Keyphrases
Bioactive Glass Scaffolds
54%
Bioactive Glass
46%
In Vitro Dissolution
40%
Silicate
37%
Phosphate Glass
36%
Persistent Luminescence
36%
Borosilicate Bioactive Glass
36%
Glass Composition
33%
Bone Regeneration
31%
Pre-incubation
27%
Ion Release
26%
Hydroxyapatite
25%
Fluorine Loss
22%
Bioactive
22%
Dissolution Rate
22%
Crystallization
20%
Oxyfluoride
18%
Direct Doping Method
18%
Growth Behavior
18%
Hybrid Materials
18%
Glass Based
18%
Nucleation Behavior
18%
Fluorine-containing
18%
Material-based
18%
Oxyfluorophosphate Glasses
18%
Er3+
18%
In Vitro Biocompatibility
18%
Glass-ceramics
18%
Er3+-doped
18%
Bone Tissue Regeneration
18%
Gelatin
18%
Bioactive Glass Nanoparticles
18%
Bone Differentiation
18%
Boron Substitution
18%
In Vivo Evaluation
18%
Borosilicate
18%
Borosilicate Glass
17%
Simulated Body Fluid
16%
Fluorite
15%
Transparent Glass-ceramics
15%
Human Adipose-derived Stem Cells (hADSCs)
14%
Burn-off
12%
Melting Temperature
12%
3D Scaffold
12%
Spectroscopic Properties
12%
Fluorine Content
12%
Oxyfluoride Glass
12%
Glass System
12%
Porosity
12%
Remelting
12%
Material Science
Bioglass
100%
Borosilicate
54%
Phase Composition
51%
Glass Composition
39%
Silicate
38%
Luminescence
36%
Body Fluid
24%
Glass Ceramics
21%
Boron
21%
Nucleation
18%
Hybrid Material
18%
Heat Treatment
18%
Composite Material
18%
Stem Cell
16%
Borosilicate Glass
16%
Microparticle
13%
Scanning Electron Microscopy
12%
Magnesium Oxide
9%
Plating
9%
Energy-Dispersive X-Ray Spectroscopy
9%
Elemental Analysis
9%
Drawing Process
9%
Electron Microscopy
9%
Electron Probe Microanalyzer
9%
Thermal Property
9%
Glass Melting
9%
Attenuated Total Reflectance-Fourier Transform Infrared Spectroscopy
9%
Cell Growth
6%
Materials Design
6%
Cell Death
6%
Biomaterial
6%
Silicate Glass
6%
Engineering
Phase Composition
54%
Dissolution Rate
30%
Ion Release
25%
Hydroxymethyl
18%
Bone Tissue Engineering
18%
Bone Tissue Regeneration
18%
Mineralisation
18%
Bioactivity
18%
Borosilicate Glass
15%
Derived Stem Cell
12%
Silicon Dioxide
12%
Sintering
12%
Dense Layer
9%
Static Cell
9%
Molar Ratio
9%
Bone Application
9%
Material Dissolution
9%
Porosity
7%
Crystallizes
6%
Powder Form
6%
Controlled Release
6%
Stem Cell
6%