Porosity is known to play a pivotal role in dictating the functional properties of biomedical scaffolds, with special reference to mechanical performance. While compressive strength is relatively easy to be experimentally assessed even for brittle ceramic and glass foams, elastic properties are much more difficult to be reliably estimated. Therefore, describing and, hence, predicting the relationship between porosity and elastic properties based only on the constitutive parameters of the solid material is still a challenge. In this work, we quantitatively compare the predictive capability of a set of different models in describing, over a wide range of porosity, the elastic modulus (7 models), shear modulus (3 models) and Poisson's ratio (7...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
The desired mechanical properties of porous tissue engineering scaffolds may differ depending on the...
AbstractPorosity is known to play a pivotal role in dictating the functional properties of biomedica...
Porosity is known to play a pivotal role in dictating the functional properties of biomedical scaffo...
A model describing the relationship between tensile strength and total porosity in bri...
Since the discovery of 45S5 Bioglass® by Larry Hench, bioactive glasses have been widely studied as ...
Porosity is a key feature in dictating the overall performance of biomedical scaffolds, with special...
The mechanical behaviour of implantable scaffolds is of relevant interest in all applications which ...
This study developed highly porous degradable composites as potential scaffolds for bone tissue engi...
There is a need to develop synthetic scaffolds to repair large defects in load-bearing bones. Bioact...
There is a need to develop synthetic scaffolds for repairing large defects in load-bearing bones. Ou...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
The desired mechanical properties of porous tissue engineering scaffolds may differ depending on the...
AbstractPorosity is known to play a pivotal role in dictating the functional properties of biomedica...
Porosity is known to play a pivotal role in dictating the functional properties of biomedical scaffo...
A model describing the relationship between tensile strength and total porosity in bri...
Since the discovery of 45S5 Bioglass® by Larry Hench, bioactive glasses have been widely studied as ...
Porosity is a key feature in dictating the overall performance of biomedical scaffolds, with special...
The mechanical behaviour of implantable scaffolds is of relevant interest in all applications which ...
This study developed highly porous degradable composites as potential scaffolds for bone tissue engi...
There is a need to develop synthetic scaffolds to repair large defects in load-bearing bones. Bioact...
There is a need to develop synthetic scaffolds for repairing large defects in load-bearing bones. Ou...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
Large bone defects are challenging to heal, and often require an osteoconductive and stable support ...
The desired mechanical properties of porous tissue engineering scaffolds may differ depending on the...