Pages that link to "Q38458636"
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The following pages link to Stimulation of healing within a rabbit calvarial defect by a PCL/PLGA scaffold blended with TCP using solid freeform fabrication technology (Q38458636):
Displaying 26 items.
- An overview of poly(lactic-co-glycolic) acid (PLGA)-based biomaterials for bone tissue engineering (Q26824180) (← links)
- Effects of 3D-Printed Polycaprolactone/β-Tricalcium Phosphate Membranes on Guided Bone Regeneration (Q33754740) (← links)
- In vivo ossification of a scaffold combining β-tricalcium phosphate and platelet-rich plasma (Q34292249) (← links)
- Recent advances in 3D printing of biomaterials (Q35600029) (← links)
- A computer-designed scaffold for bone regeneration within cranial defect using human dental pulp stem cells (Q35909535) (← links)
- Polyetheretherketone/poly (glycolic acid) blend scaffolds with biodegradable properties (Q36072499) (← links)
- The Effect of Bisphasic Calcium Phosphate Block Bone Graft Materials with Polysaccharides on Bone Regeneration (Q38400511) (← links)
- Design and fabrication of porous biodegradable scaffolds: a strategy for tissue engineering (Q38679497) (← links)
- Three-Dimensional Bioprinting Materials with Potential Application in Preprosthetic Surgery (Q38725963) (← links)
- Micro-CT Analysis of Bone Healing in Rabbit Calvarial Critical-Sized Defects with Solid Bioactive Glass, Tricalcium Phosphate Granules or Autogenous Bone (Q39526274) (← links)
- Comparative Efficacies of Collagen-Based 3D Printed PCL/PLGA/β-TCP Composite Block Bone Grafts and Biphasic Calcium Phosphate Bone Substitute for Bone Regeneration (Q40991870) (← links)
- Comparative of fibroblast and osteoblast cells adhesion on surface modified nanofibrous substrates based on polycaprolactone (Q42322519) (← links)
- Development and Assessment of a 3D-Printed Scaffold with rhBMP-2 for an Implant Surgical Guide Stent and Bone Graft Material: A Pilot Animal Study (Q47139174) (← links)
- Advanced Material Strategies for Next-Generation Additive Manufacturing (Q47716530) (← links)
- In Vivo Evaluation of 3D-Printed Polycaprolactone Scaffold Implantation Combined with β-TCP Powder for Alveolar Bone Augmentation in a Beagle Defect Model. (Q48104661) (← links)
- Functionalizing PLGA and PLGA Derivatives for Drug Delivery and Tissue Regeneration Applications. (Q48240255) (← links)
- Efficacy of rhBMP-2 Loaded PCL/β-TCP/bdECM Scaffold Fabricated by 3D Printing Technology on Bone Regeneration. (Q52717586) (← links)
- Preliminary Results of Bone Regeneration in Oromaxillomandibular Surgery Using Synthetic Granular Graft (Q59802867) (← links)
- New clinical application of three-dimensional-printed polycaprolactone/β-tricalcium phosphate scaffold as an alternative to allograft bone for limb-sparing surgery in a dog with distal radial osteosarcoma (Q64226689) (← links)
- 3D-printed titanium implant-coated polydopamine for repairing femoral condyle defects in rabbits (Q90242507) (← links)
- Dipyridamole-loaded 3D-printed bioceramic scaffolds stimulate pediatric bone regeneration in vivo without disruption of craniofacial growth through facial maturity (Q91718063) (← links)
- Enhanced release of calcium phosphate additives from bioresorbable orthopaedic devices using irradiation technology is non-beneficial in a rabbit model: An animal study (Q92188155) (← links)
- Bone Regeneration Using a Three-Dimensional Hexahedron Channeled BCP Block Combined with Bone Morphogenic Protein-2 in Rat Calvarial Defects (Q92343560) (← links)
- Reconstruction of Complex Maxillary Defects Using Patient-specific 3D-printed Biodegradable Scaffolds (Q92432595) (← links)
- Synthetic Blocks for Bone Regeneration: A Systematic Review and Meta-Analysis (Q92988794) (← links)
- 3D printing of multilayered scaffolds for rotator cuff tendon regeneration (Q94673515) (← links)