Biomedical Engineering Reference
In-Depth Information
Cosnier S, S Szuneritis, RA Marks, A Novoa, L Puech, E Perez, and I Rico-lattes, A rapid and easy procedure of
biosensor fabrication by micro-encapsulation of enzyme in hydrophobic synthetic latex films. Application to
the amperometric determination of glucose, Electrochemistry Communications , 2 (12), 851-855 (2000b).
Cox WR, DJ Hayes, T Chen, and DW Ussery, Fabrication of micro-optics by microjet printing, SPIE
Proceedings , 2383 , 110-115 (1995).
Cox WR, T Chen, D Ussery, DJ Hayes, JA Tatum, and DL Mcfarland, Microjet lenslet-tipped fibers, Optical
Communication , 123 (4-6), 492-496 (1996).
Cui HF, JS Ye, WD Zhang, CM Li, JHT Luong, and FS Sheu, Analytica Chimica Acta , 594 , 175-183 (2007).
Curri ML, A Agostiano, G Leo, A Mallard, P Cosma, and MD Monica, Materials Science and Engineering , 22 ,
449 (2002).
Deng C, J Chen, X Chen, C Xiao, L Nie, and S Yao, Direct electrochemistry of glucose oxidase and biosensing
for glucose-based or boron-doped carbon nanotubes modified electrode, Biosensors & Bioelectronics , 23 ,
1272-1277 (2008).
Drzal LT and H Fukushima, Expanded graphite and products produced therefrom, U.S. patent application,
20040127621.
Fan ZH and DJ Harrison, Permeability of glucose and other neutral species through recast perfluorosulfonated
nanomer films, Analytical Chemistry , 64 (11), 1304 (1992).
Fuh MRS, LW Burgess, T Hirschfeld, GD Christian, and F Wang, Single fibre optic fluorescence pH probe,
Analyst , 112 (8), 1159-1163 (1987).
Gehrich JL, DW Lubbers, N Opitz, DR Hansmann, WW Miller, JK Tussa, and M Yafuso, Optical fluorescence
and its application to an intravascular blood-gas monitoring system, IEEE Transactions of Biomedical
Engineering , 33 , 117-132 (1986).
Gerard M, A Chaubey, and BD Malhotra, Biosensors & Bioelecronics , 17 , 345-359 (2002).
Gilmartin MAT, JP Hart, and DT Patton, Analyst , 120 , 1973-1981 (1995).
Gu Y, HY Yu, AS Kim, CS Ah, JH Yang, IB Baek, CG Ahn, SJ Lee, and JH Yun, Biosensor manufacturing
method thereof, and biosensing applications including the same, WO/2008/38906, publication date 03.04.08;
http://wipo/worldintellectualpropertyorganization.int/pctdb/en/wo.jsp?WO ¼ 2008038906 downloaded March
26, 2009.
Guo TY, YQ Xia, GJ Hao, MD Song, and BH Zhang, Adsorptive separation of hemoglobin by molecularly
imprinted chitosan beads, Biomaterials , 25 , 5905-5912 (2004).
Halliwell C, E Simon, C Toh, P Bartlett, and A Cass, Immobilization of lactate dehydrogenase on poly(aniline)-
poly(acrylate) and poly(aniline)-poly(vinyl sulphonate) films for a lactate biosensor, Analytica Chmica Acta ,
453 , 191-200 (2002).
Hart JP, A Crew, E Crouch, KC Honeychurch, and RM Pemberton, Analytical Letters , 37 , 789-830 (2004).
Hart JP, A crew, E Crouch, KC Honeychurch, and RM Pemberton, In S Alegret, A Merkoci, (Eds.),
Comprehensive Analytical Chemistry , vol. 49 , Elsevier B.V., Amsterdam, 2007, pp 497-557, Chapter 23.
Haupt K, Imprinted polymers—Tailor made mimics of antibodies and receptors, Chemical Communications ,
171-178 (2003).
Hayden O, R Bindeus, C Haderspock, KJ Mann, B Wirl, and FL Dickert, Sensors & Actuators B , 91 , 316-319
(2003).
Heller MJ, DNA microarray technology: Devices, systems, and applications, Annual Reviews of Biomedical
Engineering , 4 , 129-153 (2002).
Henry OYF, DC Cullen, and SA Piletsky, Analytical and Bioanalytical Chemistry , 382 (4), 447-456 (2005).
Henry OYF, SA Piletsky, and DC Cullen, Fabrication of molecularly imprinted polymer microarray on a chip by
mid-infrared laser pulse initiated polymerization, Biosensors and Bioelectronics , 23 , 1769-1775 (2008).
Huang YX, WJ Zhang, H Xiao, and GX Li, Biosensors & Bioelectronics , 21 , 817 (2005).
Introduction to biosensor technology, http://www.cranfield.ac.uk/health/shortcourses/page26524.jsp downloaded
April 22, 2009.
Janata J, Immunoelectrode, Journal of the American Chemical Society , 97 , 2914-2916 (1975).
Jena BK and CR Raj, European Journal of Chemistry , 12 , 2702-2708 (2006).
Search WWH ::




Custom Search