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不同冠状动脉分叉支架技术的药物输送模式:比较计算研究。

Drug delivery patterns for different stenting techniques in coronary bifurcations: a comparative computational study.

机构信息

Department of Mathematics, Modelling and Scientific Computing (MOX), Politecnico di Milano, Milan, Italy.

出版信息

Biomech Model Mechanobiol. 2013 Aug;12(4):657-69. doi: 10.1007/s10237-012-0432-5. Epub 2012 Aug 31.

Abstract

The treatment of coronary bifurcation lesions represents a challenge for the interventional cardiologists due to the lower rate of procedural success and the higher risk of restenosis. The advent of drug-eluting stents (DES) has dramatically reduced restenosis and consequently the request for re-intervention. The aim of the present work is to provide further insight about the effectiveness of DES by means of a computational study that combines virtual stent implantation, fluid dynamics and drug release for different stenting protocols currently used in the treatment of a coronary artery bifurcation. An explicit dynamic finite element model is developed in order to obtain realistic configurations of the implanted devices used to perform fluid dynamics analysis by means of a previously developed finite element method coupling the blood flow and the intramural plasma filtration in rigid arteries. To efficiently model the drug release, a multiscale strategy is adopted, ranging from lumped parameter model accounting for drug release to fully 3-D models for drug transport to the artery. Differences in drug delivery to the artery are evaluated with respect to local drug dosage. This model allowed to compare alternative stenting configurations (namely the Provisional Side Branch, the Culotte and the Inverted Culotte techniques), thus suggesting guidelines in the treatment of coronary bifurcation lesions and addressing clinical issues such as the effectiveness of drug delivery to lesions in the side branch, as well as the influence of incomplete strut apposition and overlapping stents.

摘要

冠状动脉分叉病变的治疗对介入心脏病学家来说是一个挑战,因为其手术成功率较低,再狭窄风险较高。药物洗脱支架(DES)的出现显著降低了再狭窄率,因此需要再次介入的需求也降低了。本研究的目的是通过计算研究进一步了解 DES 的有效性,该研究结合了虚拟支架植入、流体动力学和不同支架置入方案的药物释放,目前这些方案都被用于治疗冠状动脉分叉病变。为了通过先前开发的有限元方法进行流体动力学分析,该方法将血流和刚性动脉中的壁内血浆过滤结合在一起,我们开发了一个显式动态有限元模型,以获得用于植入设备的实际配置。为了有效地模拟药物释放,我们采用了多尺度策略,从考虑药物释放的集中参数模型到用于药物向动脉输送的完全 3-D 模型。通过局部药物剂量来评估药物向动脉的输送差异。该模型允许比较替代的支架置入方案(即临时分支支架、Culotte 和倒置 Culotte 技术),从而为冠状动脉分叉病变的治疗提供指导方针,并解决临床问题,例如侧支病变中药物输送的有效性,以及支架不完全贴壁和重叠的影响。

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