INIS
size
100%
bones
100%
modeling
100%
additives
100%
manufacturing
100%
oxides
100%
ethylene
100%
finite element method
100%
apatites
100%
butylenes
100%
simulation
75%
validation
50%
volume
50%
implants
50%
regeneration
50%
testing
25%
levels
25%
patients
25%
values
25%
tissues
25%
design
25%
geometry
25%
accuracy
25%
reliability
25%
performance
25%
topology
25%
experimental data
25%
architecture
25%
dimensions
25%
tolerance
25%
shape
25%
sensitivity analysis
25%
copolymers
25%
fillers
25%
bone tissues
25%
fabrication
25%
Keyphrases
Additive Manufacturing
100%
Poly(ethylene oxide)
100%
Terephthalate
100%
Polybutylene Terephthalate
100%
Hydroxyapatite
100%
Finite Element Modeling
100%
Size Effect
100%
Bone Scaffold
100%
Material Properties
66%
Cm(III)
66%
Clinically Significant
33%
Uncertainty Sources
33%
Sensitivity Analysis
33%
Tolerance Limits
33%
Copolymer
33%
Experimental Validation
33%
Tissue Regeneration
33%
Scaffold Architecture
33%
Additive Manufacturing Process
33%
Bone Tissue Regeneration
33%
Customization
33%
Relevant Dimension
33%
Geometric Properties
33%
Reliability Level
33%
Direct Testing
33%
Test Validity
33%
Bulk Material
33%
Patient-specific Implant
33%
Nano-hydroxyapatite (n-HA)
33%
Finite Element Mesh
33%
Simulation Test
33%
Pore Geometry
33%
Filler Composites
33%
Microscopic Pore
33%
Printing Accuracy
33%
Engineering
Additive Manufacturing
100%
Size Effect
100%
Fem Model
100%
Implant
66%
Fits and Tolerances
33%
Nodes
33%
Patient Specific
33%
Macroscale
33%
Bone Tissue Regeneration
33%
Bulk Material
33%
Additive Manufacturing Process
33%
Good Match
33%
Customisation
33%
Pore Geometry
33%
Design Factor
33%
Finite Element Mesh
33%
Tissue Regeneration
33%
Material Science
Finite Element Modeling
100%
Polyethylene Glycol
100%
Three Dimensional Printing
100%
Materials Property
50%
Copolymer
25%
Finite Element Method
25%