Title :
Miniaturized and low cost innovative detection systems for medical and environmental applications
Author :
Moreno-Hagelsieb, Luis ; Tang, X. ; Bulteel, O. ; Van Overstraeten-Schlögel, N. ; André, N. ; Dupuis, P. ; Raskin, J.-P. ; Francis, L. ; Flandre, D. ; Fonteyne, P.A. ; Gala, J.-L. ; Nizet, Y.
Author_Institution :
SENSOI Spin-off Project, Univ. Catholique de Louvain Maxwell, Louvain-la-Neuve, Belgium
Abstract :
Innovative, simple, miniaturized, low-cost and low-power consumption devices are required in future medical applications. In our laboratory we have developed different devices in this field. Firstly, oxide aluminum-coated interdigitated (ID) Al capacitors have been successfully tested for DNA hybridization test (down to 30 pM target concentrations), as well as for specific bacteria recognition (S. Aureus, down to 100 CFU on a sensing area of 200 × 200 μm2) with an appropriate anti-monoclonal antibody (MoAb) and finally for humidity detection with application in a breath rate monitoring system, an important element for preventive medical studies, which is light, non-invasive, comfortable to wear for the patient. Secondly a complete microsystem enabling the measurement of biomolecules concentration in assay tubes has been developed based on ultraviolet (UV) light absorption with miniaturized LEDs and SOI high-efficiency photodiodes. Our technologies combine high-performance CMOS integrated circuits, sensors and MEMS; operation in harsh conditions (micro power, high-temperature, remote RF link, etc.); very low power consumption; and broad applications in biomedical and environmental sectors. This opens the door to many new emerging applications into medical devices.
Keywords :
CMOS integrated circuits; DNA; aluminium; bioMEMS; biomedical electronics; biosensors; capacitors; cellular biophysics; humidity sensors; light emitting diodes; low-power electronics; microorganisms; molecular biophysics; patient monitoring; photodiodes; pneumodynamics; DNA hybridization test; LEDs; MEMS; S. Aureus; SOI high-efficiency photodiodes; antimonoclonal antibody; assay tubes; bacteria recognition; biomolecule concentration; breath rate monitoring system; environmental application; high-performance CMOS integrated circuits; humidity detection; innovative detection systems; low-power consumption devices; medical application; microsystem; oxide aluminum-coated interdigitated capacitors; sensors; ultraviolet light absorption; Biomedical measurements; DNA; Electron tubes; Microorganisms; Monitoring; Sensors; Silicon;
Conference_Titel :
Circuits and Systems for Medical and Environmental Applications Workshop (CASME), 2010 2nd
Conference_Location :
Merida
Print_ISBN :
978-1-4244-9994-6
DOI :
10.1109/CASME.2010.5706682