The superelastic nature of bones requires matching biomechanical properties from the ideal artificial biomedical implants in order to provide smooth load transfer and foster the growth of new bone tissues. In this work, we determine the biomechanical characteristics of porous NiTi implants and investigate bone ingrowth under actual load-bearing conditions in vivo. In this systematic and comparative study, porous NiTi, porous Ti, dense NiTi, and dense Ti are implanted into 5 mm diameter holes in the distal part of the femur/tibia of rabbits for 15 weeks. The bone ingrowth and interfacial bonding strength are evaluated by histological analysis and push-out test. The porous NiTi materials bond very well to newly formed bone tissues and the hig...
Abstract Nickel-titanium shape memory metal Nitinol (NiTi) is a new kind of implant material, which ...
Porous titanium has long been desired as a bone substitute material because of its ability to reduce...
Additively manufactured (AM) porous metallic biomaterials, in general, and AM porous titanium, in pa...
Near-equiatomic porous nickel-titanium shape memory alloys (NiTi SMAs) are becoming one of the most ...
Objectives: Porous titanium is used for the reconstruction of large bone defects due to its excellen...
Objective: The aim of this study was to carry out an in vivo assessment of bone ingrowth in two diff...
Although the initial mechanical properties of additive-manufactured (AM) metal scaffolds have been t...
Porous titanium scaffolds are promising materials for biomedical applications such as prosthetic anc...
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...
Background: Full ceramic or metal custom-made root analogue implants (RAIs) are made by replicating ...
Among various metallic biomaterials, titanium and its alloys are the most interesting for orthopaedi...
A porous implant material with adequate pore structure and the appropriate mechanical properties for...
Previous investigations have shown that both the early biological response and the mechanical proper...
Qian Xu1, Hongyan Lu1, Jingchao Zhang1, Guoyu Lu2, Zhennan Deng2, Anchun Mo31State Key Laboratory of...
Abstract Nickel-titanium shape memory metal Nitinol (NiTi) is a new kind of implant material, which ...
Porous titanium has long been desired as a bone substitute material because of its ability to reduce...
Additively manufactured (AM) porous metallic biomaterials, in general, and AM porous titanium, in pa...
Near-equiatomic porous nickel-titanium shape memory alloys (NiTi SMAs) are becoming one of the most ...
Objectives: Porous titanium is used for the reconstruction of large bone defects due to its excellen...
Objective: The aim of this study was to carry out an in vivo assessment of bone ingrowth in two diff...
Although the initial mechanical properties of additive-manufactured (AM) metal scaffolds have been t...
Porous titanium scaffolds are promising materials for biomedical applications such as prosthetic anc...
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...
Background: Full ceramic or metal custom-made root analogue implants (RAIs) are made by replicating ...
Among various metallic biomaterials, titanium and its alloys are the most interesting for orthopaedi...
A porous implant material with adequate pore structure and the appropriate mechanical properties for...
Previous investigations have shown that both the early biological response and the mechanical proper...
Qian Xu1, Hongyan Lu1, Jingchao Zhang1, Guoyu Lu2, Zhennan Deng2, Anchun Mo31State Key Laboratory of...
Abstract Nickel-titanium shape memory metal Nitinol (NiTi) is a new kind of implant material, which ...
Porous titanium has long been desired as a bone substitute material because of its ability to reduce...
Additively manufactured (AM) porous metallic biomaterials, in general, and AM porous titanium, in pa...