In the field of bioabsorbable composites for biomedical applications, extrusion has been employed as a method to prepare homogeneous blends of polymeric matrices with bioactive ceramic fillers. In this work, the suitability of processing poly-L-lactic acid/Magnesium (PLLA/Mg) composites by hot extrusion has been assessed by a systematic characterization of PLLA/Mg composites containing different amounts of Mg particles up to 7 wt%. The results show that extrusion causes a reduction of almost 20% in the viscosity average molecular weight of PLLA, which further decreases with increasing Mg content. Extrusion gave always rise to a homogeneous distribution of Mg particles within the PLLA matrix. This composite processing was not compromised by ...
During recent years, Mg reinforced polylactic acid (PLA) composites have emerged as potential biocom...
Despite the recent development in PLA and PLGA based medical devices, there are still needs to furth...
Poly (lactic acid) (PLA)/bioactive composites are emerging as new biomaterials since it is possible ...
Mención Internacional en el título de doctorThis doctoral thesis deals with the development of radic...
The aim of this paper is to investigate the evolution of a matrix-filler interface during the proces...
The effect of Mg particles on the thermal, chemical, physical, and primarily mechanical properties o...
<p>This study presents the role of the magnesium phenylmalonate (MgPA) in the thermal behavior, flui...
Absorbable medical devices must be developed in order to have an appropriate degradation rate in agr...
Design and Methodology: The mixture of poly-lactic acid pellets and Mg particles was extruded twice,...
This work deals with the mechanical characterization by depth-sensing indentation (DSI) of PLLA and ...
A deeper knowledge on the degradation pattern of a biodegradable material is required before conside...
Mención Internacional en el título de doctorDuring recent years, PLA / Mg composite materials have e...
The main objective of this research is to prove the viability of obtaining magnesium (Mg) filled pol...
Biodegradable polymers play a crucial role in the medical device field, with a broad range of applic...
Poly(lactide-co- glycolide) (PLGA) is a versatile biomaterial and is desirable for use in tissue eng...
During recent years, Mg reinforced polylactic acid (PLA) composites have emerged as potential biocom...
Despite the recent development in PLA and PLGA based medical devices, there are still needs to furth...
Poly (lactic acid) (PLA)/bioactive composites are emerging as new biomaterials since it is possible ...
Mención Internacional en el título de doctorThis doctoral thesis deals with the development of radic...
The aim of this paper is to investigate the evolution of a matrix-filler interface during the proces...
The effect of Mg particles on the thermal, chemical, physical, and primarily mechanical properties o...
<p>This study presents the role of the magnesium phenylmalonate (MgPA) in the thermal behavior, flui...
Absorbable medical devices must be developed in order to have an appropriate degradation rate in agr...
Design and Methodology: The mixture of poly-lactic acid pellets and Mg particles was extruded twice,...
This work deals with the mechanical characterization by depth-sensing indentation (DSI) of PLLA and ...
A deeper knowledge on the degradation pattern of a biodegradable material is required before conside...
Mención Internacional en el título de doctorDuring recent years, PLA / Mg composite materials have e...
The main objective of this research is to prove the viability of obtaining magnesium (Mg) filled pol...
Biodegradable polymers play a crucial role in the medical device field, with a broad range of applic...
Poly(lactide-co- glycolide) (PLGA) is a versatile biomaterial and is desirable for use in tissue eng...
During recent years, Mg reinforced polylactic acid (PLA) composites have emerged as potential biocom...
Despite the recent development in PLA and PLGA based medical devices, there are still needs to furth...
Poly (lactic acid) (PLA)/bioactive composites are emerging as new biomaterials since it is possible ...