Microfluidics for Biotechnology, Second Edition by Jean Berthier

By Jean Berthier

The appliance of microfluidics to biotechnology is a thrilling new region that has already began to revolutionize how researchers learn and manage macromolecules like DNA, proteins and cells in vitro and inside dwelling organisms. Now in a newly revised and improved moment variation, the Artech residence bestseller, "Microfluidics for Biotechnology" brings pros and scholars to the leading edge of this burgeoning box. that includes quite a few updates and together with 3 solely new chapters, this booklet offers an in depth examine the mechanical habit of the different sorts of micro/nano debris and macromolecules which are utilized in biotechnology. Engineers and laboratory researchers concerned with the belief and layout of bio-tech microdevices, in addition to graduate and post-graduate scholars in similar classes.

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N. Chung, “An Experimental Study of the Size Effect on Adiabatic GasLiquid Two-Phase Flow Patterns and Void Fraction in Microchannels,” Physics of Fluids, Vol. 19, 2007, p. 033301. , and K. Suga, “A Numerical Study on the Breakup Process of Laminar Jets into a Gas,” Physics of Fluids, Vol. 18, 2006, p. 052101. [13] Bird, R. , R. C. Armstrong, and O. Hassager, Dynamics of Polymeric Liquids: Volume 1, Fluid Mechanics, New York: John Wiley & Sons, 1987. [14] Jackman R. , D. C. Duffy, E. Ostuni, N.

Role of the Elasticity Number in the Entry Flow of Dilute Polymer Solutions in Micro-Fabricated Contraction Geometries,” Journal of Non-Newtonian Fluid Mechanics, Vol. 143, No. 2-3, 2007, pp. 170–191. , “On the Slip Process in Electrokinetics,” Colloids and Surfaces A: Physicochemical and Engineering Aspects, Vol. 92, No. 1-2, 1994, pp. 41– 49. 1 On the Importance of Microfluidics in Biotechnology Biotechnology is closely linked to microfluidics. Biological targets are nearly always transported by a buffer fluid or carrier fluid, in vitro and in vivo.

Multidimensional Analysis: Algebras and Systems for Science and Engineering, New York: Springer-Verlag, 1995. , “On the Validity of the Continuum Assumption in Nanofluidics,” Summer School, CISM Udine, Italy, September 1–5, 2008. , A. Q. Shen, and R. Sureshkumar, “Dynamics of Viscoelastic Fluid Filaments in Microfluidic Devices,” Physics of Fluids, Vol. 19, 2007, p. 073103. , “Nonlinear Dynamics and Breakup of Free-Surface Flows,” Review of Modern Physics, Vol. 69, 1997, pp. 865–929. [5] Spiegelberg, S.

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