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By Paul R. Mathewson and John W. Finley (Eds.)

content material: Catalysis and long-range electron move by way of quinoproteins / Victor L. Davidson --
Microbiosensors for nutrients research / Isao Karube and Masayasu Suzuki --
Biosensors for meals research / A.A. Suleiman and G.G. Guilbault --
Metalloporphyrin-coated electrodes for detection of 2,4-D / Namal Priyantha and Marianne Tambalo --
Intact chemoreceptor-based biosensors : antennular receptrodes / R. Michael Buch --
Immunoelectrodes for the detection of micro organism / Judith Rishpon, Yigal Gezundhajt, Lior Soussan, Ilana Rosen-Margalit, and Eran Hadas --
Drug detection utilizing the circulate immunosensor / Frances S. Ligler, Anne W. Kusterbeck, Robert A. Ogert, and Gregory A. Wemhoff --
A conductive polymer-based immunosensor for the research of pesticide residues / Robert G. Sandberg, Lisa J. Van Houten, Jerome L. Schwartz, Robert P. Bigliano, Stephen M. Dallas, John C. Silvia, Michael A. Cabelli, and V. Narayanswamy --
software of capacitive affinity biosensors : HIV antibody and glucose detection / Herbert S. Bresler, Michael J. Lenkevich, James F. Murdock, Jr., Arnold L. Newman, and Richard O. Roblin --
Characterization of fluorescent dyes for optical immunosensors in keeping with fluorescence power move / Ai-Ping Wei, James N. Herron, and Douglas A. Christensen --
Concanavalin A and polysaccharide on gold surfaces : research utilizing floor plasmon resonance innovations / R.F. DeBono, U.J. Krull, and Gh. Rounaghi --
Noninvasive selection of moisture and oil content material of wheat-flour cookies : near-infrared spectroscopy within the wavelength variety 700-1100 nm / R.M. Ozanich, Jr., M.L. Schrattenholzer, and J.B. Callis --
Fiber-optic biosensors in keeping with overall internal-reflection fluorescence / K.R. Rogers, N.A. Anis, J.J. Valdes, and M.E. Eldefrawi --
wishes for biosensors in space-biology learn / Sjoerd L. Bonting --
climbing in learn and improvement / Bego Gerber.

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R e p r o d u c e d w i t h p e r m i s s i o n f r o m r e f . 1 4 . ; ACS Symposium Series; American Chemical Society: Washington, DC, 1992. 24 BIOSENSOR DESIGN AND APPLICATION IMP, because the degradations of H x R and H x are rate-determining steps in this pathway. Therefore, K I value presented by the following equation, was used as an indicator of fish freshness (24). KI=100x([HxR]+[Hx])/([IMP]+[HxR]+[Hx]) By the integration of three microbiosensors for IMP, inosine and hypoxanthine in one chip, fish freshness might be able to be determined with the integrated micro enzyme sensor.

2. ch002 approximately 4-5 minutes after injection of A T P . The initial rate of the differential gate output voltage change after injection of A T P was plotted against the logarithm of A T P concentration. Fig. 11 shows a calibration curve of the A T P sensor system. 0 m M A T P . Slight responses were obtained when glucose, urea, and creatinine were applied to the system. The response of the system to A T P was retained for 18 days. A sensor for the determination of inosine was also prepared by a combination of the enzyme system (shown below) and an amorphous silicon I S F E T (12).

13 D e g r a d a t i o n p a t h w a y o f ATP i n f i s h m u s c l e — 15 50 100 150 HYPOXANTHINE ( pM ) F i g . 1M p o t a s s i u m p h o s p h a t e buffer. ( R e p r o d u c e d w i t h p e r m i s s i o n f r o m r e f . 1 4 . ; ACS Symposium Series; American Chemical Society: Washington, DC, 1992. 24 BIOSENSOR DESIGN AND APPLICATION IMP, because the degradations of H x R and H x are rate-determining steps in this pathway. Therefore, K I value presented by the following equation, was used as an indicator of fish freshness (24).

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