By F. Ibrahim, N.A. Abu Osman, J. Usman, N.A. Kadri
The Kuala Lumpur overseas convention on Biomedical Engineering (BioMed 2006), was once held from eleven to fourteen December 2006 on the Palace of the Golden Horses, Kuala Lumpur, Malaysia. This overseas convention was once together organised through the dep. of Biomedical Engineering, collage of Malaya, Malaysia; division of Biomedical Engineering, Inje college, Korea; and Malaysian Society of scientific and organic Engineering.The papers provided at BioMed 2006 disguise the next components: synthetic Intelligence, organic results of non-ionising electromagnetic fields, Biomaterials, Biomechanics, Biomedical Sensors, Biomedical sign research, Biotechnology, medical Engineering, Human functionality engineering, Imaging, clinical Informatics, clinical tools and units, Physiological Modelling, simulation, and keep an eye on, Prostheses and synthetic organs, laws and organizations, Rehabilitation Engineering, Telemedicine, Tissue Engineering, and digital fact in medication. The convention software integrated invited plenary classes by way of Joachim Nagel, the President of IUPESM; Makoto Kikuchi, the President of IFMBE; John G. Webster from the collage of Wisconsin-Madison, usa; Metin Akay from Arizona country collage, usa; Marc Madou from collage of California, usa; and Yilin Cao from Shanghai’s ninth People’s clinic, China.The convention additionally featured pre-conference educational classes. There are 4 periods altogether, and the subjects are Bioinstrumentation, through John G. Webster; MEMS by way of Marc Madou; Biomedical Informatics and Neural Engineering through Metin Akay; and Biomedical photograph research through Bart ter Haar Romeny. thank you are as a result of the participants of the organizing committee for his or her help and suggestions in making sure a winning BioMed 2006. specific thank you visit Healthtronics, with out whose monetary aid the convention couldn't were effectively equipped.
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Extra resources for 3rd Kuala Lumpur International Conference on Biomedical Engineering 2006: Biomed 2006, 11-14 December 2006, Kuala Lumpur, Malaysia (IFMBE Proceedings)
Introduced a bubble-induced acoustic mixing technique, and applied it for DNA hybridization [8, 21]. In their design, a number of air pockets are laid on the cover slip of the hybridization chamber (see Fig. 1(b)) to trap air bubbles in the reaction solution. A PZT disk is attached to the external surface of the cover slip. It is applied to generate a sound field and cause the vibrations of the bubbles. This further leads to a recirculation flow around the air bubble, which can efficiently promote the mixing.
9. 10. 11. 12. 13. 14. 15. 16. 17. 18. 19. 20. 21. Stone HA, Stroock AD, Ajdari A (2004) Engineering flows in small devices: microfluidics toward a lab-on-a-chip. Annu. Rev. Fluid Mech. 36:381-411 Beebe DJ, Mensing GA, Walker GM (2002) Physics and applications of microfluidics in biology. Annu. Rev. Biomed. Eng. 4:261-286 Verpoorte E, DE Rooij NF (2003) Microfluidics meets MEMS. Proceedings of the IEEE, 91(6):930-953 Ng JMK, Gitlin I, Stroock AD et al. (2002) Components for integrated poly(dimethylsiloxane) microfluidic systems.
They are used to apply an electrical potential to drive an electro-osmotic flow (EOF). Through changing the voltage applied on the electrodes, perturbation of the EOF flow can be achieved, lead- ing to efficient mixing. They further integrated this mixer into a microfluidic system for DNA amplification. The cell lysis is first performed in a micro cell lysis reactor. Then, the extracted DNA samples, primers and reagents are driven electro-osmotically into the mixer, where they are well mixed. Next, the homogeneous mixture is driven into a micro-PCR chamber for DNA amplification.