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Volumn 395, Issue 1, 2009, Pages 185-193
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Engineered 3D tissue models for cell-laden microfluidic channels
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Author keywords
3D tissue engineering; Microfluidic channel; Scaffold; Tissue perfusion
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Indexed keywords
3D TISSUE ENGINEERING;
CELL VIABILITY;
CHANNEL RADIUS;
CHANNEL SEPARATION;
CHANNEL SIZES;
CIRCULAR MICROCHANNEL;
EXPERIMENTAL DATA;
HYDROGEL SCAFFOLDS;
MATHEMATICAL MODELING OF DIFFUSION;
MICROCHANNEL SIZE;
MICROFLUIDIC CHANNEL;
MODEL SYSTEM;
NUTRIENT CONSUMPTION;
NUTRIENT DIFFUSION;
OXYGEN TRANSPORT;
PARAMETRIC STUDY;
RADIAL DISTANCE;
SPATIAL DISTRIBUTION;
THREE-DIMENSIONAL (3D);
TISSUE CONSTRUCTS;
TISSUE MODELS;
TISSUE PERFUSION;
VIABLE CELLS;
CELL MEMBRANES;
FLUIDIC DEVICES;
FUNCTIONS;
HYDROGELS;
MICROCHANNELS;
MICROFLUIDICS;
NUTRIENTS;
OXYGEN;
SCAFFOLDS;
SIZE DISTRIBUTION;
SIZE SEPARATION;
TISSUE;
TISSUE ENGINEERING;
THREE DIMENSIONAL;
OXYGEN;
ANIMAL;
ARTICLE;
CELL;
CELL STRAIN 3T3;
CELL SURVIVAL;
FOOD;
HYDROGEL;
INSTRUMENTATION;
METHODOLOGY;
MICROFLUIDICS;
MOUSE;
PERFUSION;
TISSUE ENGINEERING;
3T3 CELLS;
ANIMALS;
CELL SURVIVAL;
CELLS;
FOOD;
HYDROGELS;
MICE;
MICROFLUIDICS;
OXYGEN;
PERFUSION;
TISSUE ENGINEERING;
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EID: 68949146856
PISSN: 16182642
EISSN: 16182650
Source Type: Journal
DOI: 10.1007/s00216-009-2935-1 Document Type: Article |
Times cited : (55)
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References (36)
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