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铂铬合金支架平台:从合金、设计到临床实践。

The platinum chromium element stent platform: from alloy, to design, to clinical practice.

机构信息

Craigavon Cardiac Centre, Craigavon, Northern Ireland, UK.

出版信息

Adv Ther. 2010 Mar;27(3):129-41. doi: 10.1007/s12325-010-0022-9. Epub 2010 Apr 29.

Abstract

Despite advances in polymer and drug technology, the underlying stent platform remains a key determinant of clinical outcome. A clear understanding of stent design and the differences between various stent platforms are of increasing importance for the interventional cardiologist. Reduction in stent strut thickness has been associated with improved stent deliverability, improved procedural outcome, and lower rates of subsequent restenosis. Newer-generation 316L-SS stent designs have enabled reduced strut thickness while retaining radial strength and minimizing recoil, but with significant loss of radiopacity, leading to reduced visibility. Cobalt chromium alloys have enabled a reduction in stent strut thickness to around 80-90 mm while retaining modest radiopacity, but due to higher elastic properties, have been associated with greater stent recoil. Development of a novel 33% platinum chromium alloy with high radial strength and high radiopacity has enabled design of a new, thin-strut, flexible, easily visualized, and highly trackable stent platform, the use of which is further illustrated in several clinical case descriptions.

摘要

尽管聚合物和药物技术取得了进步,但底层支架平台仍然是临床结果的关键决定因素。对于介入心脏病学家来说,清楚地了解支架设计以及各种支架平台之间的差异变得越来越重要。支架支柱厚度的减少与改善支架可输送性、改善手术结果和降低随后的再狭窄率有关。新一代 316L-SS 支架设计使支柱厚度减小,同时保持径向强度并最小化回缩,但显著降低了射线可透性,导致可视性降低。钴铬合金使支架支柱厚度减少到 80-90 毫米左右,同时保持适度的射线可透性,但由于弹性较高,与更大的支架回缩有关。开发具有高径向强度和高射线可透性的新型 33%铂铬合金,使设计一种新的、薄支柱、灵活、易于可视化和高度可追踪的支架平台成为可能,其使用在几个临床病例描述中进一步得到了说明。

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