Sutures that biodegrade and dissolve over a period of several weeks are in great demand to stitch wounds and surgical incisions. These new materials are receiving increased acceptance across surgical procedures whenever permanent sutures and long‐term care are not needed. Unfortunately, both inflammatory responses and adverse local tissue reactions in the close‐to‐stitching environment are often reported for biodegradable polymeric sutures currently used by the medical community. While bioabsorbable metals are predominantly investigated and tested for vascular stent or osteosynthesis applications, they also appear to possess adequate biocompatibility, mechanical properties, and corrosion stability to replace biodegradable polymeric sutures...
Biomaterials have been used for more than a century in the human body to improve body functions and ...
Non-degradable steel and titanium implants used to replace defects of the locomotor system or fabric...
SummaryMagnesium (Mg)-based biodegradable materials are promising candidates for the new generation ...
Zinc is identified as a promising biodegradable metal along with magnesium and iron. In the last 5 y...
Owing to significant advantages of bioactivity and biodegradability, biodegradable metallic material...
Owing to significant advantages of bioactivity and biodegradability, biodegradable metallic material...
Since the twentieth century, the development of artificial implants needed in surgical restorative h...
The search for biodegradable metals with mechanical properties equal or higher to those of currently...
Surgical treatment for injuries to soft connective tissues are estimated at about 800,000 cases each...
AbstractSurgical staples made of pure titanium and titanium alloys are widely used in gastrointestin...
Vascular clips, made from inert materials such as titanium or stainless steel, are currently used fo...
Medical implants made of biodegradable materials could be advantageous for temporary applications, s...
During the last decade, translational research on biodegradable metallic materials has shown the fea...
Bioabsorbable metal stents are being developed to mitigate the long-term side effects associated wit...
Scaffolds have been utilized in tissue regeneration to facilitate the formation and maturation of ne...
Biomaterials have been used for more than a century in the human body to improve body functions and ...
Non-degradable steel and titanium implants used to replace defects of the locomotor system or fabric...
SummaryMagnesium (Mg)-based biodegradable materials are promising candidates for the new generation ...
Zinc is identified as a promising biodegradable metal along with magnesium and iron. In the last 5 y...
Owing to significant advantages of bioactivity and biodegradability, biodegradable metallic material...
Owing to significant advantages of bioactivity and biodegradability, biodegradable metallic material...
Since the twentieth century, the development of artificial implants needed in surgical restorative h...
The search for biodegradable metals with mechanical properties equal or higher to those of currently...
Surgical treatment for injuries to soft connective tissues are estimated at about 800,000 cases each...
AbstractSurgical staples made of pure titanium and titanium alloys are widely used in gastrointestin...
Vascular clips, made from inert materials such as titanium or stainless steel, are currently used fo...
Medical implants made of biodegradable materials could be advantageous for temporary applications, s...
During the last decade, translational research on biodegradable metallic materials has shown the fea...
Bioabsorbable metal stents are being developed to mitigate the long-term side effects associated wit...
Scaffolds have been utilized in tissue regeneration to facilitate the formation and maturation of ne...
Biomaterials have been used for more than a century in the human body to improve body functions and ...
Non-degradable steel and titanium implants used to replace defects of the locomotor system or fabric...
SummaryMagnesium (Mg)-based biodegradable materials are promising candidates for the new generation ...