Tissue engineering involves three-dimensional scaffolds to support cell culture activities and provide mechanical support. One of the potential scaffolds used in tissue engineering is an electrospun scaffold consisting fibres ranging from nano- to micrometer scales deposited on layer stack. The finite element models have been used to study the in-plane deformation of two-dimensional single layer fibrous networks and without considers out-of-plane deformation. While the existing study focuses on two-dimensional study, the out-of-plane deformation of layer structured of electrospun scaffolds through the scaffolds thickness has not been studied. In this study, three-dimensional finite element model was constructed to investigate the fracture o...
AbstractNatural fibrous tissues exhibit excellent mechanical properties and functional behavior. The...
Random fibrous networks exist in both natural biological and engineering materials. While the nonlin...
Remarkable mechanical performance of biological tissues is explained by a hierarchical fibrous struc...
Tissue engineering involves three-dimensional scaffolds to support cell culture activities and provi...
Electrospun scaffolds mimic the microstructure of structural collagenous tissues and have been widel...
Electrospun scaffolds mimic the microstructure of structural collagenous tissues and have been widel...
Electrospun scaffolds mimic the microstructure of structural collagenous tissues and have been widel...
Fibrous materials is one of the potential scaffolds used for tissue engineered constructs. One of pr...
Fibrous materials is one of the potential scaffolds used for tissue engineered constructs. One of pr...
textMany important biomaterials are composed of multiple layers of networked fibers. A prime exampl...
textMany important biomaterials are composed of multiple layers of networked fibers. A prime exampl...
Fibrous materials is one of the potential scaffolds used for tissue engineered constructs. One of pr...
Polymeric fibrous scaffolds have been considered as replacements for load-bearing soft tissues, beca...
Electrospun materials, due to their unique properties, have found many applications in the biomedica...
Polymeric fibrous scaffolds have been considered as replacements for load-bearing soft tissues, beca...
AbstractNatural fibrous tissues exhibit excellent mechanical properties and functional behavior. The...
Random fibrous networks exist in both natural biological and engineering materials. While the nonlin...
Remarkable mechanical performance of biological tissues is explained by a hierarchical fibrous struc...
Tissue engineering involves three-dimensional scaffolds to support cell culture activities and provi...
Electrospun scaffolds mimic the microstructure of structural collagenous tissues and have been widel...
Electrospun scaffolds mimic the microstructure of structural collagenous tissues and have been widel...
Electrospun scaffolds mimic the microstructure of structural collagenous tissues and have been widel...
Fibrous materials is one of the potential scaffolds used for tissue engineered constructs. One of pr...
Fibrous materials is one of the potential scaffolds used for tissue engineered constructs. One of pr...
textMany important biomaterials are composed of multiple layers of networked fibers. A prime exampl...
textMany important biomaterials are composed of multiple layers of networked fibers. A prime exampl...
Fibrous materials is one of the potential scaffolds used for tissue engineered constructs. One of pr...
Polymeric fibrous scaffolds have been considered as replacements for load-bearing soft tissues, beca...
Electrospun materials, due to their unique properties, have found many applications in the biomedica...
Polymeric fibrous scaffolds have been considered as replacements for load-bearing soft tissues, beca...
AbstractNatural fibrous tissues exhibit excellent mechanical properties and functional behavior. The...
Random fibrous networks exist in both natural biological and engineering materials. While the nonlin...
Remarkable mechanical performance of biological tissues is explained by a hierarchical fibrous struc...