In the development of artificial cancellous bones, two major factors need to be considered: the integrity of the overall structure and its permeability. Whilst there have been many studies analysing the mechanical properties of artificial and natural cancellous bones, permeability studies, especially those using numerical simulation, are scarce. In this study, idealised cancellous bones were simulated from the morphological indices of natural cancellous bone. Three different orientations were also simulated to compare the anisotropic nature of the structure. Computational fluid dynamics methods were used to analyse fluid flow through the cancellous structures. A constant mass flow rate was used to determine the intrinsic permeability of the...
There are many diseases which cause detrimental changes in the trabecular structure of cancellous bo...
Tissue engineering scaffolds have been used for curing bone defects. Poly(propylene fumarate) (PPF) ...
Brief Cancellous bone is a biphasic tissue consisting of a porous solid matrix and biological fluid...
Artificial bone is a suitable alternative to autografts and allografts, however their use is still l...
The permeability of blood in artificial cancellous bone is affected by certain morphological aspects...
Introduction: Natural cancellous bone consists of inhomogeneous structures in which the porosity or ...
In designing porous scaffolds, permeability is essential to consider as a function of cell migration...
Fluid flow through a bone scaffold structure is an important factor in its ability to build up a liv...
Highlights - A representative volume element (RVE) size of 2 ×2 × 2 mm3 is sufficient to represent b...
Scaffold permeability is a key parameter combining geometrical features such as pore shape, size and...
10.1080/10255842.2010.539563Computer Methods in Biomechanics and Biomedical Engineering154417-42
In this work, various three-dimensional (3D) scaffolds were produced via microstereolithography (m-S...
In this paper, a comprehensive framework is proposed to estimate the anisotropic permeability matrix...
Proceedings of the 3rd IASTED International Conference on Biomedical Engineering 2005290-29
Commercial synthetic open-cell foams are an alternative to human cadaveric bone to simulate in vitro...
There are many diseases which cause detrimental changes in the trabecular structure of cancellous bo...
Tissue engineering scaffolds have been used for curing bone defects. Poly(propylene fumarate) (PPF) ...
Brief Cancellous bone is a biphasic tissue consisting of a porous solid matrix and biological fluid...
Artificial bone is a suitable alternative to autografts and allografts, however their use is still l...
The permeability of blood in artificial cancellous bone is affected by certain morphological aspects...
Introduction: Natural cancellous bone consists of inhomogeneous structures in which the porosity or ...
In designing porous scaffolds, permeability is essential to consider as a function of cell migration...
Fluid flow through a bone scaffold structure is an important factor in its ability to build up a liv...
Highlights - A representative volume element (RVE) size of 2 ×2 × 2 mm3 is sufficient to represent b...
Scaffold permeability is a key parameter combining geometrical features such as pore shape, size and...
10.1080/10255842.2010.539563Computer Methods in Biomechanics and Biomedical Engineering154417-42
In this work, various three-dimensional (3D) scaffolds were produced via microstereolithography (m-S...
In this paper, a comprehensive framework is proposed to estimate the anisotropic permeability matrix...
Proceedings of the 3rd IASTED International Conference on Biomedical Engineering 2005290-29
Commercial synthetic open-cell foams are an alternative to human cadaveric bone to simulate in vitro...
There are many diseases which cause detrimental changes in the trabecular structure of cancellous bo...
Tissue engineering scaffolds have been used for curing bone defects. Poly(propylene fumarate) (PPF) ...
Brief Cancellous bone is a biphasic tissue consisting of a porous solid matrix and biological fluid...