نتایج جستجو برای: dielectrophoresis

تعداد نتایج: 1101  

Journal: :Biomedical microdevices 2008
Y T Zhang F Bottausci M P Rao E R Parker I Mezic N C Macdonald

To date, materials selection in microfluidics has been restricted to conventional micromechanical materials systems such as silicon, glass, and various polymers. Metallic materials offer a number of potential advantages for microfluidic applications, including high fracture toughness, thermal stability, and solvent resistance. However, their exploitation in such applications has been limited. I...

2010
Justin K. Valley Paul Swinton W. John Boscardin Tom F. Lue Paolo F. Rinaudo Ming C. Wu Maurice M. Garcia

Selection of optimal quality embryos for in vitro fertilization (IVF) transfer is critical to successful live birth outcomes. Currently, embryos are chosen based on subjective assessment of morphologic developmental maturity. A non-invasive means to quantitatively measure an embryo's developmental maturity would reduce the variability introduced by the current standard. We present a method that...

Journal: :Lab on a chip 2010
I-Fang Cheng Satyajyoti Senapati Xinguang Cheng Sagnik Basuray Hsien-Chang Chang Hsueh-Chia Chang

Molecular dielectrophoresis (DEP) is employed to rapidly (<ms) trap ssDNA molecules in a flowing solution to a cusp-shaped nanocolloid assembly on a chip with a locally amplified AC electric field gradient. By tuning AC field frequency and DNA DEP mobility relative to its electrophoretic mobility due to electrostatic repulsion from like-charged nanocolloids, mismatch-specific binding of DNA mol...

Journal: :Nanotechnology 2014
Ining A Jou Dmitriy V Melnikov Anna Nadtochiy Maria E Gracheva

We study the applicability of an electrically tunable nanoporous semiconductor membrane for the separation of nanoparticles by charge. We show that this type of membrane can overcome one of the major shortcomings of nanoporous membrane applications for particle separation: the compromise between membrane selectivity and permeability. The computational model that we have developed describes the ...

Journal: :Electrophoresis 2013
Ming Li Shunbo Li Weihua Li Weijia Wen Gursel Alici

This paper presents a novel dielectrophoresis-based microfluidic device incorporating round hurdles within an S-shaped microchannel for continuous manipulation and separation of microparticles. Local nonuniform electric fields are generated due to the combined effects of obstacle and curvature, which in turn induce negative dielectrophoresis forces exerting on the particle that transport throug...

2013
Chi-Han Chiou Jia-Cheng Pan Liang-Ju Chien Yu-Ying Lin Jr-Lung Lin

This study demonstrated the feasibility of utilizing electrokinesis in an electrodeless dielectrophoresis chip to separate and concentrate microparticles such as biosamples. Numerical simulations and experimental observations were facilitated to investigate the phenomena of electrokinetics, i.e., electroosmosis, dielectrophoresis, and electrothermosis. Moreover, the proposed operating mode can ...

Journal: :Electrophoresis 2011
Jan Regtmeier Ralf Eichhorn Martina Viefhues Lukas Bogunovic Dario Anselmetti

Dielectrophoresis is a non-destructive, label-free method to manipulate and separate (bio-) particles and macromolecules. The mechanism is based on the movement of polarizable objects in an inhomogeneous electric field. Here, microfluidic devices are reviewed that generate those inhomogeneous electric fields with insulating posts or constrictions, an approach called electrodeless or insulator-b...

2017
Alban J. Smith Richard D. O’Rorke Akshay Kale Roberts Rimsa Matthew J. Tomlinson Jennifer Kirkham A. Giles Davies Christoph Wälti Christopher D. Wood

The ability to isolate specific, viable cell populations from mixed ensembles with minimal manipulation and within intra-operative time would provide significant advantages for autologous, cell-based therapies in regenerative medicine. Current cell-enrichment technologies are either slow, lack specificity and/or require labelling. Thus a rapid, label-free separation technology that does not aff...

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