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Fabrication and Surface Modification of Porous Nano-Structured NiTi Orthopedic Scaffolds for Bone Implants

机译:骨植入物多孔纳米结构NITI骨科支架​​的制造和表面改性

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Near-equiatomic porous nickel-titanium shape memory alloys (NiTi SMAs) are becoming one of the most promising biomaterials in bone implants because of their unique advantages over currently used biomaterials. For example, they have good mechanical properties and lower Young's modulus relative to dense NiTi, Ti, and Ti-based alloys. Porous NiTi SMAs are relatively easy to machine compared to porous ceramics such as hydroxyapatite and calcium phosphate that tend to exhibit brittle failure. The porous structure with interconnecting open pores can also allow tissue in-growth and favors bone osseointegration. In addition, porous NiTi alloys remain exhibiting good shape memory effect (SME) and superelasticity (SE) similar to dense NiTi alloys. To optimize porous NiTi SMAs in bone implant applications, the current research focuses on the fabrication methods and surface modification techniques in order to obtain adjustable bone-like structures with good mechanical properties, excellent superelasticity, as well as bioactive passivation on the entire exposed surface areas to block nickel ion leaching and enhance the surface biological activity. This invited paper describes progress in the fabrication of the porous materials and our recent work on surface nanorization of porous NiTi scaffolds in bone grafts applications.
机译:近赤素多孔镍钛形状记忆合金(NITI SMA)正在成为骨植入物中最有前途的生物材料之一,因为它们对目前使用的生物材料的独特优势。例如,它们具有相对于致密的Niti,Ti和Ti基合金具有良好的机械性能和较低的杨氏模量。与多孔陶瓷如羟基磷灰石和磷酸钙相比,多孔NITI SMA对机器相对容易易于易于表现出脆性衰竭。具有互连开放孔的多孔结构还可以允许组织生长和有利于骨骨整合。此外,多孔NITI合金仍然呈现出良好的形状记忆效应(SE)和类似于致密的NITI合金的超弹性。为了优化骨植入应用中的多孔NITI SMA,目前的研究侧重于制造方法和表面改性技术,以便获得具有良好机械性能的可调节骨状结构,优异的超弹性以及整个暴露表面区域的生物活跃钝化阻止镍离子浸出并增强表面生物活性。这篇邀请纸描述了多孔材料制造的进展以及我们最近在骨移植应用中的多孔NITI支架表面纳米化的工作。

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