A method is proposed in which the geometric properties of 3D scaffolds with application in tissue engineering can be tailored: porosity, pore size, and interconnection throat size. The architecture of the fabricated scaffolds is analyzed by scanning electron microscopy. The mechanical properties of these structures are discussed on the basis of compression stress–strain measurements. Moreover, the mechanical properties of the scaffolds are estimated by means of finite element modeling (FEM) in which the compression stress–strain test is simulated on an ideal structure based on the crystalline face centered cubic system. The elastic properties of the constructs are explained on the basis of the FEM model that supports the main mechanical con...
Recent studies have shown that mechanical stimulation, in the form of fluid perfusion and mechanical...
The desired mechanical properties of porous tissue engineering scaffolds may differ depending on the...
Tissue engineering can be understand as the development of functional substitute to replace missing ...
A method is proposed in which the geometric properties of 3D scaffolds with application in tissue en...
Detailed knowledge of the porous architecture of synthetic scaffolds for tissue engineering, their m...
Regenerating the load-bearing tissues requires 3D scaffolds that balance the temporary mechanical fu...
Tissue engineering scaffolds have been used for curing bone defects. Poly(propylene fumarate) (PPF) ...
One of the key issues in fabricating tissue engineering scaffold is to have control over the structu...
Porous structure of bone scaffold plays an important role in tissue engineering applications. The na...
AbstractTissue engineering represents a new field aiming at developing biological substitutes to res...
The suitability of a scaffold for tissue engineering is determined by a number of interrelated facto...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
Scaffolds are structures used for tissue engineering. Their size, shape and geometry are customized ...
The growing prevalence of osteoporosis and other bone related disorders emphasise on the importance ...
Degradable porous polymeric structures are attractive candidates for biological tissue scaffolds, an...
Recent studies have shown that mechanical stimulation, in the form of fluid perfusion and mechanical...
The desired mechanical properties of porous tissue engineering scaffolds may differ depending on the...
Tissue engineering can be understand as the development of functional substitute to replace missing ...
A method is proposed in which the geometric properties of 3D scaffolds with application in tissue en...
Detailed knowledge of the porous architecture of synthetic scaffolds for tissue engineering, their m...
Regenerating the load-bearing tissues requires 3D scaffolds that balance the temporary mechanical fu...
Tissue engineering scaffolds have been used for curing bone defects. Poly(propylene fumarate) (PPF) ...
One of the key issues in fabricating tissue engineering scaffold is to have control over the structu...
Porous structure of bone scaffold plays an important role in tissue engineering applications. The na...
AbstractTissue engineering represents a new field aiming at developing biological substitutes to res...
The suitability of a scaffold for tissue engineering is determined by a number of interrelated facto...
The technologies employed for the preparation of conventional tissue engineering scaffolds restrict ...
Scaffolds are structures used for tissue engineering. Their size, shape and geometry are customized ...
The growing prevalence of osteoporosis and other bone related disorders emphasise on the importance ...
Degradable porous polymeric structures are attractive candidates for biological tissue scaffolds, an...
Recent studies have shown that mechanical stimulation, in the form of fluid perfusion and mechanical...
The desired mechanical properties of porous tissue engineering scaffolds may differ depending on the...
Tissue engineering can be understand as the development of functional substitute to replace missing ...