Aim of the study was to characterise the influence of heat treatment on the degradation behaviour and stability of degradable magnesium based implants. For this purpose two groups (untreated/ heat treated) of LAE442 pins were separately analysed in an in vitro and in vivo study. The corrosion behaviour was evaluated during 8 weeks degradation in SBF (in vitro) and 48 weeks degradation intramedullary in the rabbit tibia (in vivo). The analyses were made by using μ-computed tomography and three-point-bending tests. Heat treatment led to altered mechanical and corrosion properties of LAE442.While the initial stability declined significantly a reduction of the degradation rate over either in vitro and in vivo evaluation period is determined. If...
© 2015 Acta Materialia Inc. The biocompatibility and the degradation behavior of the LAE442 magnesiu...
The magnesium alloy LAE442 emerged as a possible bioresorbable bone substitute over a decade ago. In...
Magnesium alloys have been investigated in different fields of medicine and represent a promising bi...
Background: Magnesium alloys are recommended as a potential material for osteosynthesis. It is known...
The aim of this study was to investigate the differences in the in vivo degradation behaviour of mag...
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...
Biodegradable bone implants have the ability to be resorbed and removed from the human body after th...
In this paper the performance of a magnesium based implant system is analyzed. A special emphasis is...
In magnesium alloys, the components used modify the alloy properties. For magnesium implants in cont...
AbstractIn this paper the performance of a magnesium based implant system is analyzed. A special emp...
In magnesium alloys, the components used modify the alloy properties. For magnesium implants in cont...
Biodegradable magnesium (Mg) alloys exhibit great potential for use as temporary structures in tissu...
© 2015 Acta Materialia Inc. The biocompatibility and the degradation behavior of the LAE442 magnesiu...
The magnesium alloy LAE442 emerged as a possible bioresorbable bone substitute over a decade ago. In...
Magnesium alloys have been investigated in different fields of medicine and represent a promising bi...
Background: Magnesium alloys are recommended as a potential material for osteosynthesis. It is known...
The aim of this study was to investigate the differences in the in vivo degradation behaviour of mag...
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...
Biodegradable bone implants have the ability to be resorbed and removed from the human body after th...
In this paper the performance of a magnesium based implant system is analyzed. A special emphasis is...
In magnesium alloys, the components used modify the alloy properties. For magnesium implants in cont...
AbstractIn this paper the performance of a magnesium based implant system is analyzed. A special emp...
In magnesium alloys, the components used modify the alloy properties. For magnesium implants in cont...
Biodegradable magnesium (Mg) alloys exhibit great potential for use as temporary structures in tissu...
© 2015 Acta Materialia Inc. The biocompatibility and the degradation behavior of the LAE442 magnesiu...
The magnesium alloy LAE442 emerged as a possible bioresorbable bone substitute over a decade ago. In...
Magnesium alloys have been investigated in different fields of medicine and represent a promising bi...