In former studies the magnesium alloy LAE442 showed promising in vivo degradation behavior and biocompatibility. However, reproducibility might be enhanced by replacement of the rare earth composition metal "E" by only a single rare earth element. Therefore, it was the aim of this study to examine whether the substitution of "E" by neodymium ("Nd") had an influence on the in vivo degradation rate. LANd442 implants were inserted into rabbit tibiae and rabbits were euthanized after 4, 8, 13 and 26 weeks postoperatively. In vivo μCT was performed to evaluate the in vivo implant degradation behaviour by calculation of implant volume, density true 3-D thickness and corrosion rates. Additionally, weight loss, type of corrosion and mechanical stab...
Aim of the study was to characterise the influence of heat treatment on the degradation behaviour an...
© 2015 Acta Materialia Inc. The biocompatibility and the degradation behavior of the LAE442 magnesiu...
Background: Most studies on biodegradable magnesium implants published recently use magnesium-calciu...
In former studies the magnesium alloy LAE442 showed promising in vivo degradation behavior and bioco...
In former studies the magnesium alloy LAE442 showed promising in vivo degradation behavior and bioco...
The aim of this study was to investigate the differences in the in vivo degradation behaviour of mag...
In magnesium alloys, the components used modify the alloy properties. For magnesium implants in cont...
In magnesium alloys, the components used modify the alloy properties. For magnesium implants in cont...
The magnesium alloy LAE442 emerged as a possible bioresorbable bone substitute over a decade ago. In...
Aim of the study was to characterise the influence of heat treatment on the degradation behaviour an...
© 2015 Acta Materialia Inc. The biocompatibility and the degradation behavior of the LAE442 magnesiu...
Background: Most studies on biodegradable magnesium implants published recently use magnesium-calciu...
In former studies the magnesium alloy LAE442 showed promising in vivo degradation behavior and bioco...
In former studies the magnesium alloy LAE442 showed promising in vivo degradation behavior and bioco...
The aim of this study was to investigate the differences in the in vivo degradation behaviour of mag...
In magnesium alloys, the components used modify the alloy properties. For magnesium implants in cont...
In magnesium alloys, the components used modify the alloy properties. For magnesium implants in cont...
The magnesium alloy LAE442 emerged as a possible bioresorbable bone substitute over a decade ago. In...
Aim of the study was to characterise the influence of heat treatment on the degradation behaviour an...
© 2015 Acta Materialia Inc. The biocompatibility and the degradation behavior of the LAE442 magnesiu...
Background: Most studies on biodegradable magnesium implants published recently use magnesium-calciu...