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  2. Biosensor - Wikipedia

    en.wikipedia.org/wiki/Biosensor

    A biosensor can be sent directly to the location and a quick and easy test can be used. Biosensor implant for glucose monitoring in subcutaneous tissue (59x45x8 mm). Electronic components are hermetically enclosed in a Ti casing, while antenna and sensor probe are moulded into the epoxy header. [80]

  3. Biochip - Wikipedia

    en.wikipedia.org/wiki/Biochip

    3D Sarfus image of a DNA biochip. The microarray—the dense, two-dimensional grid of biosensors—is the critical component of a biochip platform. Typically, the sensors are deposited on a flat substrate, which may either be passive (e.g. silicon or glass) or active, the latter consisting of integrated electronics or micromechanical devices that perform or assist signal transduction.

  4. Bio-FET - Wikipedia

    en.wikipedia.org/wiki/Bio-FET

    Bio-FETs couple a transistor device with a bio-sensitive layer that can specifically detect bio-molecules such as nucleic acids and proteins. A Bio-FET system consists of a semiconducting field-effect transistor that acts as a transducer separated by an insulator layer (e.g. SiO 2) from the biological recognition element (e.g. receptors or probe molecules) which are selective to the target ...

  5. Biotransducer - Wikipedia

    en.wikipedia.org/wiki/Biotransducer

    Biosensors based on type of biotransducers. A biotransducer is the recognition-transduction component of a biosensor system. It consists of two intimately coupled parts; a bio-recognition layer and a physicochemical transducer, which acting together converts a biochemical signal to an electronic or optical signal.

  6. Bio-MEMS - Wikipedia

    en.wikipedia.org/wiki/Bio-MEMS

    In amperometric biosensors, an enzyme-catalyzed redox reaction causes a redox electron current that is measured by a working electrode. [11] Amperometric biosensors have been used in bio-MEMS for detection of glucose, galactose, lactose, urea, and cholesterol, as well as for applications in gas detection and DNA hybridization. [11]

  7. Bioelectronics - Wikipedia

    en.wikipedia.org/wiki/Bioelectronics

    Electronics technology has been applied to biology and medicine since the pacemaker was invented and with the medical imaging industry. In 2009, a survey of publications using the term in title or abstract suggested that the center of activity was in Europe (43 percent), followed by Asia (23 percent) and the United States (20 percent).

  8. Magnotech - Wikipedia

    en.wikipedia.org/wiki/Magnotech

    Magnotech is a type of biosensor using magnetic nanoparticles to measure target molecules in blood and saliva in a matter of minutes. The technology is based on magnetic nanoparticles that are actuated by magnetic fields. [1] A cartridge is inserted into a hand-held analyzer.

  9. Bioinstrumentation - Wikipedia

    en.wikipedia.org/wiki/Bioinstrumentation

    Since the main focus of the field is to make the medical world faster and more efficient, major improvements in these aspects, as well as in technology and how scientists understand the human body, the field will continue to grow. The main focuses for the future of the field include cellular scanning devices and robots. [12]

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