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Volumn 20, Issue 9, 2009, Pages
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The influence of glancing angle deposited nano-rough platinum surfaces on the adsorption of fibrinogen and the proliferation of primary human fibroblasts
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Author keywords
[No Author keywords available]
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Indexed keywords
ATOMIC-FORCE MICROSCOPIES;
BIOLOGICAL ASSAYS;
BLOOD PROTEINS;
CELL ASSAYS;
CELLULAR ADHESIONS;
DEPOSITION ANGLES;
FAST METHODS;
FIBRINOGEN ADSORPTIONS;
FLAT SURFACES;
GEOMETRICAL SURFACES;
GLANCING ANGLE DEPOSITION METHODS;
GLANCING ANGLES;
GRAZING INCIDENCES;
HUMAN FIBROBLASTS;
MODEL SURFACES;
NANO ROUGHNESS;
NANO-SCALE;
PLATINUM SURFACES;
PROTEIN ADSORPTIONS;
ROUGH SUBSTRATES;
ROUGH SURFACES;
SEM;
SURFACE FEATURES;
ADSORPTION;
ATOMIC FORCE MICROSCOPY;
CELL CULTURE;
FIBROBLASTS;
PLATINUM;
SCANNING ELECTRON MICROSCOPY;
SUBSTRATES;
SURFACE MEASUREMENT;
SURFACE ROUGHNESS;
THIN FILMS;
SURFACE MORPHOLOGY;
FIBRINOGEN;
MOLECULAR SCAFFOLD;
NANOFILM;
NANOMATERIAL;
NANOPARTICLE;
PLATINUM;
BIOMATERIAL;
ADSORPTION;
ARTICLE;
ATOMIC FORCE MICROSCOPY;
BIOASSAY;
CELL ADHESION;
CELL ASSAY;
CELL PROLIFERATION;
FIBROBLAST;
FILM;
GLANCING ANGLE DEPOSITION;
HUMAN;
HUMAN CELL;
HUMAN CELL CULTURE;
NANOANALYSIS;
NANOFABRICATION;
PRIORITY JOURNAL;
PROTEIN BINDING;
SCANNING ELECTRON MICROSCOPY;
SURFACE PROPERTY;
SYNTHESIS;
TECHNIQUE;
TOPOGRAPHY;
CELL LINE;
CHEMISTRY;
CONFORMATION;
CRYSTALLIZATION;
CYTOLOGY;
MACROMOLECULE;
MATERIALS TESTING;
METHODOLOGY;
NANOTECHNOLOGY;
PARTICLE SIZE;
PHYSIOLOGY;
ULTRASTRUCTURE;
ADSORPTION;
BIOCOMPATIBLE MATERIALS;
CELL ADHESION;
CELL LINE;
CELL PROLIFERATION;
CRYSTALLIZATION;
FIBRINOGEN;
FIBROBLASTS;
HUMANS;
MACROMOLECULAR SUBSTANCES;
MATERIALS TESTING;
MOLECULAR CONFORMATION;
NANOSTRUCTURES;
NANOTECHNOLOGY;
PARTICLE SIZE;
PLATINUM;
PROTEIN BINDING;
SURFACE PROPERTIES;
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EID: 65449177634
PISSN: 09574484
EISSN: 13616528
Source Type: Journal
DOI: 10.1088/0957-4484/20/9/095101 Document Type: Article |
Times cited : (52)
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References (37)
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