DocumentCode
2660414
Title
Microfluidic chip with world-to-chip interface for temperature detection in micro-nanoscale
Author
Inomata, Naoki ; Maruyama, Hisataka ; Kato, Takahiro ; Arai, Fumihito
Author_Institution
Dept. of Bioeng. & Robot., Tohoku Univ., Sendai, Japan
fYear
2009
fDate
9-11 Nov. 2009
Firstpage
456
Lastpage
461
Abstract
In this paper, we proposed a microfluidic chip having a world-to-chip interface for multi-scale environmental measurement on a chip. There are several techniques for environmental measurement of the microscale objects using cantilever, microsensor and fluorescence method etc. Each technique has useful advantages against other methods. To employ these methods on a microfluidic chip simultaneously, we aim to develop a world-to-chip interface to insert a cantilever into the microfluidic chip and position it for sensing in a chip. We fabricated the microfluidic chip having this interface to insert the cantilever. This chip was designed to be used for inverted microscope. The solution does not leak from the interface by employing simultaneous flow control at both inlet and drain port. By using this interface, we demonstrated insertion and positioning of the cantilever into the microfluidic chip, and confirmed two-layer laminar flow control and detection of the local temperature change in the microchannel.
Keywords
cantilevers; flow control; fluidic devices; laminar flow; microfluidics; cantilever; inverted microscope; micro-nanoscale; microchannel; microfluidic chip; multi-scale environmental measurement; temperature detection; two-layer laminar flow control; world-to-chip interface; Fluorescence; Microfluidics; Microsensors; Performance analysis; Pollution measurement; Position measurement; Probes; Semiconductor device measurement; Spatial resolution; Temperature;
fLanguage
English
Publisher
ieee
Conference_Titel
Micro-NanoMechatronics and Human Science, 2009. MHS 2009. International Symposium on
Conference_Location
Nagoya
Print_ISBN
978-1-4244-5094-7
Electronic_ISBN
978-1-4244-5095-4
Type
conf
DOI
10.1109/MHS.2009.5351965
Filename
5351965
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