Biomedical Applications of Shape Memory Alloys

L. Petrini, F. Migliavacca
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引用次数: 427

Abstract

Shape memory alloys, and in particular NiTi alloys, are characterized by two unique behaviors, thermally or mechanically activated: the shape memory effect and pseudo-elastic effect. These behaviors, due to the peculiar crystallographic structure of the alloys, assure the recovery of the original shape even after large deformations and the maintenance of a constant applied force in correspondence of significant displacements. These properties, joined with good corrosion and bending resistance, biological and magnetic resonance compatibility, explain the large diffusion, in the last 20 years, of SMA in the production of biomedical devices, in particular for mini-invasive techniques. In this paper a detailed review of the main applications of NiTi alloys in dental, orthopedics, vascular, neurological, and surgical fields is presented. In particular for each device the main characteristics and the advantages of using SMA are discussed. Moreover, the paper underlines the opportunities and the room for new ideas able to enlarge the range of SMA applications. However, it is fundamental to remember that the complexity of the material and application requires a strict collaboration between clinicians, engineers, physicists and chemists for defining accurately the problem, finding the best solution in terms of device design and accordingly optimizing the NiTi alloy properties.
形状记忆合金的生物医学应用
形状记忆合金,特别是NiTi合金,具有两种独特的热或机械激活行为:形状记忆效应和伪弹性效应。这些行为,由于合金的特殊晶体结构,确保即使在大变形后也能恢复原始形状,并且在显著位移时保持恒定的施加力。这些特性,加上良好的耐腐蚀性和抗弯性,生物和磁共振兼容性,解释了SMA在过去20年里在生物医学设备,特别是微创技术生产中的大量扩散。本文综述了镍钛合金在牙科、骨科、血管、神经和外科等领域的主要应用。特别讨论了每种器件的主要特性和使用SMA的优点。此外,本文强调了能够扩大SMA应用范围的新想法的机会和空间。然而,重要的是要记住,材料和应用的复杂性需要临床医生、工程师、物理学家和化学家之间的严格合作,以准确地定义问题,在设备设计方面找到最佳解决方案,并相应地优化NiTi合金的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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