Self-tapping of magnesium screws in hard bone may be a challenge due to the limited torsional strength of magnesium alloys in comparison with titanium. To avoid screw failure upon implantation, the new concept of a rivet-screw was applied to a WE43 magnesium alloy. Hollow cylinders with threads on the outside were expanded inside drill holes of minipig mandibles. During the expansion with a hexagonal mandrel, the threads engaged the surrounding bone and the inside of the screw transformed into a hexagonal screw drive to allow further screwing in or out of the implant. The in vivo degradation of the magnesium implants and the performance of the used coating were studied in a human standard-sized animal model. Four magnesium alloy rivet-screw...
Copyright © 2015 UlrichThormann et al. This is an open access article distributed under the Creative...
PURPOSE This study compared the degradation profile, safety, and efficacy of bioresorbable magnes...
Background: Mesoporous coatings enable incorporation of functional substances and sustainedly releas...
Biodegradable magnesium plate/screw osteosynthesis systems were implanted on the frontal bone of adu...
Two miniature pig models to assess safety and performance of degradable osteosynthesis implants are ...
Nowadays, the most commonly used fixation systems are non-resorbable, but new resorbable magnesium a...
Magnesium alloys are candidates for resorbable material in bone fixation. However, the degradation a...
Screws for ligament reconstruction are nowadays mostly made of poly-L-lactide (PLLA). However, magne...
The development of resorbable osteofixation materials that degrade upon substitution by regenerated ...
Background: Magnesium (Mg) is one of the most promising materials for human use in surgery due to ma...
The purpose of the present study was to evaluate the mechanical strength and the absorption rate of ...
Metallic biomaterials are widely used in maxillofacial surgery. While titanium is presumed to be the...
Permanent implants made of titanium or its alloys are the gold standard in many orthopedic and traum...
© 2015 Acta Materialia Inc. The biocompatibility and the degradation behavior of the LAE442 magnesiu...
The aim of this study was to investigate the differences in the in vivo degradation behaviour of mag...
Copyright © 2015 UlrichThormann et al. This is an open access article distributed under the Creative...
PURPOSE This study compared the degradation profile, safety, and efficacy of bioresorbable magnes...
Background: Mesoporous coatings enable incorporation of functional substances and sustainedly releas...
Biodegradable magnesium plate/screw osteosynthesis systems were implanted on the frontal bone of adu...
Two miniature pig models to assess safety and performance of degradable osteosynthesis implants are ...
Nowadays, the most commonly used fixation systems are non-resorbable, but new resorbable magnesium a...
Magnesium alloys are candidates for resorbable material in bone fixation. However, the degradation a...
Screws for ligament reconstruction are nowadays mostly made of poly-L-lactide (PLLA). However, magne...
The development of resorbable osteofixation materials that degrade upon substitution by regenerated ...
Background: Magnesium (Mg) is one of the most promising materials for human use in surgery due to ma...
The purpose of the present study was to evaluate the mechanical strength and the absorption rate of ...
Metallic biomaterials are widely used in maxillofacial surgery. While titanium is presumed to be the...
Permanent implants made of titanium or its alloys are the gold standard in many orthopedic and traum...
© 2015 Acta Materialia Inc. The biocompatibility and the degradation behavior of the LAE442 magnesiu...
The aim of this study was to investigate the differences in the in vivo degradation behaviour of mag...
Copyright © 2015 UlrichThormann et al. This is an open access article distributed under the Creative...
PURPOSE This study compared the degradation profile, safety, and efficacy of bioresorbable magnes...
Background: Mesoporous coatings enable incorporation of functional substances and sustainedly releas...