International audienceNew β-titanium based alloys with low Young's modulus are currently required for the next generation of metallic implant materials to ensure good mechanical compatibility with bone. Several of these are representatives of the ternary Ti-Mo-Nb system. The aim of this paper is to assess the in vitro biological performance of five new low modulus alloy compositions, namely Ti12Mo, Ti4Mo32Nb, Ti6Mo24Nb, Ti8Mo16Nb and Ti10Mo8Nb. Commercially pure titanium (cpTi) was used as a reference material. Comparative studies of cell activity exhibited by MC3T3-E1 pre-osteoblasts over short- and long-term culture periods demonstrated that these newly-developed metallic substrates exhibited an increased biocompatibility in terms of oste...
The improvement of bone ingrowth into prosthesis and enhancement of the combination of the range bet...
The biomaterials used to maintain or replace functions in the human body consist mainly of metals, c...
beta-Type titanium alloys with a low elastic modulus are a potential strategy to reduce stress shiel...
International audienceThe materials used for internal fracture fixations and joint replacements are ...
Abstract : Ti-Mo alloys are promising biocompatible materials with lower elastic modulus than the ex...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. β-type titanium (Ti) alloys have attracted...
This work focuses on the bioactivity and biological response of modified Ti surfaces produced by pow...
Metallic materials are essential for construction of load-bearing bone implants, such as replacement...
Total hip replacement procedures are becoming increasingly common and often necessary due to injury ...
beta-Type titanium alloys with a low elastic modulus are a potential strategy to enhance bone remode...
Many current-generation biomedical implants are fabricated from the Ti-6Al-4V alloy because it has m...
Titanium and its alloys have a high specific strength, excellent corrosion resistance, and good bioc...
International audienceThere have been several attempts to improve the cellular and molecular interac...
<div><p>Titanium (Ti) and Ti-6 Aluminium-4 Vanadium alloys are the most common materials in implants...
The applications of titanium based alloys are widely used as orthopedic implants due to their excell...
The improvement of bone ingrowth into prosthesis and enhancement of the combination of the range bet...
The biomaterials used to maintain or replace functions in the human body consist mainly of metals, c...
beta-Type titanium alloys with a low elastic modulus are a potential strategy to reduce stress shiel...
International audienceThe materials used for internal fracture fixations and joint replacements are ...
Abstract : Ti-Mo alloys are promising biocompatible materials with lower elastic modulus than the ex...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. β-type titanium (Ti) alloys have attracted...
This work focuses on the bioactivity and biological response of modified Ti surfaces produced by pow...
Metallic materials are essential for construction of load-bearing bone implants, such as replacement...
Total hip replacement procedures are becoming increasingly common and often necessary due to injury ...
beta-Type titanium alloys with a low elastic modulus are a potential strategy to enhance bone remode...
Many current-generation biomedical implants are fabricated from the Ti-6Al-4V alloy because it has m...
Titanium and its alloys have a high specific strength, excellent corrosion resistance, and good bioc...
International audienceThere have been several attempts to improve the cellular and molecular interac...
<div><p>Titanium (Ti) and Ti-6 Aluminium-4 Vanadium alloys are the most common materials in implants...
The applications of titanium based alloys are widely used as orthopedic implants due to their excell...
The improvement of bone ingrowth into prosthesis and enhancement of the combination of the range bet...
The biomaterials used to maintain or replace functions in the human body consist mainly of metals, c...
beta-Type titanium alloys with a low elastic modulus are a potential strategy to reduce stress shiel...