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Keyphrases
Hydroxyapatite
100%
Nanocomposite Scaffold
100%
In Vivo Characterization
100%
Pentaerythritol Tetraacrylate
100%
Trimethylolpropane
100%
Polycaprolactone
45%
Adipose-derived Mesenchymal Stem Cells (ADMSCs)
27%
Cell Culture
18%
High Mechanical Strength
18%
Osteogenesis
18%
Foam Composite
18%
Thermo
9%
In Situ
9%
Living Cells
9%
Pore Volume
9%
Porosity
9%
Biocompatibility
9%
Alkaline Phosphatase
9%
Copolymer
9%
Precipitation Method
9%
Cytotoxicity
9%
Amines
9%
Hydroxyapatite Composite
9%
Porous Scaffold
9%
Increased Yield
9%
Surgical Site
9%
Osteocalcin
9%
Michael Addition
9%
Yield Strength
9%
Interconnected Pores
9%
In Vitro Biocompatibility
9%
Serious Adverse Effects
9%
Hydroxyapatite Scaffold
9%
Osteoinductive
9%
Posterior Lumbar Spinal Surgery
9%
Bone Void
9%
Biocompatibility Testing
9%
Fusion Model
9%
Bone Defect Repair
9%
Void Filling
9%
Osteogenic Material
9%
Thiol-acrylate
9%
Biochemistry, Genetics and Molecular Biology
Stromal Cell
100%
Bone Development
66%
Thiol
33%
Porosity
33%
Ossification
33%
Mineralization
33%
Cytotoxicity
33%
Alkaline Phosphatase
33%
Osteocalcin
33%
Michael Addition
33%
Pore Volume
33%
Human Experiment
33%
Material Science
Mechanical Strength
100%
Nanocomposites
100%
Pore Volume
50%
Copolymer
50%
Phosphatase
50%
Biocompatibility
50%
Yield Stress
50%
Medicine and Dentistry
In Vitro
100%
Hydroxylapatite
100%
Polycaprolactone
38%
Adipose Tissue
23%
Mesenchymal Stem Cell
23%
Bone Development
15%
Adverse Event
7%
Thiol
7%
Mineralization
7%
Alkaline Phosphatase
7%
Ossification
7%
Cytotoxicity
7%
Copolymer
7%
Surgical Site
7%
Biocompatibility
7%
Spinal Fusion
7%
Osteocalcin
7%