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Preparation and characterization of PLA/PCL/HA composite scaffolds using indirect 3D printing for bone tissue engineering

Materials Science and Engineering C · 2019 · Vol. 104 · pp. 109960–109960
Shadi HassanajiliAli Karami-PourAhmad OryanTahereh Talaei‐Khozani
Bone Tissue Engineering MaterialsDental materials and restorationsFacial Trauma and Fracture ManagementMaterials sciencePolylactic acidPolycaprolactoneScanning electron microscopePorosityComposite materialComposite numberMicrostructureCompressive strengthScaffold

MeSH terms

Biocompatible MaterialsBone and BonesCell AdhesionCell SurvivalHumansMaterials TestingPolyestersPorosityDurapatiteTissue EngineeringCell Line, TumorCell ProliferationTissue ScaffoldsElastic ModulusPrinting, Three-Dimensional

Funding

  • Iran National Science Foundation
  • Shiraz University of Medical Sciences
Citations
329
FWCI
14.10
field-weighted impact
References
46
Percentile
99%
vs. same field & year
Citations per year
References
Biomimetic materials for tissue engineering
Advanced Drug Delivery Reviews · 2007 · 1,292 citations
A novel hydroxyapatite –Hardystonite nanocomposite ceramic
Ceramics International · 2015 · 271 citations
Synthetic biodegradable polymers as orthopedic devices
Biomaterials · 2000 · 2,673 citations
Porous scaffold design for tissue engineering
Nature Materials · 2005 · 3,868 citations
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Preparation and characterization of PLA/PCL/HA composite scaffolds using indirect 3D printing for bone tissue engineering · Scinovex