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A hybrid MEMS-based microfluidic system for cancer diagnosis

 
: Ortiz, P.; Keegan, N.; Spoors, J.; Hedley, J.; Harris, A.; Burdess, J.; Burnett, R.; Velten, T.; Biehl, M.; Knoll, T.; Haberer, W.; Solomon, M.; Campitelli, A.; McNeil, C.

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Biomedical applications of micro- and nanoengineering IV and complex systems
Bellingham, WA: SPIE, 2009 (Proceedings of SPIE 7270)
ISSN: 1605-7422
ISBN: 978-0-8194-7522-0
Biomedical Applications of Micro- and Nanoengineering <4, 2008, Melbourne>
Englisch
Konferenzbeitrag
Fraunhofer IBMT ()

Abstract
A microfluidic system for cancer diagnosis based around a core MEMS biosensor technology is presented in this paper. The principle of the MEMS biosensor is introduced and the functionalisation strategy for cancer marker recognition is described. In addition, the successful packaging and integration of functional MEMS biosensor devices are reported herein. This ongoing work represents one of the first hybrid systems to integrate a PCB packaged silicon MEMS device into a disposable microfluidic cartridge.

: http://publica.fraunhofer.de/dokumente/N-170174.html