In this work, various three-dimensional (3D) scaffolds were produced via microstereolithography (m-SLA) and 3D printing (3DP) techniques. This work demonstrates the advantages and disadvantages of these two different rapid prototyping methods for production of bone scaffolds. Compared to 3DP, SLA provides for smaller feature production with better dimensional resolution and accuracy. The permeability of these structures was evaluated experimentally and via numerical simulation utilizing a newly derived Kozeny– Carman based equation for intrinsic permeability. Both experimental and simulation studies took account of porosity percentage, pore size, and pore geometry. Porosity content was varied from 30% to 70%, pore size from 0.34 mm to 3 mm,...
Additive manufacturing plays a major role in medical science. One of the applications is the develop...
The potential to grow cells in vitro could drastically expand the horizons of regenerative medicine,...
Tissue engineering scaffolds have been used for curing bone defects. Poly(propylene fumarate) (PPF) ...
In this work, various three-dimensional (3D) scaffolds were produced via microstereolithography (m-S...
Fluid flow through a bone scaffold structure is an important factor in its ability to build up a liv...
Scaffold permeability is a key parameter combining geometrical features such as pore shape, size and...
Bone scaffolds are widely used as one of the main bone substitute materials. However, many bone scaf...
Scaffolds for bone tissue engineering are porous structures that serve as support for cellular growt...
Bone scaffolds are widely used as one of the main bone substitute materials. However, many bone scaf...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
Introduction: Natural cancellous bone consists of inhomogeneous structures in which the porosity or ...
Successful bone tissue engineering depends on the scaffold's ability to allow nutrient diffusion to ...
In designing porous scaffolds, permeability is essential to consider as a function of cell migration...
AbstractAdditive manufacturing methods such as three-dimensional printing (3DP) show a great potenti...
Additive manufacturing plays a major role in medical science. One of the applications is the develop...
The potential to grow cells in vitro could drastically expand the horizons of regenerative medicine,...
Tissue engineering scaffolds have been used for curing bone defects. Poly(propylene fumarate) (PPF) ...
In this work, various three-dimensional (3D) scaffolds were produced via microstereolithography (m-S...
Fluid flow through a bone scaffold structure is an important factor in its ability to build up a liv...
Scaffold permeability is a key parameter combining geometrical features such as pore shape, size and...
Bone scaffolds are widely used as one of the main bone substitute materials. However, many bone scaf...
Scaffolds for bone tissue engineering are porous structures that serve as support for cellular growt...
Bone scaffolds are widely used as one of the main bone substitute materials. However, many bone scaf...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
The geometry of bone scaffolds plays a crucial role in bone tissue regeneration. This architecture, ...
Introduction: Natural cancellous bone consists of inhomogeneous structures in which the porosity or ...
Successful bone tissue engineering depends on the scaffold's ability to allow nutrient diffusion to ...
In designing porous scaffolds, permeability is essential to consider as a function of cell migration...
AbstractAdditive manufacturing methods such as three-dimensional printing (3DP) show a great potenti...
Additive manufacturing plays a major role in medical science. One of the applications is the develop...
The potential to grow cells in vitro could drastically expand the horizons of regenerative medicine,...
Tissue engineering scaffolds have been used for curing bone defects. Poly(propylene fumarate) (PPF) ...