3rd Kuala Lumpur International Conference on Biomedical by Jiun-Yan Wu, Hongyu Sun, Ann P. O’Rourke, Shane Huebner,

By Jiun-Yan Wu, Hongyu Sun, Ann P. O’Rourke, Shane Huebner, Peter S. Rahko, James A. Will (auth.), Fatimah Ibrahim, Noor Azuan Abu Osman, Juliana Usman, Nahrizul Adib Kadri (eds.)

The Kuala Lumpur overseas convention on Biomedical Engineering (Biomed 2006) used to be held from eleven to fourteen December 2006 on the Palace of the Golden Horses, Kuala Lumpur, Malaysia. This foreign convention was once together organised by way of the dep. of Biomedical Engineering, collage of Malaya, Malaysia; division of Biomedical Engineering, Inje collage, Korea; and Malaysian Society of scientific and organic Engineering.

The papers awarded at Biomed 2006 hide 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, rules and businesses, rehabilitation engineering, telemedicine, tissue engineering, and digital truth in medicine.

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This is an advantage for many chemical processes. Its production flexibility through parallel operation also makes it attractive for chemical engineering. The feature size of a microfluidic device is typically from several tens to several hundred micrometers. Fluid flow at such a micro scale introduces some new characteristics due to its large surface to volume ratio. There is increased influence of the surface tension, and the dominance of fluid viscous forces at the expense of inertia force. Thus all micro flows fall in the low Reynolds (Re) number laminar regime.

The biomimetic processes take place at human body temperature and do not require harsh reaction conditions, high (or low) pressure, or high temperature, which avoids major disadvantages of other surface apatiteforming techniques such as hydrothermal-electrochemical deposition, plasma spraying and ion beam assisted deposition. Furthermore, as these are low-temperature processes, they can be used to form apatite on polymer surfaces and hence provide non-bioactive polymers with osteoconductivity [27].

They applied this mixer to promote the DNA hybridization. Results show that, compared with the conventional static method, the new technique led to a 5-fold increase in the hybridization rate. The uniformity of the signal across the whole chip is also significantly improved. In kinetic studies of in vivo biological reactions, it requires the rapid mixing of crowded solutions, which should be completed faster than the reaction. However, the highly concentrated solutions of crowding agents (such as bovine serum albumin and haemoglobin) are very viscous and extremely difficult to mix.

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