Pages that link to "Q51697634"
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The following pages link to Porous poly(alpha-hydroxyacid)/Bioglass composite scaffolds for bone tissue engineering. I: Preparation and in vitro characterisation (Q51697634):
Displaying 50 items.
- Bioceramics and Scaffolds: A Winning Combination for Tissue Engineering (Q26770530) (← links)
- Time-dependent evaluation of mechanical properties and in vitro cytocompatibility of experimental composite-based nerve guidance conduits (Q30405135) (← links)
- Degradable phosphate glass fiber reinforced polymer matrices: mechanical properties and cell response (Q33288617) (← links)
- Organic-inorganic composites for bone drug delivery (Q33563523) (← links)
- Degradation, bioactivity, and osteogenic potential of composites made of PLGA and two different sol-gel bioactive glasses. (Q33871094) (← links)
- Minocycline Loaded Hybrid Composites Nanoparticles for Mesenchymal Stem Cells Differentiation into Osteogenesis (Q36092473) (← links)
- Bioactive composite materials for tissue engineering scaffolds. (Q36313285) (← links)
- Bone tissue engineering scaffolding: computer-aided scaffolding techniques (Q36452788) (← links)
- Less harmful acidic degradation of poly(lacticco-glycolic acid) bone tissue engineering scaffolds through titania nanoparticle addition. (Q37178136) (← links)
- Safety evaluation of a bioglass-polylactic acid composite scaffold seeded with progenitor cells in a rat skull critical-size bone defect. (Q37548954) (← links)
- Bridging the Gap Between Physicochemistry and Interpretation Prevalent in Cell−Surface Interactions (Q37841536) (← links)
- Three-dimensional glass-derived scaffolds for bone tissue engineering: current trends and forecasts for the future. (Q37861641) (← links)
- Bioactive Glass-Based Scaffolds for Bone Tissue Engineering (Q37956483) (← links)
- HA/nylon 6,6 porous scaffolds fabricated by salt-leaching/solvent casting technique: effect of nano-sized filler content on scaffold properties (Q38257860) (← links)
- Hard tissue regeneration using bone substitutes: an update on innovations in materials. (Q38494913) (← links)
- Advanced Strategies for Articular Cartilage Defect Repair (Q38624157) (← links)
- Bioglass® 45S5-based composites for bone tissue engineering and functional applications (Q38661369) (← links)
- Tissue engineering advances in spine surgery (Q38733647) (← links)
- Morphological effects of porous poly-d,l-lactic acid/hydroxyapatite scaffolds produced by supercritical CO2 foaming on their mechanical performance (Q38768410) (← links)
- Poly (lactic acid)-based biomaterials for orthopaedic regenerative engineering. (Q38820059) (← links)
- Immunohistochemistry evaluation of BMP-2 with β-tricalcium phosphate matrix, polylactic and polyglycolic acid gel, and calcium phosphate cement in rats (Q38847025) (← links)
- Effect of the preparation methods on architecture, crystallinity, hydrolytic degradation, bioactivity, and biocompatibility of PCL/bioglass composite scaffolds (Q38926190) (← links)
- PDLLA scaffolds with Cu- and Zn-doped bioactive glasses having multifunctional properties for bone regeneration (Q39246996) (← links)
- Synthesis and characterization of poly(lactic-co-glycolic) acid nanoparticles-loaded chitosan/bioactive glass scaffolds as a localized delivery system in the bone defects (Q40030924) (← links)
- Biocompatibility of poly-DL-lactic acid (PDLLA) for lung tissue engineering (Q40323748) (← links)
- Bioactive Glass Nanoparticles: From Synthesis to Materials Design for Biomedical Applications (Q40967660) (← links)
- Bioactive Glass and Glass-Ceramic Scaffolds for Bone Tissue Engineering (Q41785535) (← links)
- Polyurethane/fluor-hydroxyapatite nanocomposite scaffolds for bone tissue engineering. Part I: morphological, physical, and mechanical characterization (Q42578232) (← links)
- Preparation of a novel biodegradable nanocomposite scaffold based on poly (3-hydroxybutyrate)/bioglass nanoparticles for bone tissue engineering. (Q43107618) (← links)
- The microscopical characterization of membranes poly (L-glycolic-co-lactic acid) with and without added plasticizer: an in vivo study (Q44254800) (← links)
- Bone tissue engineering using bone marrow stromal cells and an injectable sodium alginate/gelatin scaffold (Q45011414) (← links)
- In vitro and in vivo evaluations of three-dimensional hydroxyapatite/silk fibroin nanocomposite scaffolds. (Q45711411) (← links)
- Preparation and mechanical properties of carbon fiber reinforced hydroxyapatite/polylactide biocomposites. (Q45926135) (← links)
- Bioactive microspheres produced from gelatin-siloxane hybrids for bone regeneration (Q46856383) (← links)
- Fabrication and characterization of polysulfone-dicalcium silicate composite films (Q46916928) (← links)
- Co-existence effect of tricalcium phosphate and bioactive glass on biological and biodegradation characteristic of Poly L-Lactic Acid (PLLA) in trinary composite scaffold form (Q47317313) (← links)
- Consistent quasistatic and acoustic elasticity determination of poly-L-lactide-based rapid-prototyped tissue engineering scaffolds (Q47349914) (← links)
- Treatment of a burn animal model with functionalized tridimensional electrospun biomaterials. (Q47586530) (← links)
- Effects of carbon nanotubes (CNTs) on the processing and in-vitro degradation of poly(DL-lactide-co-glycolide)/CNT films (Q47841366) (← links)
- Bone tissue engineering by using a combination of polymer/Bioglass composites with human adipose-derived stem cells (Q50226480) (← links)
- Progress and challenges in biomaterials used for bone tissue engineering: bioactive glasses and elastomeric composites (Q50297355) (← links)
- Bioresorbable glass fibres facilitate peripheral nerve regeneration (Q50484979) (← links)
- Fabrication and in vivo evaluation of an osteoblast-conditioned nano-hydroxyapatite/gelatin composite scaffold for bone tissue regeneration. (Q50865688) (← links)
- Fabrication of fibrous poly(butylene succinate)/wollastonite/apatite composite scaffolds by electrospinning and biomimetic process (Q50963079) (← links)
- Fabrication, characterization, and in vitro degradation of composite scaffolds based on PHBV and bioactive glass (Q51349717) (← links)
- Composition–property relationships for an experimental composite nerve guidance conduit: evaluating cytotoxicity and initial tensile strength (Q51596810) (← links)
- Development of a biomaterial associated with mesenchymal stem cells and keratinocytes for use as a skin substitute (Q51656116) (← links)
- [Synthesis and characteristics of integrated bionic mandibular condylar scaffold]. (Q53088392) (← links)
- 3D bioactive composite scaffolds for bone tissue engineering. (Q54966347) (← links)
- Freeze-Casting of Porous Biomaterials: Structure, Properties and Opportunities. (Q55092345) (← links)