Keyphrases
Fibrin
100%
Polymeric Hydrogels
100%
Skeletal muscle Tissue Engineering
100%
Myogenesis
75%
Volumetric muscle Loss
75%
Collagen
50%
Mechanical Properties
50%
Agarose
50%
Myogenic Potential
50%
Collagen-chitosan
50%
Immunohistochemistry
25%
Regeneration
25%
Satellite Cells
25%
Skeletal muscle
25%
Myosin Heavy Chain (MyHC)
25%
Injury Model
25%
Grafting from
25%
Water Absorption
25%
Injury Type
25%
Collagen I
25%
Myotubes
25%
Myogenin
25%
Rheological Properties
25%
Scaffold Materials
25%
Mechanical Integrity
25%
Polymeric Materials
25%
Skeletal muscle Development
25%
Myogenic Capacity
25%
Tensile Characteristics
25%
Alginate
25%
Superelasticity
25%
Degradation Stability
25%
Chitosan-alginate
25%
Medicine and Dentistry
Tissue Regeneration
100%
Skeletal Muscle
100%
Muscle Development
80%
In Vitro
40%
Agarose
40%
Chitosan
40%
Alginic Acid
40%
Heavy Meromyosin
20%
Immunohistochemistry
20%
Satellite Cell
20%
Myotube
20%
Myogenin
20%
Messenger RNA
20%
Engineering
Hydrogel
100%
Skeletal Muscle Tissue Engineering
100%
Grafts
66%
Myogenic Potential
66%
Alginate
66%
Tensiles
33%
Absorption Rate
33%
Max
33%
Pharmacology, Toxicology and Pharmaceutical Science
Chitosan
100%
Agarose
100%
Alginic Acid
100%
Myosin Heavy Chain
50%
Myogenin
50%
Messenger RNA
50%
Chemical Engineering
Hydrogel
100%
Alginate
100%
Chitosan
100%