Stoeckel Dieter, Pelton Alan, Duerig Tom
Nitinol Devices and Components, 47533 Westinghouse Drive, Fremont, CA 94539, USA.
Eur Radiol. 2004 Feb;14(2):292-301. doi: 10.1007/s00330-003-2022-5. Epub 2003 Sep 3.
Nitinol (nickel-titanium) alloys exhibit a combination of properties which make these alloys particularly suited for self-expanding stents. Some of these properties cannot be found in engineering materials used for stents presently. This article explains the fundamental mechanism of shape memory and superelasticity, and how they relate to the characteristic performance of self-expanding stents. Nitinol stents are manufactured to a size slightly larger than the target vessel size and delivered constrained in a delivery system. After deployment, they position themselves against the vessel wall with a low, "chronic" outward force. They resist outside forces with a significantly higher radial resistive force. Despite the high nickel content of Nitinol, its corrosion resistance and biocompatibility is equal to that of other implant materials. The most common Nitinol stents are listed and described.
镍钛诺(镍 - 钛)合金展现出一系列特性,这些特性使得这些合金特别适用于自膨胀支架。目前用于支架的工程材料中,有些特性是找不到的。本文解释了形状记忆和超弹性的基本机制,以及它们与自膨胀支架的特性性能之间的关系。镍钛诺支架被制造成比目标血管尺寸稍大,并在输送系统中受约束地进行输送。展开后,它们以较低的“慢性”向外力贴靠血管壁定位。它们以显著更高的径向阻力抵抗外力。尽管镍钛诺含镍量高,但其耐腐蚀性和生物相容性与其他植入材料相当。文中列出并描述了最常见的镍钛诺支架。