DocumentCode :
2360004
Title :
Development of fabrication and detection system for centrifugal force and thermal management biochip
Author :
Lee, Ming-Yih ; Wang, Chen-Ya ; Lin, Hung-Chia ; Chiang, Hung-Wei ; Su, Liang- Shiuan ; Chang, Tsung-Wei
Author_Institution :
Graduate Inst. of Med. Mechatronics, Chang Gung Univ., Tao-Yuan, Taiwan
fYear :
2005
fDate :
10-12 July 2005
Firstpage :
903
Lastpage :
908
Abstract :
The development of micro-electro-mechanical systems (MEMS) advances the success of microfabricated devices, and microfabricated devices offer many specific platforms that can integrate a laboratory on a chip and manage micro biochemical reaction analysis. Nevertheless, most microfabricated devices, especially in biochip design, depend on semi-conductor or LIGA process so that the configuration of devices is complex and money-consumed. Furthermore, miniaturization in nano-scale isn\´t always significant in bio-medical reactions. Thus, the aim of our research is to develop a fabrication and detection system of centrifugal-force and thermal management biochip, which improves the complex pumps and valves designed by semi-conductor application in lab-on-a-chip, and it saves time and money in the comparison of traditional lab technology. Our system uses the soft-ware-SolidWorks and computer numerical control (CNC) machine to design microfluidic patterns, the heat pressure machine with feedback control of temperature sensor to design the hermetically sealed biochip, and the centrifugal machine with server frequency conversion motor to lead sample mobility by centrifugal force instead of pumps and valves. The hardware of this system includes three parts: centrifugal machine, heat pressure machine, and microfluidic fabrication; the application of the biochip is to detect clinical and medicine bio-reactions. Our "fabrication and detection system for centrifugal-force and thermal management biochip" developed in this study is a on-table facility and can use in several areas of medical and clinical examinations, it can also combine with polymerase chain reaction (PCR) by adding temperature controlling procedure in the future.
Keywords :
computerised numerical control; force control; microfluidics; micromechanical devices; production engineering computing; thermal variables control; CNC machines; MEMS; SolidWorks software; centrifugal force management biochip; centrifugal machine; clinical bioreactions; computer numerical control machines; detection system; fabrication system; feedback control; heat pressure machine; hermetically sealed biochip; lab-on-a-chip; medicine bioreactions; micro-electro-mechanical systems; microfluidic fabrication; microfluidic pattern design; on-table facility; server frequency conversion motor; temperature sensor; thermal management biochip; Computer numerical control; Fabrication; Metalworking machines; Microelectromechanical systems; Microfluidics; Micromechanical devices; Pumps; Thermal force; Thermal management; Valves;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Mechatronics, 2005. ICM '05. IEEE International Conference on
Print_ISBN :
0-7803-8998-0
Type :
conf
DOI :
10.1109/ICMECH.2005.1529382
Filename :
1529382
Link To Document :
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