Metallic biomaterials such as stainless steel and Co-based alloys are corrosion resistant and possess excellent mechanical properties and hence can be used in load-bearing implants for human tissue repair. However, these materials are bioinert and some of them can cause concerns over their long-term implantation as they release cytotoxic metal ions to surrounding body tissues. Forming a bioactive coating on implantable metals combats these problems and makes these materials very attractive for medical applications. This paper gives an overview of our research work over the past decade on using a number of surface modification techniques (plasma spraying, spraying-and-sintering, ion beam assisted deposition, biomimetic deposition, etc.) to i...
A major cause of the high risk of infection following implantations is that the biomaterial implante...
NiTi metallic biomaterials have a broad spectrum of clinical applications from heart stents to ortho...
NiTi metallic biomaterials have a broad spectrum of clinical applications from heart stents to ortho...
Among the various biomedical materials, metals represent the benchmark for success due to a combinat...
Corrosion prevention in biomaterials has become crucial particularly to overcome inflammation and al...
Metallic materials such as stainless steel (SS), titanium (Ti), magnesium (Mg) alloys, andcobalt-chr...
Metallic materials such as stainless steel (SS), titanium (Ti), magnesium (Mg) alloys, andcobalt-chr...
For successful implantation, biomaterials need excellent corrosion and wear resistance in the body e...
Titanium and titanium alloys are widely used in biomedical devices and components, especially as har...
Ti is widely used as a material for orthopedic implants. As rapid and effective osseointegration is ...
Titanium and its alloys have excellent properties and are promising biomaterial in medical engineeri...
Medical implants have undoubtedly made an indelible mark on our world during the last century. More ...
Abstract. Chemical stability, mechanical behaviour and biocompatibility in body fluids and tissues a...
A major cause of the high risk of infection following implantations is that the biomaterial implante...
Plasma surface modification is a versatile and economic surface-modification technique that alters t...
A major cause of the high risk of infection following implantations is that the biomaterial implante...
NiTi metallic biomaterials have a broad spectrum of clinical applications from heart stents to ortho...
NiTi metallic biomaterials have a broad spectrum of clinical applications from heart stents to ortho...
Among the various biomedical materials, metals represent the benchmark for success due to a combinat...
Corrosion prevention in biomaterials has become crucial particularly to overcome inflammation and al...
Metallic materials such as stainless steel (SS), titanium (Ti), magnesium (Mg) alloys, andcobalt-chr...
Metallic materials such as stainless steel (SS), titanium (Ti), magnesium (Mg) alloys, andcobalt-chr...
For successful implantation, biomaterials need excellent corrosion and wear resistance in the body e...
Titanium and titanium alloys are widely used in biomedical devices and components, especially as har...
Ti is widely used as a material for orthopedic implants. As rapid and effective osseointegration is ...
Titanium and its alloys have excellent properties and are promising biomaterial in medical engineeri...
Medical implants have undoubtedly made an indelible mark on our world during the last century. More ...
Abstract. Chemical stability, mechanical behaviour and biocompatibility in body fluids and tissues a...
A major cause of the high risk of infection following implantations is that the biomaterial implante...
Plasma surface modification is a versatile and economic surface-modification technique that alters t...
A major cause of the high risk of infection following implantations is that the biomaterial implante...
NiTi metallic biomaterials have a broad spectrum of clinical applications from heart stents to ortho...
NiTi metallic biomaterials have a broad spectrum of clinical applications from heart stents to ortho...