Purpose. The aim of this scanning electron microscope (SEM) study was to investigate the interface between the bone and a novel nanostructured calcium-incorporated dental implant surface in humans. Methods. A dental implant (Anyridge®, Megagen Implant Co., Gyeongbuk, South Korea) with a nanostructured calcium-incorporated surface (Xpeed®, Megagen Implant Co., Gyeongbuk, South Korea), which had been placed a month earlier in a fully healed site of the posterior maxilla (#14) of a 48-year-old female patient, and which had been subjected to immediate functional loading, was removed after a traumatic injury. Despite the violent trauma that caused mobilization of the fixture, its surface appeared to be covered by a firmly attached, intact tiss...
Until now, the chemical bonding between titanium and bone has been examined only through a few mecha...
The aim of this study was to analyze the degree of mineralization around nine clinically stable tita...
Aim: Alterations in implant surfaces can affect periimplant bone formation and shorten the healing t...
Purpose. The aim of this scanning electron microscope (SEM) study was to investigate the interface b...
Purpose. The aim of this scanning electron microscope (SEM) study was to investigate the interface b...
Osseointegration of dental implants occurs on a hierarchy of length scales down to the atomic level....
The recent application of electron tomography to the study of biomaterial interfaces with bone has b...
Background: Implant surface topography is a key element in achieving osseointegration. Nanostructure...
Recent studies have shown that direct laser metal sintering (DLMS) produces structures with complex ...
Bone response is one of the key determining factors in the overall success of biomaterials intended ...
Success in implant dentistry also comes from the implant macrodesign and nanostructure of its surfac...
The aim of the present study was a light and scanning electron microscopy (SEM) evaluation of the pe...
Introduction Replacing lost teeth with dental implants is today a reliable treatment method associat...
The ultrastructural and biomechanical properties of the bone-implant interface are important factors...
Until now, the chemical bonding between titanium and bone has been examined only through a few mecha...
The aim of this study was to analyze the degree of mineralization around nine clinically stable tita...
Aim: Alterations in implant surfaces can affect periimplant bone formation and shorten the healing t...
Purpose. The aim of this scanning electron microscope (SEM) study was to investigate the interface b...
Purpose. The aim of this scanning electron microscope (SEM) study was to investigate the interface b...
Osseointegration of dental implants occurs on a hierarchy of length scales down to the atomic level....
The recent application of electron tomography to the study of biomaterial interfaces with bone has b...
Background: Implant surface topography is a key element in achieving osseointegration. Nanostructure...
Recent studies have shown that direct laser metal sintering (DLMS) produces structures with complex ...
Bone response is one of the key determining factors in the overall success of biomaterials intended ...
Success in implant dentistry also comes from the implant macrodesign and nanostructure of its surfac...
The aim of the present study was a light and scanning electron microscopy (SEM) evaluation of the pe...
Introduction Replacing lost teeth with dental implants is today a reliable treatment method associat...
The ultrastructural and biomechanical properties of the bone-implant interface are important factors...
Until now, the chemical bonding between titanium and bone has been examined only through a few mecha...
The aim of this study was to analyze the degree of mineralization around nine clinically stable tita...
Aim: Alterations in implant surfaces can affect periimplant bone formation and shorten the healing t...