Keyphrases
UV Exposure
100%
Material Properties
100%
Experimental Design Method
100%
Chitosan Hydrogel
100%
Methacrylated chitosan
100%
Hydrogel Properties
100%
Stiffness
50%
Application-oriented
50%
Statistical Methods
50%
Processing Factor
50%
Mechanical Properties
50%
Viscosity
50%
Biological Tissue
50%
Tissue Engineering Applications
50%
Physical Properties
50%
Shear Rate
50%
Chitosan
50%
Methacrylic Monomers
50%
Radical Polymerization
50%
Photoinitiator
50%
Preparation Parameters
50%
Photo-crosslinkable
50%
Shear Thinning
50%
Biopolymers
50%
Highly Tunable
50%
Concentration Rate
50%
Intrinsic Variability
50%
Hydrogel Stiffness
50%
Temperature Rate
50%
Extrusion-based 3D Printing
50%
Physical Crosslinking
50%
Synthetic Hydrogels
50%
Compression Modulus
50%
Response Surface Methodology
50%
Specific Applications
50%
Crosslinking Methods
50%
Biopolymer Hydrogels
50%
INIS
design
100%
modeling
100%
hydrogels
100%
applications
33%
solutions
33%
concentration
33%
tissues
22%
stiffness
22%
shear
22%
range
11%
processing
11%
cross-linking
11%
morphology
11%
engineers
11%
surfaces
11%
engineering
11%
polymerization
11%
compression
11%
3d printing
11%
mechanical properties
11%
extrusion
11%
viscosity
11%
physical properties
11%
Engineering
Design of Experiments
100%
Hydrogel
100%
Phase Composition
100%
Empirical Model
22%
Biological Tissue
11%
Engineering Application
11%
Fluid Viscosity
11%
Free Radical Polymerization
11%
Methacrylic
11%
Shear Rate
11%
Shear Thinning
11%
Biopolymer
11%
Three Dimensional Printing
11%
Tissue Regeneration
11%
Physical Crosslinking
11%
Response Surface Method
11%
Material Science
Hydrogel
100%
Materials Property
100%
Phase Composition
100%
Three Dimensional Printing
11%
Free Radical Polymerization
11%
Physical Property
11%
Biopolymer
11%
Surface (Surface Science)
11%
Chemical Engineering
Hydrogel
100%
Chitosan
100%
Free Radical Polymerization
11%