Scaffolds are structures used for tissue engineering. Their size, shape and geometry are customized according to the patient pathology. A deep knowledge of their properties is essential for a correct design. This work aims at studying the size effect on scaffold-like structures manufactured by Fused Deposition Modeling, analyzing the relationship between the basic mechanical properties and the structure size. Compression tests of porous specimens, made of polylactide, with different heights have been done and, while the elastic modulus appears to be strongly affected by the size of the 3D specimens, the strength has shown to be intrinsic to the structure
BackgroundScaffolds are of great importance in tissue engineering applications as they provide a mec...
With an increasingly ageing population, challenges within healthcare in the coming decades are expec...
In tissue engineering, scaffolds can be obtained by means of 3D printing. Different structures are u...
A method is proposed in which the geometric properties of 3D scaffolds with application in tissue en...
Porous structure of bone scaffold plays an important role in tissue engineering applications. The na...
Biomedical scaffolds with a high degree of porosity are known to facilitate the growth of healthy fu...
Continuous porous structures of biodegradable polylactic acid (PLA) were fabricated using a rapid pr...
3D printed scaffolds can be used, for example, in medical applications for simulating body tissues o...
Detailed knowledge of the porous architecture of synthetic scaffolds for tissue engineering, their m...
The aim of this paper is to model and to compare the results of the mechanical characterization, car...
3D printed scaffolds can be used, for example, in medical applications for simulating body tissues o...
peer reviewedThis work applies a “product-oriented engineering” approach to the development of porou...
Degradable porous polymeric structures are attractive candidates for biological tissue scaffolds, an...
The suitability of a scaffold for tissue engineering is determined by a number of interrelated facto...
One of the main issues in tissue engineering is the fabrication of scaffolds that closely mimic the ...
BackgroundScaffolds are of great importance in tissue engineering applications as they provide a mec...
With an increasingly ageing population, challenges within healthcare in the coming decades are expec...
In tissue engineering, scaffolds can be obtained by means of 3D printing. Different structures are u...
A method is proposed in which the geometric properties of 3D scaffolds with application in tissue en...
Porous structure of bone scaffold plays an important role in tissue engineering applications. The na...
Biomedical scaffolds with a high degree of porosity are known to facilitate the growth of healthy fu...
Continuous porous structures of biodegradable polylactic acid (PLA) were fabricated using a rapid pr...
3D printed scaffolds can be used, for example, in medical applications for simulating body tissues o...
Detailed knowledge of the porous architecture of synthetic scaffolds for tissue engineering, their m...
The aim of this paper is to model and to compare the results of the mechanical characterization, car...
3D printed scaffolds can be used, for example, in medical applications for simulating body tissues o...
peer reviewedThis work applies a “product-oriented engineering” approach to the development of porou...
Degradable porous polymeric structures are attractive candidates for biological tissue scaffolds, an...
The suitability of a scaffold for tissue engineering is determined by a number of interrelated facto...
One of the main issues in tissue engineering is the fabrication of scaffolds that closely mimic the ...
BackgroundScaffolds are of great importance in tissue engineering applications as they provide a mec...
With an increasingly ageing population, challenges within healthcare in the coming decades are expec...
In tissue engineering, scaffolds can be obtained by means of 3D printing. Different structures are u...