Fe–Mn-based degradable biomaterials (DBMs) are promising candidates for temporary implants such as cardiovascular stents and bone fixation devices. Identifying their mechanical properties and biocompatibility is essential to determine the feasibility of Fe–Mn-based alloys as DBMs. This study presents the tensile properties of two powder metallurgical processed Fe–Mn-based alloys (Fe–28Mn and Fe–28Mn-3Si, in mass percent) as a function of immersion time in simulated body fluid (SBF). In addition, short-term cytotoxicity testing was performed to evaluate the in vitro biocompatibility of the sintered Fe–Mn-based alloys. The results reveal that an increase in immersion duration deteriorated the tensile properties of both the binary and ternary ...
This work investigates the influence of Ag (1 wt%) on the mechanical properties, in vitro and in viv...
AbstractBioaccessibility in vitro tests measure the solubility of materials in surrogate biofluids. ...
Biomaterials have been used for more than a century in the human body to improve body functions and ...
Fe–Mn-based degradable biomaterials (DBMs) are promising candidates for temporary implants such as c...
Metal Injection Moulding (MIM) is known as a viable process for series production of complex parts f...
The addition of noble elements such as Ag was shown as a successful method to accelerate the corrosi...
Bioabsorbable materials are fairly new and proper alloys for implantation in the body have not yet b...
Fe30Mn6Si alloy was investigated as a potential degradable biomaterial, with the recently well-devel...
Pure iron was determined to be a valid candidate material for biodegradable metallic stents in recen...
Bioabsorbable metals are increasingly attracting attention for their potential use as materials for ...
Degradable, transient orthopaedic implants have been proposed for years, with the aim to replace per...
Early in vivo animal test on pure iron coronary stent had proved that it is a promising candidate ma...
The authors evaluated the biodegradability and biocompatibility of an alloy of iron and manganese in...
e-based materials have increasingly been considered for the development of biodegradable cardiovascu...
Up to now biodegradable bone implants with the ability of bearing high loads for the temporary repla...
This work investigates the influence of Ag (1 wt%) on the mechanical properties, in vitro and in viv...
AbstractBioaccessibility in vitro tests measure the solubility of materials in surrogate biofluids. ...
Biomaterials have been used for more than a century in the human body to improve body functions and ...
Fe–Mn-based degradable biomaterials (DBMs) are promising candidates for temporary implants such as c...
Metal Injection Moulding (MIM) is known as a viable process for series production of complex parts f...
The addition of noble elements such as Ag was shown as a successful method to accelerate the corrosi...
Bioabsorbable materials are fairly new and proper alloys for implantation in the body have not yet b...
Fe30Mn6Si alloy was investigated as a potential degradable biomaterial, with the recently well-devel...
Pure iron was determined to be a valid candidate material for biodegradable metallic stents in recen...
Bioabsorbable metals are increasingly attracting attention for their potential use as materials for ...
Degradable, transient orthopaedic implants have been proposed for years, with the aim to replace per...
Early in vivo animal test on pure iron coronary stent had proved that it is a promising candidate ma...
The authors evaluated the biodegradability and biocompatibility of an alloy of iron and manganese in...
e-based materials have increasingly been considered for the development of biodegradable cardiovascu...
Up to now biodegradable bone implants with the ability of bearing high loads for the temporary repla...
This work investigates the influence of Ag (1 wt%) on the mechanical properties, in vitro and in viv...
AbstractBioaccessibility in vitro tests measure the solubility of materials in surrogate biofluids. ...
Biomaterials have been used for more than a century in the human body to improve body functions and ...