Keyphrases
Cell Response
100%
Mechanical Properties
100%
Fibrin
100%
Mechanical Cells
100%
Binding Peptide
100%
Degradation Profile
33%
Mechanical Property Degradation
33%
Controllable Degradation
33%
Treatment Options
16%
Clinical Treatment
16%
Cell Proliferation
16%
Biomaterials
16%
Biocompatibility
16%
Regenerative Medicine
16%
Wound Healing
16%
Tissue Regeneration
16%
Cell-based
16%
Mechanical Behavior
16%
Tissue Engineering
16%
Fibrin Fibers
16%
Fibrinogen
16%
Degradation Rate
16%
Cell Toxicity
16%
Fibrin Hydrogel
16%
Supporting Cells
16%
Clot Formation
16%
Fiber Thickness
16%
Nonlinear Elasticity
16%
Young's Modulus
16%
No Toxicity
16%
Chemical Properties
16%
Mechanical Stiffness
16%
Cyclic Peptide
16%
Non-covalent
16%
Degradation Process
16%
Supramolecular Interactions
16%
Shrinkage Methods
16%
Modulus Stiffness
16%
Therapy Treatment
16%
Still Face
16%
Tunable Mechanical Properties
16%
INIS
assessments
100%
peptides
100%
fibrin
100%
hydrogels
100%
mechanical properties
100%
tissues
22%
fibers
22%
toxicity
22%
therapy
11%
applications
11%
availability
11%
modulation
11%
stiffness
11%
production
11%
medicine
11%
thickness
11%
cross-linking
11%
interactions
11%
nonlinear problems
11%
healing
11%
regeneration
11%
elasticity
11%
engineering
11%
cell proliferation
11%
biological materials
11%
wounds
11%
gels
11%
fabrication
11%
fibrinogen
11%
shrinkage
11%
young modulus
11%
chemical properties
11%
Engineering
Hydrogel
100%
Cell Response
100%
Binding Peptide
100%
Tissue Regeneration
22%
Regenerative Medicine
11%
Young's Modulus
11%
Degradation Process
11%
Shrinkage Process
11%
Mechanical Property
11%
Degradation Rate
11%
Material Science
Hydrogel
100%
Biomaterial
11%
Mechanical Property
11%
Biocompatibility
11%
Young's Modulus
11%
Cell Proliferation
11%