biomedical electronic publishing since the mid‐1990s. These cover the HighWire, PubMed Central, BioOne, the Public Library of Science, E‐BioSci and BioMed Central services. The issues raised by these developments are outlined and include the need to attract good quality papers, the ownership of copyright, how ...
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Carbon nanotubes: An effective platform for biomedical electronics
Biosensors and Bioelectronics, 2020Cylindrical fullerenes (or carbon nanotubes (CNTs)) have been extensively investigated as potential sensor platforms due to effective and practical manipulation of their physical and chemical properties by functionalization/doping with chemical groups suitable for novel nanocarrier systems. CNTs play a significant role in biomedical applications due to
Megha A, Deshmukh +2 more
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