Macroscopic mechanical properties of porous PHBV bone TE scaffolds have been well studied. However, their mechanical behavior at microscopic level has yet to be explored. In this study, the micro-mechanical behavior of a PHBV bone scaffold under compression was investigated using a numerical method that combines micro-computed tomography (μ-CT) and finite element analysis (FEA). It was found that the use of a linear-elastic model resulted in an overestimation of the stiffness of the scaffold, whereas a more realistic estimation of the scaffold's deformation behavior was obtained by utilizing a bilinear material model. The onset of plastic deformation occurred in the very early stage of loading resulting in significantly reduced stiffness of...
Recent studies have shown that mechanical stimulation, in the form of fluid perfusion and mechanical...
One of the main biomechanical causes for aseptic failure of orthopaedic implants is the stress shiel...
Scaffold design remains a main challenge in tissue engineering due to the large number of requiremen...
Porous structures are used in many industrial applications such as thermal insulation, packaging and...
Porous structure of bone scaffold plays an important role in tissue engineering applications. The na...
International audienceA computational model of mechanoregulation is proposed to predict bone tissue ...
The growing prevalence of osteoporosis and other bone related disorders emphasise on the importance ...
A perfectly plastic von Mises model is proposed to study the elastic-plastic behavior of a porous hi...
Detailed knowledge of the porous architecture of synthetic scaffolds for tissue engineering, their m...
The goal of this project is to measure the mechanical properties of a porous polymeric scaffold. For...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Biological and mechanical functions are sometimes two conflicting characteristics of bone tissue sca...
A method is proposed in which the geometric properties of 3D scaffolds with application in tissue en...
Tissue engineering scaffolds have been used for curing bone defects. Poly(propylene fumarate) (PPF) ...
Recent studies have shown that mechanical stimulation, in the form of fluid perfusion and mechanical...
One of the main biomechanical causes for aseptic failure of orthopaedic implants is the stress shiel...
Scaffold design remains a main challenge in tissue engineering due to the large number of requiremen...
Porous structures are used in many industrial applications such as thermal insulation, packaging and...
Porous structure of bone scaffold plays an important role in tissue engineering applications. The na...
International audienceA computational model of mechanoregulation is proposed to predict bone tissue ...
The growing prevalence of osteoporosis and other bone related disorders emphasise on the importance ...
A perfectly plastic von Mises model is proposed to study the elastic-plastic behavior of a porous hi...
Detailed knowledge of the porous architecture of synthetic scaffolds for tissue engineering, their m...
The goal of this project is to measure the mechanical properties of a porous polymeric scaffold. For...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Under load-bearing conditions metal-based foam scaffolds are currently the preferred choice as bone/...
Biological and mechanical functions are sometimes two conflicting characteristics of bone tissue sca...
A method is proposed in which the geometric properties of 3D scaffolds with application in tissue en...
Tissue engineering scaffolds have been used for curing bone defects. Poly(propylene fumarate) (PPF) ...
Recent studies have shown that mechanical stimulation, in the form of fluid perfusion and mechanical...
One of the main biomechanical causes for aseptic failure of orthopaedic implants is the stress shiel...
Scaffold design remains a main challenge in tissue engineering due to the large number of requiremen...