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Volumn 10, Issue 5, 2008, Pages 631-638
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Microfluidic high viability neural cell separation using viscoelastically tuned hydrodynamic spreading
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Author keywords
Microfluidics; Neural cell; Separation; Viscoelastic
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Indexed keywords
ADHESION;
CELL ADHESION;
ELECTRON BEAM LITHOGRAPHY;
FLUID DYNAMICS;
FLUID MECHANICS;
HYDRODYNAMICS;
ISOMERS;
LATEXES;
NANOFLUIDICS;
POLYMER SOLUTIONS;
POLYMERS;
SEPARATION;
SIZE SEPARATION;
SODIUM;
SOLUTIONS;
THROUGHPUT;
AQUEOUS SOLUTIONS;
BIOCOMPATIBLE POLYMERS;
BUSINESS MEDIA;
CONTINUOUS MODE;
FLUORESCENT DYES;
GLIAL CELLS;
HIGH-THROUGHPUT (HT);
LATEX BEADS;
LATEX PARTICLES;
MICRO FLUIDIC;
MICROFLUIDIC CELLS;
NEURAL CELLS;
PARTICLE SEPARATION;
POLYMER CONCENTRATIONS;
CELLS;
ALGINIC ACID;
FLUORESCENT DYE;
POLYMER;
SODIUM;
WATER;
ANIMAL CELL;
ANIMAL TISSUE;
AQUEOUS SOLUTION;
ARTICLE;
BIOCOMPATIBILITY;
CELL ADHESION;
CELL SEPARATION;
CELL SPREADING;
CELL VIABILITY;
CONTROLLED STUDY;
ELUTION;
FLOW RATE;
GLIA CELL;
HYDRODYNAMICS;
MICROFLUIDICS;
NERVE CELL;
NONHUMAN;
PARTICLE SIZE;
PRIORITY JOURNAL;
RAT;
SAMPLING;
VISCOELASTICITY;
ANIMALS;
CELL SEPARATION;
CELL SURVIVAL;
ELASTICITY;
EMBRYO, MAMMALIAN;
EQUIPMENT DESIGN;
FEMALE;
GANGLIA, SPINAL;
MICROFLUIDIC ANALYTICAL TECHNIQUES;
MICROFLUIDICS;
NEUROGLIA;
NEURONS;
PREGNANCY;
RATS;
SILICONES;
SPINAL CORD;
VISCOSITY;
WATER;
WETTABILITY;
ADHESION;
CELLS;
FLUID DYNAMICS;
FLUID MECHANICS;
FLUIDICS;
HYDRODYNAMICS;
ISOMERS;
LATEX;
POLYMERS;
SEPARATION;
SURFACE TREATMENT;
VISCOELASTICITY;
RATTUS;
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EID: 48749104925
PISSN: 13872176
EISSN: None
Source Type: Journal
DOI: 10.1007/s10544-008-9174-7 Document Type: Article |
Times cited : (31)
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References (36)
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