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Volumn 4, Issue 2, 2009, Pages
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Histological evaluation of osteogenesis of 3D-printed poly-lactic-co- glycolic acid (PLGA) scaffolds in a rabbit model
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Author keywords
[No Author keywords available]
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Indexed keywords
ACIDS;
BIOCOMPATIBILITY;
BIOMECHANICS;
BIOMETRICS;
BONE;
DEFECTS;
DEGRADATION;
MECHANICAL PROPERTIES;
SURGERY;
THREE DIMENSIONAL;
3-D PRINTING;
BIOMETRIC DATA;
BONE DEFECT MODELS;
BONE REGENERATION;
BONE TISSUE FORMATION;
CANCELLOUS BONE;
CORTICAL BONE;
DEGRADATION RATE;
GLYCOLIDE;
HISTOLOGICAL ANALYSIS;
HISTOLOGICAL EVALUATION;
IN-SITU;
IN-VITRO;
LACTIDE;
MRI SCAN;
OSTEOCONDUCTIVE;
OSTEOGENESIS;
OSTEOGENIC DIFFERENTIATION;
PLGA SCAFFOLDS;
POLY LACTIC-CO-GLYCOLIC ACID;
RABBIT MODELS;
TIME COURSE;
TISSUE IN-GROWTH;
SCAFFOLDS;
POLYGLACTIN;
TISSUE SCAFFOLD;
BIOMATERIAL;
LACTIC ACID;
POLYGLYCOLIC ACID;
POLYLACTIC ACID POLYGLYCOLIC ACID COPOLYMER;
POLYLACTIC ACID-POLYGLYCOLIC ACID COPOLYMER;
ANIMAL EXPERIMENT;
ANIMAL MODEL;
ANIMAL TISSUE;
ARTICLE;
BIOCOMPATIBILITY;
BONE DEFECT;
BONE DEVELOPMENT;
BONE MATURATION;
BONE PROSTHESIS;
CLINICAL EFFECTIVENESS;
CONTROLLED STUDY;
CORTICAL BONE;
EXPERIMENTAL MODEL;
HISTOLOGY;
ILIAC CREST;
MALE;
NANOFABRICATION;
NONHUMAN;
PERIOSTEUM;
POSTOPERATIVE PERIOD;
RABBIT;
THERAPY EFFECT;
ANIMAL;
BONE;
CHEMISTRY;
COMPUTER ASSISTED TOMOGRAPHY;
METABOLISM;
METHODOLOGY;
NUCLEAR MAGNETIC RESONANCE IMAGING;
PATHOLOGY;
TIME;
ANIMALIA;
ORYCTOLAGUS CUNICULUS;
ANIMALS;
BIOCOMPATIBLE MATERIALS;
BONE AND BONES;
BONE SUBSTITUTES;
HISTOLOGY;
LACTIC ACID;
MAGNETIC RESONANCE IMAGING;
MALE;
OSTEOGENESIS;
PERIOSTEUM;
POLYGLYCOLIC ACID;
RABBITS;
TIME FACTORS;
TISSUE SCAFFOLDS;
TOMOGRAPHY, X-RAY COMPUTED;
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EID: 67650696338
PISSN: 17486041
EISSN: 1748605X
Source Type: Journal
DOI: 10.1088/1748-6041/4/2/021001 Document Type: Article |
Times cited : (91)
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References (15)
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