O'Brien Barry, Stinson Jon, Carroll William
Boston Scientific Corporation, Ballybrit Business Park, Galway, Ireland.
J Mech Behav Biomed Mater. 2008 Oct;1(4):303-12. doi: 10.1016/j.jmbbm.2007.11.003. Epub 2007 Nov 17.
This study was performed in order to develop a new stent material that would provide reduced MR image artifact compared to current stent materials. Alloy design rationale is initially presented and following this the development of a Nb-28 Ta-3.5 W-1.3 Zr alloy is described, including the manufacture of stent tubing. Tensile testing of this new alloy showed that it had approximately twice the yield strength of current Nb-1 Zr material with a 25% higher elastic modulus. The new alloy was also confirmed to have suitably low magnetic susceptibility. Mechanical testing of demonstration coronary stents made from the new alloy were shown to have acceptable compression strength and elastic recoil performance. It is concluded that this new Nb-28 Ta-3.5 W-1.3 Zr alloy is a practical candidate stent material for both coronary applications and peripheral uses such as carotid or intracranial stenting, where reduced MR image artifact would be beneficial.
进行这项研究是为了开发一种新的支架材料,与目前的支架材料相比,它能减少磁共振成像伪影。首先介绍了合金设计原理,随后描述了一种Nb-28Ta-3.5W-1.3Zr合金的研发过程,包括支架管材的制造。对这种新合金进行的拉伸测试表明,其屈服强度约为目前Nb-1Zr材料的两倍,弹性模量高25%。新合金还被证实具有适当低的磁化率。由新合金制成的示范性冠状动脉支架的机械测试表明,其具有可接受的抗压强度和弹性回缩性能。得出的结论是,这种新的Nb-28Ta-3.5W-1.3Zr合金是冠状动脉应用以及外周应用(如颈动脉或颅内支架置入术)中实用的候选支架材料,在这些应用中减少磁共振成像伪影将是有益的。