Streamline-Based Microfluidic Devices for Erythrocytes and Leukocytes Separation
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[1] Minoru Seki,et al. Microfluidic devices for size-dependent separation of liver cells , 2007, Biomedical microdevices.
[2] J. Sturm,et al. Deterministic hydrodynamics: Taking blood apart , 2006, Proceedings of the National Academy of Sciences.
[3] A. B. Frazier,et al. Diamagnetic capture mode magnetophoretic microseparator for blood cells , 2006, Journal of Microelectromechanical Systems.
[4] K. Jensen,et al. Cells on chips , 2006, Nature.
[5] R. Jäggi,et al. Microfluidic depletion of red blood cells from whole blood in high-aspect-ratio microchannels , 2006 .
[6] A. Undar,et al. A microfluidic device for continuous, real time blood plasma separation. , 2006, Lab on a chip.
[7] David W Inglis,et al. Critical particle size for fractionation by deterministic lateral displacement. , 2006, Lab on a chip.
[8] Robert H. Austin,et al. Microfluidic high gradient magnetic cell separation , 2006 .
[9] S. B. Mckenzie,et al. Clinical Laboratory Hematology , 2006 .
[10] A. B. Frazier,et al. Paramagnetic capture mode magnetophoretic microseparator for high efficiency blood cell separations. , 2006, Lab on a chip.
[11] M. Yamada,et al. Microfluidic particle sorter employing flow splitting and recombining. , 2006, Analytical chemistry.
[12] T. Laurell,et al. Continuous separation of lipid particles from erythrocytes by means of laminar flow and acoustic standing wave forces. , 2005, Lab on a chip.
[13] Dorian Liepmann,et al. Biomimetic technique for adhesion-based collection and separation of cells in a microfluidic channel. , 2005, Lab on a chip.
[14] Paul H. Bessette,et al. Marker-specific sorting of rare cells using dielectrophoresis. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[15] M. Yamada,et al. Hydrodynamic filtration for on-chip particle concentration and classification utilizing microfluidics. , 2005, Lab on a chip.
[16] Mehmet Toner,et al. Blood-on-a-chip. , 2005, Annual review of biomedical engineering.
[17] Siyang Zheng,et al. Deterministic lateral displacement MEMS device for continuous blood cell separation , 2005, 18th IEEE International Conference on Micro Electro Mechanical Systems, 2005. MEMS 2005..
[18] M. Yamada,et al. Continuous particle separation in a microchannel having asymmetrically arranged multiple branches. , 2005, Lab on a chip.
[19] S. Takayama,et al. Microfluidics for flow cytometric analysis of cells and particles , 2005, Physiological measurement.
[20] C. Blattert,et al. Microfluidic blood/plasma separation unit based on microchannel bend structures , 2005, 2005 3rd IEEE/EMBS Special Topic Conference on Microtechnology in Medicine and Biology.
[21] Sergey S Shevkoplyas,et al. Biomimetic autoseparation of leukocytes from whole blood in a microfluidic device. , 2005, Analytical chemistry.
[22] M. Caggana,et al. Development of a rare cell fractionation device: application for cancer detection , 2004, IEEE Transactions on NanoBioscience.
[23] A. Bruno Frazier,et al. Continuous magnetophoretic separation of blood cells in microdevice format , 2004 .
[24] M. Yamada,et al. Pinched flow fractionation: continuous size separation of particles utilizing a laminar flow profile in a pinched microchannel. , 2004, Analytical chemistry.
[25] Hugo Thienpont,et al. A novel microstep device for the size separation of cells , 2004, Electrophoresis.
[26] J. Sturm,et al. Continuous Particle Separation Through Deterministic Lateral Displacement , 2004, Science.
[27] Gwo-Bin Lee,et al. Electrokinetically driven micro flow cytometers with integrated fiber optics for on-line cell/particle detection , 2004 .
[28] Thomas Laurell,et al. Acoustic control of suspended particles in micro fluidic chips. , 2004, Lab on a chip.
[29] B. W. Roberts,et al. Flow‐induced particulate separations , 2003 .
[30] Andreas Schoth,et al. Separation of blood in microchannel bends , 2003, The 26th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[31] H. Andersson,et al. Microfluidic devices for cellomics: a review , 2003 .
[32] Michael P Hughes,et al. Strategies for dielectrophoretic separation in laboratory‐on‐a‐chip systems , 2002, Electrophoresis.
[33] N. Darnton,et al. Hydrodynamics in 2½ dimensions: making jets in a plane , 2001 .
[34] S. Quake,et al. A microfabricated fluorescence-activated cell sorter , 1999, Nature Biotechnology.
[35] F F Becker,et al. Cell separation on microfabricated electrodes using dielectrophoretic/gravitational field-flow fractionation. , 1999, Analytical chemistry.
[36] Mann A. Shoffner,et al. Integrated cell isolation and polymerase chain reaction analysis using silicon microfilter chambers. , 1998, Analytical biochemistry.
[37] H. Carlson,et al. Sorting of White Blood Cells in a Lattice , 1997 .
[38] Efstathios E. Michaelides,et al. Review-The transient equation of motion for particles , 1997 .
[39] F F Becker,et al. Separation of human breast cancer cells from blood by differential dielectric affinity. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[40] S. Cowin,et al. Biomechanics: Mechanical Properties of Living Tissues, 2nd ed. , 1994 .
[41] J. Giddings,et al. Field-flow fractionation: analysis of macromolecular, colloidal, and particulate materials. , 1993, Science.
[42] D. Bergel. Geigy Scientific Tables , 1991 .
[43] R M Heethaar,et al. Blood platelets are concentrated near the wall and red blood cells, in the center in flowing blood. , 1988, Arteriosclerosis.
[44] H M Shapiro,et al. Combined blood cell counting and classification with fluorochrome stains and flow instrumentation. , 1976, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[45] S. Ben‐Sasson,et al. Electrical sizing of particles in suspensions IV. Lymphocytes , 1974, Journal of cellular physiology.
[46] S. Ben‐Sasson,et al. Electrical sizing of particles in suspensions. I. Theory. , 1969, Biophysical journal.
[47] M. Van Dilla,et al. Volume Distribution and Separation of Normal Human Leucocytes.∗ , 1967, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.
[48] B. W. Roberts,et al. The distribution of freely suspended particles at microfluidic bifurcations , 2006 .
[49] Y. Tai,et al. Circulating tumor cell capture from whole blood by parylene filter devices , 2005 .
[50] Peter R. C. Gascoyne,et al. Dielectrophoresis-based sample handling in general-purpose programmable diagnostic instruments , 2004, Proceedings of the IEEE.
[51] J. Kutter,et al. Integrating advanced functionality in a microfabricated high-throughput fluorescent-activated cell sorter. , 2003, Lab on a chip.
[52] M. N. Myers,et al. SEPARATION BEHAVIOR OF BLOOD CELLS IN SEDIMENTATION FIELD-FLOW FRACTIONATION , 1999 .
[53] Andreas Radbruch,et al. Cell separation methods and applications , 1998 .