Understanding the effects that sterilization methods have on the surface of a biomaterial is a prerequisite for clinical deployment. Sterilization causes alterations in a material's surface chemistry and surface structures that can result in significant changes to its cellular response. Here we compare surfaces resulting from the application of the industry standard autoclave sterilisation to that of surfaces resulting from the use of low‐pressure Argon glow discharge within a novel gas permeable packaging method in order to explore a potential new biomaterial sterilisation method. Material surfaces are assessed by applying secondary electron hyperspectral imaging (SEHI). SEHI is a novel low‐voltage scanning electron microscopy based charac...
WOS: 000325869900001This study focuses on the utilization of glow discharge technique for the reduct...
Atmospheric-pressure plasma jets can be used to modify surfaces in a spatially-defined manner. Opera...
Ion implantation, a common technology in semiconductor processing, has been applied to biomaterials ...
Bioabsorbable polymers are increasingly being used in tissue engineering strategies. Despite the kno...
Plasma of Argon was demonstrated to improve protein and cell adhesion on implant surface. On the oth...
The sterilization process is essential for the use of biomaterials in the human body in order to avo...
An effective sterilisation technique that maintains structure integrity, mechanical properties, and ...
Low temperature plasma-based processes are used extensively in many modern technologies. It is thus ...
The aim of this work was to develop and characterise a plasma source, which could be used to modify ...
AbstractSterilization with ethylene oxide (EO) and gas plasma (GP) are well-known methods applied to...
Scaffolds intended for use in tissue engineering applications often invoke a foreign body response u...
Plasma treatment of surfaces as a sterilisation or decontamination method is a promising approach to...
Plasma-based surface modification is recognized as an effective way to activate biomaterial surfaces...
Plasma surface modification is a versatile and economic surface-modification technique that alters t...
Biological sterilization represents one of the most exciting applications of atmospheric pressure gl...
WOS: 000325869900001This study focuses on the utilization of glow discharge technique for the reduct...
Atmospheric-pressure plasma jets can be used to modify surfaces in a spatially-defined manner. Opera...
Ion implantation, a common technology in semiconductor processing, has been applied to biomaterials ...
Bioabsorbable polymers are increasingly being used in tissue engineering strategies. Despite the kno...
Plasma of Argon was demonstrated to improve protein and cell adhesion on implant surface. On the oth...
The sterilization process is essential for the use of biomaterials in the human body in order to avo...
An effective sterilisation technique that maintains structure integrity, mechanical properties, and ...
Low temperature plasma-based processes are used extensively in many modern technologies. It is thus ...
The aim of this work was to develop and characterise a plasma source, which could be used to modify ...
AbstractSterilization with ethylene oxide (EO) and gas plasma (GP) are well-known methods applied to...
Scaffolds intended for use in tissue engineering applications often invoke a foreign body response u...
Plasma treatment of surfaces as a sterilisation or decontamination method is a promising approach to...
Plasma-based surface modification is recognized as an effective way to activate biomaterial surfaces...
Plasma surface modification is a versatile and economic surface-modification technique that alters t...
Biological sterilization represents one of the most exciting applications of atmospheric pressure gl...
WOS: 000325869900001This study focuses on the utilization of glow discharge technique for the reduct...
Atmospheric-pressure plasma jets can be used to modify surfaces in a spatially-defined manner. Opera...
Ion implantation, a common technology in semiconductor processing, has been applied to biomaterials ...