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Volumn 86, Issue 4-6, 2009, Pages 1435-1438
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Design, fabrication and evaluation of nanoscale surface topography as a tool in directing differentiation and organisation of embryonic stem-cell-derived neural precursors
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Author keywords
Mouse embryonic stem cells (mESC); Nano biomaterials; Neural differentiation; Surface topography; Tissue organisation
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Indexed keywords
ATTRACTIVE STRATEGIES;
AXONAL OUTGROWTHS;
CELL BEHAVIOURS;
CHEMICAL FACTORS;
CLINICAL APPLICATIONS;
CYTO COMPATIBILITIES;
DIRECT DIFFERENTIATIONS;
EFFICIENT CONTROLS;
EMBRYONIC STEMS;
ES CELLS;
FABRICATION OF THIN FILMS;
GLASS COVERSLIPS;
GOLD FILMS;
IN-VITRO;
MICRO-FABRICATION TECHNIQUES;
MICRO-SCALE;
MOUSE EMBRYONIC STEM CELLS (MESC);
NANO-BIOMATERIALS;
NANO-SCALE SURFACE ROUGHNESS;
NEURAL DIFFERENTIATION;
NEURAL PRECURSORS;
NEURAL PROSTHESIS;
NEUROLOGICAL INJURIES;
NEUROTROPHIC FACTORS;
REFERENCE MATERIALS;
ROOT MEAN SQUARES;
STEM CELLS;
TISSUE CULTURE PLASTICS;
BIOMATERIALS;
BIOMIMETICS;
CELL MEMBRANES;
DESIGN;
ENGINEERING GEOLOGY;
GOLD;
NANOSTRUCTURED MATERIALS;
SURFACE PROPERTIES;
SURFACE ROUGHNESS;
TISSUE;
TISSUE CULTURE;
CELL CULTURE;
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EID: 67349159082
PISSN: 01679317
EISSN: None
Source Type: Journal
DOI: 10.1016/j.mee.2009.01.032 Document Type: Article |
Times cited : (24)
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References (18)
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