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Volumn 1, Issue 1, 2013, Pages 83-93
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A bio-inspired neural environment to control neurons comprising radial glia, substrate chemistry and topography
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Author keywords
[No Author keywords available]
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Indexed keywords
BIO-INSPIRED APPROACH;
CELLULAR RESPONSE;
CULTURED NEURONS;
GROOVED SURFACES;
HIGH-THROUGHPUT METHOD;
HYDROPHOBIC AND HYDROPHILIC;
SUBSTRATE CHEMISTRY;
SURFACE ENGINEERING;
ALIGNMENT;
NEURAL NETWORKS;
SURFACE CHEMISTRY;
NEURONS;
ANIMAL CELL;
ANIMAL EXPERIMENT;
ARTICLE;
CELL DENSITY;
COCULTURE;
COMPARATIVE STUDY;
CYTOCHEMISTRY;
GLIA;
GLIAL CELL CULTURE;
HYDROPHILICITY;
HYDROPHOBICITY;
MACROGLIA;
NERVE CELL;
NERVE FIBER GROWTH;
NONHUMAN;
PRIORITY JOURNAL;
RAT;
TISSUE REGENERATION;
TOPOGRAPHY;
WETTABILITY;
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EID: 84879931119
PISSN: 20474830
EISSN: 20474849
Source Type: Journal
DOI: 10.1039/c2bm00060a Document Type: Article |
Times cited : (23)
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References (44)
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