Statistical data have consistently shown that implant loosening is a significant causative factor for revision surgeries. Both in vivo and in vitro studies have confirmed the positive influences of microgrooved titanium implant surfaces on improving orthopedic titanium implants compared with a smooth titanium surface. Complete cell-groove adhesion is a prerequisite for rapid and robust osseointegration. For the first time, this work has quantified the influence of the titanium groove width at the subcellular scale (5-20 μm) on osteoblast responses, using titanium-coated microgrooved silicon wafer specimens (surface roughness, Ra = ∼1.5 nm), which can avoid the latent influence of variations in surface roughness from the use of normal titani...
The physical characteristics of an implant surface can determine and/or facilitate osseointegration ...
Background: Titanium implants that have been grit-blasted and acid-etched to produce a roughmicrotop...
There is general agreement that rough surfaces improve both biologic and biomechanical responses to ...
Statistical data have consistently shown that implant loosening is a significant causative factor fo...
Objective: Topography, chemistry, and energy of titanium (Ti) implants alter cell response through v...
The purpose of this study was to define the surface properties of prepared titanium (Ti) disks, whic...
Implant longevity is desired for all bone replacements and fixatives. Titanium (Ti) implants fail du...
The purpose of the present study was to determine in vitro the effects of different surface topograp...
There is general agreement that rough surfaces improve both biologic and biomechanical responses to ...
Biomaterials refer to synthetic materials used to replace part of a living system or to function in ...
Microgrooved surfaces have been used extensively to influence cell contact guidance. Guiding cell gr...
The high performance of bone implants depends on the positive response of osteoblasts to the surface...
To test nanosize surface patterning for application as implant material, a suitable titanium composi...
Objectives: The aim of this study was to evaluate the effect of differently treated titanium implant...
Mini-implants are used to improve orthodontic anchorage, but optimal composition and surface charact...
The physical characteristics of an implant surface can determine and/or facilitate osseointegration ...
Background: Titanium implants that have been grit-blasted and acid-etched to produce a roughmicrotop...
There is general agreement that rough surfaces improve both biologic and biomechanical responses to ...
Statistical data have consistently shown that implant loosening is a significant causative factor fo...
Objective: Topography, chemistry, and energy of titanium (Ti) implants alter cell response through v...
The purpose of this study was to define the surface properties of prepared titanium (Ti) disks, whic...
Implant longevity is desired for all bone replacements and fixatives. Titanium (Ti) implants fail du...
The purpose of the present study was to determine in vitro the effects of different surface topograp...
There is general agreement that rough surfaces improve both biologic and biomechanical responses to ...
Biomaterials refer to synthetic materials used to replace part of a living system or to function in ...
Microgrooved surfaces have been used extensively to influence cell contact guidance. Guiding cell gr...
The high performance of bone implants depends on the positive response of osteoblasts to the surface...
To test nanosize surface patterning for application as implant material, a suitable titanium composi...
Objectives: The aim of this study was to evaluate the effect of differently treated titanium implant...
Mini-implants are used to improve orthodontic anchorage, but optimal composition and surface charact...
The physical characteristics of an implant surface can determine and/or facilitate osseointegration ...
Background: Titanium implants that have been grit-blasted and acid-etched to produce a roughmicrotop...
There is general agreement that rough surfaces improve both biologic and biomechanical responses to ...