Substrate grain structure and topography play major roles in mediating cell and bacteria activities. Severe plastic deformation techniques, known as efficient metal-forming and grain refining processes, provide the treated material with novel mechanical properties and can be adopted to modify nanoscale surface characteristics, possibly affecting interactions with the biological environment. This in vitro study evaluates the capability of severe shot peening, based on severe plastic deformation, to modulate the interactions of nanocrystallized metallic biomaterials with cells and bacteria. The treated 316L stainless steel surfaces were first investigated in terms of surface topography, grain size, hardness, wettability and residual stresses....
A great challenge of today’s implant development is to construct a surface that promotes tissue inte...
The influence of the ultrafine crystallinity of commercial purity grade 2 (as-received) titanium and...
Biofilm related bacterial infection is one of the primary causes of implant failure. Limiting bacter...
Hospital-acquired infections can cause serious complications and are a severe problem because of the...
Item does not contain fulltextAIMS: Surface modifications at the nanometric scale may promote protei...
Nanostructured metals are a promising class of biomaterials for application in orthopedics to improv...
Cell−substrate interface is known to control the cell response and subsequent cell functions. Among...
Biomaterials that have been newly implanted inside the body are the substratum targets for a "race f...
Biomaterials that have been newly implanted inside the body are the substratum targets for a “...
Bacterial adhesion on stainless steel may cause problems such as microbially induced corrosion or re...
Bacterial contaminations are one of the major causes for implant failure and cause significant reduc...
Commonly used severe plastic deformation (SPD) methods are suitable for fabrication of bulk nano and...
Several properties of bio-inspired surfaces like chemical composition, surface topography, surface h...
Ultrasonic shot peening (USSP) is an effective method for surface modification of metallic materials...
It is imperative to understand and systematically compare the initial interactions between bacteria ...
A great challenge of today’s implant development is to construct a surface that promotes tissue inte...
The influence of the ultrafine crystallinity of commercial purity grade 2 (as-received) titanium and...
Biofilm related bacterial infection is one of the primary causes of implant failure. Limiting bacter...
Hospital-acquired infections can cause serious complications and are a severe problem because of the...
Item does not contain fulltextAIMS: Surface modifications at the nanometric scale may promote protei...
Nanostructured metals are a promising class of biomaterials for application in orthopedics to improv...
Cell−substrate interface is known to control the cell response and subsequent cell functions. Among...
Biomaterials that have been newly implanted inside the body are the substratum targets for a "race f...
Biomaterials that have been newly implanted inside the body are the substratum targets for a “...
Bacterial adhesion on stainless steel may cause problems such as microbially induced corrosion or re...
Bacterial contaminations are one of the major causes for implant failure and cause significant reduc...
Commonly used severe plastic deformation (SPD) methods are suitable for fabrication of bulk nano and...
Several properties of bio-inspired surfaces like chemical composition, surface topography, surface h...
Ultrasonic shot peening (USSP) is an effective method for surface modification of metallic materials...
It is imperative to understand and systematically compare the initial interactions between bacteria ...
A great challenge of today’s implant development is to construct a surface that promotes tissue inte...
The influence of the ultrafine crystallinity of commercial purity grade 2 (as-received) titanium and...
Biofilm related bacterial infection is one of the primary causes of implant failure. Limiting bacter...