Analytical Formulation of the Electric Field Induced by Electrode Arrays: Towards Automated Dielectrophoretic Cell Sorting
暂无分享,去创建一个
Aude Bolopion | Michaël Gauthier | Vladimir Gauthier | A. Bolopion | M. Gauthier | Vladimir Gauthier
[1] R. Martinez-Duarte,et al. Numerical Model of Streaming DEP for Stem Cell Sorting , 2016, Micromachines.
[2] John T.W. Yeow,et al. Modelling and adaptive dynamic sliding mode control of dielectrophoresis-based micromanipulation , 2018 .
[3] C. Chree. The Mathematical Theory of Electricity and Magnetism , 1908, Nature.
[4] Kristian Hengster-Movric,et al. Green's function-based control-oriented modeling of electric field for dielectrophoresis , 2017, 1703.01980.
[5] Dawn J. Bennett,et al. A semi-analytical approach using artificial neural network for dielectrophoresis generated by parallel electrodes , 2010 .
[6] Peter R. C. Gascoyne,et al. A theoretical method of electrical field analysis for dielectrophoretic electrode arrays using Green's theorem , 1996 .
[7] N. Manaresi,et al. A CMOS chip for individual cell manipulation and detection , 2003, 2003 IEEE International Solid-State Circuits Conference, 2003. Digest of Technical Papers. ISSCC..
[8] Tomáš Michálek,et al. Feedback control for noise‐aided parallel micromanipulation of several particles using dielectrophoresis , 2015, Electrophoresis.
[9] Hywel Morgan,et al. Numerical solution of the dielectrophoretic and travelling wave forces for interdigitated electrode arrays using the finite element method , 2002 .
[10] Thomas Laurell,et al. Continuous separation of cells and particles in microfluidic systems. , 2010, Chemical Society reviews.
[11] Hywel Morgan,et al. Analytical solutions for the electric field and dielectrophoretic force in a dielectrophoretic focusing electrode structure , 2008 .
[12] Meng Gao,et al. A Microfluidic Chip for Liquid Metal Droplet Generation and Sorting , 2017, Micromachines.
[13] M. Vellekoop,et al. Continuous cell from cell separation by traveling wave dielectrophoresis , 2012 .
[14] N. G. Greena,et al. Numerical solution of the dielectrophoretic and travelling wave forces for interdigitated electrode arrays using the finite element method , 2002 .
[15] H. A. Pohl,et al. Dielectrophoretic force. , 1972, Journal of theoretical biology.
[16] Teng Zhou,et al. Deformability-Based Electrokinetic Particle Separation , 2016, Micromachines.
[17] Cullen R Buie,et al. High sensitivity three-dimensional insulator-based dielectrophoresis. , 2012, Lab on a chip.
[18] Y. Lo,et al. Quasistatic force and torque on a spherical particle under generalized dielectrophoresis in the vicinity of walls , 2009 .
[19] I. Stiharu,et al. Analytical solutions and validation of electric field and dielectrophoretic force in a bio‐microfluidic channel , 2012, Electrophoresis.
[20] Peter R. C. Gascoyne,et al. Correlations between the dielectric properties and exterior morphology of cells revealed by dielectrophoretic field‐flow fractionation , 2013, Electrophoresis.
[21] Dong Eui Chang,et al. Closed-form solutions in the electrical field analysis for dielectrophoretic and travelling wave inter-digitated electrode arrays , 2003 .
[22] Michaël Gauthier,et al. Modeling the trajectory of a micro particle in a dielectrophoresis device for dynamic control , 2009, 2010 IEEE International Conference on Robotics and Automation.
[23] Jiri Zemanek,et al. Twin-beam real-time position estimation of micro-objects in 3D , 2016, ArXiv.
[24] R. Westervelt,et al. Dielectrophoretic manipulation of drops for high-speed microfluidic sorting devices , 2006 .
[25] H Morgan,et al. On-chip high-speed sorting of micron-sized particles for high-throughput analysis. , 2005, IEE proceedings. Nanobiotechnology.
[26] Sung-Hwan Kim,et al. Separation and sorting of cells in microsystems using physical principles , 2015 .
[27] Peter R C Gascoyne,et al. Dielectrophoresis has broad applicability to marker-free isolation of tumor cells from blood by microfluidic systems. , 2013, Biomicrofluidics.
[28] H. Morgan,et al. The dielectrophoretic and travelling wave forces generated by interdigitated electrode arrays: analytical solution using Fourier series , 2001 .
[29] Thomas Braschler,et al. Continuous separation of cells by balanced dielectrophoretic forces at multiple frequencies. , 2008, Lab on a chip.
[30] Nader Engheta,et al. Electric tweezers: Experimental study of positive dielectrophoresis-based positioning and orientation of a nanorod , 2007 .
[31] C. H. Kua,et al. Cell motion model for moving dielectrophoresis. , 2008, Analytical chemistry.
[32] S. K. Vashist,et al. Microfluidic solutions enabling continuous processing and monitoring of biological samples: A review. , 2016, Analytica chimica acta.
[33] Michael P Hughes,et al. Fifty years of dielectrophoretic cell separation technology. , 2016, Biomicrofluidics.