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Microfluidics for cell therapy and manufacturing in oncology and regenerative medicine.
Duncan JL, Arroyo JP, Davalos RV.
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Dielectrophoresis at the nanoscale
Electrophoresis, 2011AbstractDielectrophoresis has become a powerful tool for manipulation of various materials, such as metal and semiconducting particles, DNA molecules, nanowires and graphene. This short review is intended to provide the reader with an overview of the recent advances of application of dielectrophoresis at the nanoscale.
Anton Kuzyk
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Dielectrophoresis of Nanoparticles
Fluids Engineering, 2004A numerical scheme based on the distributed Lagrange multiplier method (DLM) is used to study the motion of nano sized particles of dielectric suspensions subjected to uniform and nonuniform electric fields. Particles are subjected to both electrostatic and hydrodynamic forces, as well as Brownian motion.
Arun T J, Kadaksham +2 more
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Micromachines for Dielectrophoresis [PDF]
An outstanding compilation that reflects the state-of-the art on Dielectrophoresis (DEP) in 2020. Contributions include: - A novel mathematical framework to analyze particle dynamics inside a circular arc microchannel using computational modeling.
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Dielectrophoresis of chloroplasts
Biochimica et Biophysica Acta (BBA) - Bioenergetics, 1971Abstract Dielectrophoresis is the migration of neutral particles in a nonuniform electric field (a.c. or d.c.) toward the region of highest field intensity. Dielectrophoresis should be distinguished from electrophoresis which is the migration of charged particles in electric fields.
I P, Ting +3 more
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Dielectrophoresis of macromolecules
Biopolymers, 1973AbstractDilute solutions of rigid helical macromolecules with permanent dipole moments have been studied with dielectrophoresis. The polymers used were poly‐γ‐benzyl‐L‐glutmate and poly‐n‐butyl isocyanate, both fractions of average molecular weight 120,000.
M, Eisenstadt, I H, Scheinberg
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DNA dielectrophoresis: Theory and applications a review
Dielectrophoresis is the migration of an electrically polarizable particle in an inhomogeneous electric field. This migration can be exploited for several applications with (bio)molecules or cells. Dielectrophoresis is a noninvasive technique; therefore,
Martina Viefhues
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Dielectrophoresis of Proteins in Solution
The Journal of Physical Chemistry B, 2020A nonionic particle placed in the gradient of an electric field experiences the dielectrophoretic force which scales linearly with the gradient of the electric field squared. The proportionality constant is the dielectrophoretic susceptibility, that is, a linear transport coefficient. For proteins in solution, it is mostly affected by the following two
Matthias Heyden, Dmitry V. Matyushov
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Dielectrophoresis for the manipulation of nanobioparticles
ELECTROPHORESIS, 2007AbstractDielectrophoresis (DEP) is a nondestructive electrokinetic mechanism with great potential for the manipulation of bioparticles. DEP is the movement of particles induced by polarization effects in nonuniform electric fields. Since the 1960s, this technique has been successfully used for the manipulation of microbioparticles, such as ...
Blanca H, Lapizco-Encinas +1 more
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Applications of dielectrophoresis in biotechnology
Trends in Biotechnology, 1997Recent progress in the development of microelectrode structures has led to new techniques for the dielectrophoretic characterization and sorting of cells, microorganisms and other bioparticles using nonuniform AC electric fields. These methods utilize differences in the dielectric polarizabilities of cells for their effectiveness, and factors ...
R, Pethig, G H, Markx
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