3D fiber deposition is a technique that allows the development of metallic scaffolds with accurately controlled pore size, porosity and interconnecting pore size, which in turn permits a more precise investigation of the effect of structural properties on the in vivo behavior of biomaterials.This study analyzed the in vivo performance of titanium alloy scaffolds fabricated using 3D fiber deposition. The titanium alloy scaffolds with different structural properties, such as pore size, porosity and interconnecting pore size were implanted on the decorticated transverse processes of the posterior lumbar spine of 10 goats. Prior to implantation, implant structure and permeability were characterized. To monitor the bone formation over time, fluo...
A porous implant material with adequate pore structure and the appropriate mechanical properties for...
Objectives: Porous titanium is used for the reconstruction of large bone defects due to its excellen...
The main goal in the treatment of large bone defects is to guarantee a rapid loading of the affected...
In this study, porous 3D fiber deposition titanium (3DFT) and 3DFT combined with porous biphasic cal...
In this study, porous 3D fiber deposition titanium (3DFT) and 3DFT combined with porous biphasic cal...
In porous titanium scaffolds manufactured via 3D printing, the differences in bone formation accordi...
Porous titanium scaffolds are promising materials for biomedical applications such as prosthetic anc...
Porous titanium has long been desired as a bone substitute material because of its ability to reduce...
Item does not contain fulltextThe osteoconductive properties of porous titanium (Ti) fiber mesh with...
Porous metals (sintered beads and meshes) have been used for many years for different orthopedic app...
A porous material for bone ingrowth with adequate pore structure and appropriate mechanical properti...
Objective: The aim of this study was to carry out an in vivo assessment of bone ingrowth in two diff...
OBJECTIVES: This study was aimed to comparatively evaluate new bone formation into the pores of a fl...
Porous titanium fiber mesh (TFM) is considered a suitable scaffold material for bone reconstruction....
Studies on porous titanium for use in dental applications have been growing due to their excellent p...
A porous implant material with adequate pore structure and the appropriate mechanical properties for...
Objectives: Porous titanium is used for the reconstruction of large bone defects due to its excellen...
The main goal in the treatment of large bone defects is to guarantee a rapid loading of the affected...
In this study, porous 3D fiber deposition titanium (3DFT) and 3DFT combined with porous biphasic cal...
In this study, porous 3D fiber deposition titanium (3DFT) and 3DFT combined with porous biphasic cal...
In porous titanium scaffolds manufactured via 3D printing, the differences in bone formation accordi...
Porous titanium scaffolds are promising materials for biomedical applications such as prosthetic anc...
Porous titanium has long been desired as a bone substitute material because of its ability to reduce...
Item does not contain fulltextThe osteoconductive properties of porous titanium (Ti) fiber mesh with...
Porous metals (sintered beads and meshes) have been used for many years for different orthopedic app...
A porous material for bone ingrowth with adequate pore structure and appropriate mechanical properti...
Objective: The aim of this study was to carry out an in vivo assessment of bone ingrowth in two diff...
OBJECTIVES: This study was aimed to comparatively evaluate new bone formation into the pores of a fl...
Porous titanium fiber mesh (TFM) is considered a suitable scaffold material for bone reconstruction....
Studies on porous titanium for use in dental applications have been growing due to their excellent p...
A porous implant material with adequate pore structure and the appropriate mechanical properties for...
Objectives: Porous titanium is used for the reconstruction of large bone defects due to its excellen...
The main goal in the treatment of large bone defects is to guarantee a rapid loading of the affected...