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MedTek Newsletter, 2005 (in Swedish)
MedTek Newsletter, 2004 (in Swedish)
Published papers

Biosensors based on electrically conducting polymers
1
Palmqvist, E.; Kriz, C.B.; Khayyami, M.; Danielsson, B.; Larsson, P.-O.; Mosbach, K. & Kriz, D. Development of a simple detector for microbial metabolism, based on a polypyrrole DC resistometric device. Biosensors & Bioelectronics 9 (1994) 551-556.
2
Palmqvist, E.; Kriz, C.B.; Khayyami, M.; Svanberg, K. & Kriz, D. DC resistometric urea sensitive device utilising a conducting polymer film for the gas-phase detection of ammonia. Biosensors & Bioelectronics 10 (1995) 283-287.
3
Kriz, C.B.; Palmqvist, E. & Kriz, D. DC resistometric stability studies on a conducting polymer (polypyrrole) film in an aqueous solution. Electrochimica Acta 40 (1995) 1063-1065.
4
Khayyami, M.; Johansson, G.; Kriz, D.; Bin, X.; Larsson, P.-O. & Danielsson, B. Flow-injection determination of trace hydrogen peroxide or glucose utilizing an amperometric biosensor based on glucose oxidase bound to a reticulated vitreous carbon electrode. Talanta 43 (1996) 957-962.
5
Johnson, K. & Kriz, D. Development of a three electrode cell containing a polypyrrole coated auxiliary electrode. Instrumentation Science & Technology 25 (1997) 29.
Biosensors based on SIRE technology
6
Kriz, D. & Johansson, A. A preliminary study of a biosensor based on flow injection of the recognition element. Biosensors & Bioelectronics 11 (1996) 1259-1265.
7
Kriz, D; Berggren, C; Johansson, A. & Ansell, R.J. SIRE-Technology Part 1: Amperometric biosensor based on flow injection of the recognition element and differential measurements. Instrumentation Science & Technology 26 (1998) 45.
8
Johnson, K. & Kriz, D. SIRE-Technology part 2: Glucose tolerance monitoring, after a peroral intake, employing small volume whole blood measurements with an amperometric biosensor. Instrumentation Science & Technology 26 (1998) 59.
9
Kriz, D.; Berggren, C. & Palmqvist, E. SIRE-Technology Part 3: Glucose monitoring during fermentation of a lignocellulosic hydrolysate by Saccharomyces cerevisiae employing a differential amperometric biosensor. Instrumentation Science & Technology 26 (1998) 69.
10
Kriz, K., Anderlund, M. & Kriz, D. Real-time detection of L-ascorbic acid and hydrogen peroxide in crude food samples employing a reversed sequential differential measuring technique of the SIRE-technology based biosensor. Biosensors & Bioelectronics 16 (2001) 363-369.
11
Kriz, K. & Kriz, D. SIRE-Technology based Biosensors, will they do the job? (Review). G.I.T. Laboratory Journal 5 (2001) 2-4.
12
Kriz, K., Kraft, L., Krook, M. & Kriz, D. Amperometric Determination of L-Lactate based on Entrapment of Lactate Oxidase on a Transducer Surface with a Semi-Permeable Membrane using a SIRE Technology based Biosensor. Application: Tomato Paste and Baby Food. Journal of Agricultural and Food Chemistry 50 (2002) 3419-3424.
Biosensors and Bioanalysis based on magnetism
13
Kriz, C.B.; Rådevik, K. & Kriz, D. Magnetic permeability measurements in bioanalysis and biosensors. Anal. Chem. 68 (1996) 1966-1970.
14
Kriz, K.; Gehrke, J. & Kriz, D. Advancements Toward Magneto Immunoassays. Biosensors & Bioelectronics, 13 (1998) 817-823.
15
Larsson, K, Kriz, K. & Kriz, D. Magnetic Transducers in Biosensors and Bioassays (Review). Analusis 27 (1999) 78-83.
16
Abrahamsson, D., Kriz, K., Lu, M., Kriz, D. A preliminary study on DNA detection based on relative magnetic permeability measurements and histone H1 conjugated superparamagnetic nanoparticles as magnetic tracers. Biosensors & Bioelectronics, 19 (2004) 1549-1557.
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