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Volumn 14, Issue 5, 2014, Pages 667-678
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Shape-memory effect by specific biodegradable polymer blending for biomedical applications
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Author keywords
biodegradable polymers; biomedical applications; glass transition temperature; polymer blends; shape memory polymers
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Indexed keywords
BIOCOMPATIBILITY;
BIOMEDICAL EQUIPMENT;
BLENDING;
FUNCTIONAL POLYMERS;
GLASS;
GLASS TRANSITION;
MEDICAL APPLICATIONS;
ORGANIC POLYMERS;
ORGANIC SOLVENTS;
POLYMER BLENDS;
POLYMER FILMS;
SHAPE MEMORY EFFECT;
SHAPE OPTIMIZATION;
BIOMEDICAL APPLICATIONS;
BLOOD COMPATIBILITY;
BODY TEMPERATURE;
CYTOCOMPATIBILITY;
DYNAMIC MECHANICAL ANALYSIS (DMA);
SHAPE MEMORY POLYMERS;
SHAPE-MEMORY PROPERTIES;
SOLVENT CASTING;
BIODEGRADABLE POLYMERS;
CHLOROFORM;
COLLAGEN;
POLYCAPROLACTONE;
POLYGLACTIN;
POLYLACTIDE;
CAPROLACTONE;
HEXANOIC ACID DERIVATIVE;
LACTIC ACID;
LACTONE;
POLYGLYCOLIC ACID;
POLYLACTIC ACID-POLYGLYCOLIC ACID COPOLYMER;
POLYMER;
ANIMAL CELL;
ARTICLE;
BIOCOMPATIBILITY;
BIODEGRADABILITY;
BIOMEDICINE;
BLOOD COMPATIBILITY;
BODY TEMPERATURE;
CELL PROLIFERATION;
CONTROLLED STUDY;
CYTOCOMPATIBILITY;
DISSOLUTION;
GLASS TRANSITION TEMPERATURE;
IN VITRO STUDY;
MELTING POINT;
MORPHOLOGY;
MOUSE;
NONHUMAN;
PHYSICAL PHENOMENA;
SHAPE MEMORY EFFECT;
THROMBOCYTE ADHESION;
YOUNG MODULUS;
3T3 CELL LINE;
ANIMAL;
BIODEGRADABLE IMPLANT;
BIOMEDICAL ENGINEERING;
CELL CULTURE;
CHEMISTRY;
CONFORMATION;
MATERIALS TESTING;
PROCEDURES;
ABSORBABLE IMPLANTS;
ANIMALS;
BIOMEDICAL ENGINEERING;
CAPROATES;
CELLS, CULTURED;
LACTIC ACID;
LACTONES;
MATERIALS TESTING;
MICE;
MOLECULAR CONFORMATION;
NIH 3T3 CELLS;
POLYGLYCOLIC ACID;
POLYMERS;
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EID: 84901012523
PISSN: 16165187
EISSN: 16165195
Source Type: Journal
DOI: 10.1002/mabi.201300481 Document Type: Article |
Times cited : (60)
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References (35)
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