The work presented in this manuscript concerns the production of scaffolds based polylactides for connective tissues and bone regeneration by adapting green technology. The aim of this thesis was to correlate the influence of different process parameters on the morphological structures and properties of the scaffold generated. On one hand, we studied effect of the blending of hyaluronic acid and polylactides to enhance the surface adhesion properties of scaffolds. Our results relate to an increase in surface properties but a decrease of equivalent pore size and porosity after foaming scaffolds by supercritical process. Calcium Tri-Phosphate On other hand, we studied the effect of the blending of calcium tri-phosphates and polylactides as bo...
The results of experimental investigations into foaming process of poly(ε-caprolactone) using superc...
This paper presents the results of a study of the production of porous biodegradable composite mater...
In this study, polylactic acid (PLA)‐based composite scaffolds with calcium carbonate (CaCO3) and be...
The work presented in this manuscript concerns the production of scaffolds based polylactides for co...
Le travail présenté dans ce manuscrit concerne la fabrication de biomatériaux poreux à base d’acide ...
AbstractThe porous structure of a scaffold determines the ability of bone to regenerate within this ...
A novel supercritical CO2 foaming technique was used to fabricate scaffolds of controllable morpholo...
Supercritical carbon dioxide processing of poly-l-lactide (PLLA)/hydroxyapatite (nHA) nanocomposites...
© 2020 by the authors.The fabrication of porous materials for tissue engineering applications in a s...
AbstractThe porous structure of a scaffold determines the ability of bone to regenerate within this ...
The present work forms part of an ongoing effort at the Laboratory of Polymer and Composite Technolo...
The aim of this study was the design of novel biodegradable porous scaffolds for bone tissue enginee...
The aim of this study was the design of novel biodegradable porous scaffolds for bone tissue enginee...
The aim of this study was the design of novel biodegradable porous scaffolds for bone tissue enginee...
The aim of this study was the design of novel biodegradable porous scaffolds for bone tissue enginee...
The results of experimental investigations into foaming process of poly(ε-caprolactone) using superc...
This paper presents the results of a study of the production of porous biodegradable composite mater...
In this study, polylactic acid (PLA)‐based composite scaffolds with calcium carbonate (CaCO3) and be...
The work presented in this manuscript concerns the production of scaffolds based polylactides for co...
Le travail présenté dans ce manuscrit concerne la fabrication de biomatériaux poreux à base d’acide ...
AbstractThe porous structure of a scaffold determines the ability of bone to regenerate within this ...
A novel supercritical CO2 foaming technique was used to fabricate scaffolds of controllable morpholo...
Supercritical carbon dioxide processing of poly-l-lactide (PLLA)/hydroxyapatite (nHA) nanocomposites...
© 2020 by the authors.The fabrication of porous materials for tissue engineering applications in a s...
AbstractThe porous structure of a scaffold determines the ability of bone to regenerate within this ...
The present work forms part of an ongoing effort at the Laboratory of Polymer and Composite Technolo...
The aim of this study was the design of novel biodegradable porous scaffolds for bone tissue enginee...
The aim of this study was the design of novel biodegradable porous scaffolds for bone tissue enginee...
The aim of this study was the design of novel biodegradable porous scaffolds for bone tissue enginee...
The aim of this study was the design of novel biodegradable porous scaffolds for bone tissue enginee...
The results of experimental investigations into foaming process of poly(ε-caprolactone) using superc...
This paper presents the results of a study of the production of porous biodegradable composite mater...
In this study, polylactic acid (PLA)‐based composite scaffolds with calcium carbonate (CaCO3) and be...