Cascaded spiral microfluidic device for deterministic and high purity continuous separation of circulating tumor cells.
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Tae Hyun Kim | Hyeun Joong Yoon | Philip Stella | Sunitha Nagrath | H. Yoon | S. Nagrath | Tae Hyun Kim | Philip Stella
[1] A. Bhagat,et al. Inertial microfluidics for continuous particle separation in spiral microchannels. , 2009, Lab on a chip.
[2] Jürgen Popp,et al. Tumour cell identification by means of Raman spectroscopy in combination with optical traps and microfluidic environments. , 2011, Lab on a chip.
[3] Donald E Ingber,et al. A combined micromagnetic-microfluidic device for rapid capture and culture of rare circulating tumor cells. , 2012, Lab on a chip.
[4] F. Becker,et al. Isolation of rare cells from cell mixtures by dielectrophoresis , 2009, Electrophoresis.
[5] Thomas Gervais,et al. Flow-induced deformation of shallow microfluidic channels. , 2006, Lab on a chip.
[6] K. Schütze,et al. Isolation by size of epithelial tumor cells : a new method for the immunomorphological and molecular characterization of circulatingtumor cells. , 2000, The American journal of pathology.
[7] C. Lim,et al. Isolation and retrieval of circulating tumor cells using centrifugal forces , 2013, Scientific Reports.
[8] Mehmet Toner,et al. Detection of mutations in EGFR in circulating lung-cancer cells. , 2008, The New England journal of medicine.
[9] A. Puisieux,et al. Metastasis: a question of life or death , 2006, Nature Reviews Cancer.
[10] Mehmet Toner,et al. Inertial Focusing for Tumor Antigen–Dependent and –Independent Sorting of Rare Circulating Tumor Cells , 2013, Science Translational Medicine.
[11] Peter C. Y. Chen,et al. Spiral microchannel with rectangular and trapezoidal cross-sections for size based particle separation , 2013, Scientific Reports.
[12] T. Laurell,et al. Free flow acoustophoresis: microfluidic-based mode of particle and cell separation. , 2007, Analytical chemistry.
[13] Daniel F. Hayes,et al. Sensitive capture of circulating tumour cells by functionalised graphene oxide nanosheets , 2013, Nature nanotechnology.
[14] Tanja Fehm,et al. Stem cell and epithelial-mesenchymal transition markers are frequently overexpressed in circulating tumor cells of metastatic breast cancer patients , 2009, Breast Cancer Research.
[15] Joseph M. Martel,et al. Particle Focusing in Curved Microfluidic Channels , 2013, Scientific Reports.
[16] Rajan P Kulkarni,et al. Size-selective collection of circulating tumor cells using Vortex technology. , 2014, Lab on a chip.
[17] Chao Liu,et al. Double spiral microchannel for label-free tumor cell separation and enrichment. , 2012, Lab on a chip.
[18] H. Jung,et al. Continuous separation of breast cancer cells from blood samples using multi-orifice flow fractionation (MOFF) and dielectrophoresis (DEP). , 2011, Lab on a chip.
[19] Elisabeth Guazzelli,et al. Inertial migration of rigid spherical particles in Poiseuille flow , 2004, Journal of Fluid Mechanics.
[20] G. T. Budd,et al. Circulating Tumor Cells at Each Follow-up Time Point during Therapy of Metastatic Breast Cancer Patients Predict Progression-Free and Overall Survival , 2006, Clinical Cancer Research.
[21] Mehmet Toner,et al. Biopolymer system for cell recovery from microfluidic cell capture devices. , 2012, Analytical chemistry.
[22] Sungyoung Choi,et al. Label-free cancer cell separation from human whole blood using inertial microfluidics at low shear stress. , 2013, Analytical chemistry.
[23] Anil K Sood,et al. A novel platform for detection of CK+ and CK- CTCs. , 2011, Cancer discovery.
[24] Ruud H. Brakenhoff,et al. Detection, clinical relevance and specific biological properties of disseminating tumour cells , 2008, Nature Reviews Cancer.
[25] R. Tompkins,et al. Continuous inertial focusing, ordering, and separation of particles in microchannels , 2007, Proceedings of the National Academy of Sciences.
[26] A. Bhagat,et al. Continuous particle separation in spiral microchannels using Dean flows and differential migration. , 2008, Lab on a chip.
[27] R. Weinberg,et al. A Perspective on Cancer Cell Metastasis , 2011, Science.
[28] S. Digumarthy,et al. Isolation of rare circulating tumour cells in cancer patients by microchip technology , 2007, Nature.
[29] Jongyoon Han,et al. An ultra-high-throughput spiral microfluidic biochip for the enrichment of circulating tumor cells. , 2014, The Analyst.
[30] Peter C. Y. Chen,et al. Slanted spiral microfluidics for the ultra-fast, label-free isolation of circulating tumor cells. , 2014, Lab on a chip.
[31] A. Bhagat,et al. Separation of leukocytes from blood using spiral channel with trapezoid cross-section. , 2012, Analytical chemistry.
[32] Jian Zhou,et al. Modulation of aspect ratio for complete separation in an inertial microfluidic channel. , 2013, Lab on a chip.
[33] Joseph M. Martel,et al. Inertial focusing dynamics in spiral microchannels. , 2012, Physics of fluids.
[34] Elisabeth Guazzelli,et al. Trains of particles in finite-Reynolds-number pipe flow , 2004 .
[35] M. Toner,et al. Differential inertial focusing of particles in curved low-aspect-ratio microchannels , 2009, New journal of physics.
[36] A. Bøyum,et al. Separation of blood leucocytes, granulocytes and lymphocytes. , 2008, Tissue antigens.
[37] G. Segré,et al. Radial Particle Displacements in Poiseuille Flow of Suspensions , 1961, Nature.
[38] Dong Sun,et al. Enhanced cell sorting and manipulation with combined optical tweezer and microfluidic chip technologies. , 2011, Lab on a chip.
[39] Sridhar Ramaswamy,et al. Circulating Breast Tumor Cells Exhibit Dynamic Changes in Epithelial and Mesenchymal Composition , 2013, Science.
[40] Evgeny S. Asmolov,et al. The inertial lift on a spherical particle in a plane Poiseuille flow at large channel Reynolds number , 1999, Journal of Fluid Mechanics.
[41] Bo Lu,et al. 3D microfilter device for viable circulating tumor cell (CTC) enrichment from blood , 2011, Biomedical microdevices.
[42] Kazunori Hoshino,et al. Microchip-based immunomagnetic detection of circulating tumor cells. , 2011, Lab on a chip.
[43] Jian Zhou,et al. Fundamentals of inertial focusing in microchannels. , 2013, Lab on a chip.
[44] Alison Stopeck,et al. Circulating tumor cells, disease progression, and survival in metastatic breast cancer. , 2004, The New England journal of medicine.
[45] Z. Geng,et al. Multi-component continuous separation chip composed of micropillar arrays in a split-level spiral channel , 2013 .