A perfectly plastic von Mises model is proposed to study the elastic-plastic behavior of a porous hierarchical scaffold used for bone regeneration. The proposed constitutive model is implemented in a finite element (FE) routine to obtain the stress-strain relationship of a uniaxially loaded cube of the scaffold, whose constituent is considered to be composed of cortical bone. The results agree well with experimental data for uniaxial loading case of a cancellous bone. We find that the unhomogenized stress distribution results in different mechanical properties from but still comparable to our previous theory. The scaffold is a promising candidate for bone regeneration
Mechanical stimulation, in the form of fluid perfusion or mechanical strain, enhances osteogenic dif...
A model of a mixture of bone tissue and bio-resorbable material with voids was used to numerically a...
Abstract: In the field of tissue engineering, there is significant subsidence of the porous design s...
AbstractThe factors that conduct to an optimal scaffold performance haven’t been fully determined an...
Macroscopic mechanical properties of porous PHBV bone TE scaffolds have been well studied. However, ...
International audienceA computational model of mechanoregulation is proposed to predict bone tissue ...
A model of a mixture of bone tissue and bioresorbable material with voids was used to numerically an...
Recent studies have shown that mechanical stimulation, in the form of fluid perfusion and mechanical...
International audienceA model of a mixture of bone tissue and bio-resorbable material with voids was...
Three-dimensional (3D) porous tissue scaffolds combined with bioactive molecules and cells offer key...
Undegradable scaffolds, as a key element in bone tissue engineering, prevail in the present clinical...
THESIS 8825Mechano-regulatory theories are indispensable for developing and understanding how mechan...
We consider a simple one-dimensional time-dependent model for bone regeneration in the presence of a...
The growing prevalence of osteoporosis and other bone related disorders emphasise on the importance ...
Biological and mechanical functions are sometimes two conflicting characteristics of bone tissue sca...
Mechanical stimulation, in the form of fluid perfusion or mechanical strain, enhances osteogenic dif...
A model of a mixture of bone tissue and bio-resorbable material with voids was used to numerically a...
Abstract: In the field of tissue engineering, there is significant subsidence of the porous design s...
AbstractThe factors that conduct to an optimal scaffold performance haven’t been fully determined an...
Macroscopic mechanical properties of porous PHBV bone TE scaffolds have been well studied. However, ...
International audienceA computational model of mechanoregulation is proposed to predict bone tissue ...
A model of a mixture of bone tissue and bioresorbable material with voids was used to numerically an...
Recent studies have shown that mechanical stimulation, in the form of fluid perfusion and mechanical...
International audienceA model of a mixture of bone tissue and bio-resorbable material with voids was...
Three-dimensional (3D) porous tissue scaffolds combined with bioactive molecules and cells offer key...
Undegradable scaffolds, as a key element in bone tissue engineering, prevail in the present clinical...
THESIS 8825Mechano-regulatory theories are indispensable for developing and understanding how mechan...
We consider a simple one-dimensional time-dependent model for bone regeneration in the presence of a...
The growing prevalence of osteoporosis and other bone related disorders emphasise on the importance ...
Biological and mechanical functions are sometimes two conflicting characteristics of bone tissue sca...
Mechanical stimulation, in the form of fluid perfusion or mechanical strain, enhances osteogenic dif...
A model of a mixture of bone tissue and bio-resorbable material with voids was used to numerically a...
Abstract: In the field of tissue engineering, there is significant subsidence of the porous design s...