支架植入后趋直现象对血管壁局部生物力学环境的影响
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国家自然科学基金项目(11472031, 11332003, 31570947),江苏省自然科学基金项目(20161366),高等学校学科创新引智(111)计划(13003)


Effects of Straightening Phenomenon Caused by Stent Implantation on Local Biomechanical Environment of the Vascular Wall
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    摘要:

    目的 研究支架植入后趋直现象对病变处血管壁力学环境变化的影响,探索支架植入后再狭窄的生物力学成因及支架优化方法。方法 基于患者CT扫描图像,使用Mimics、Geomagic和Pro/E软件完成动脉、球囊以及理想与趋直两种支架模型的构建,应用ABAQUS软件建立球囊-支架-冠状动脉左前降至血管之间的力学模型,根据数值模拟计算结果,分析趋直对病变处血管壁力学环境的影响。结果 在1.013 MPa充气压力下撑开支架后,与理想支架模型相比较,趋直支架模型的血管壁内表面出现Von Mises应力增大和明显的应力集中现象,尤其是在近心端、远心端及沿心肌表面区域。理想支架模型血管内壁平均和最大Von Mises应力分别0.39、5.12 MPa;趋直支架模型血管内壁平均和最大Von Mises应力分别为0.45、7.43 MPa。结论 支架植入后发生的趋直现象将引起应力分布不均匀,出现应力集中,增大对血管壁造成的伤害,可能会引起血管的机械损伤及管壁重建,诱发支架内再狭窄的发生。研究结果可为术后支架内再狭窄的机理分析提供帮助,也为血管介入手术方案及支架优化设计提供参考。

    Abstract:

    Objective To investigate the influence of straightening phenomenon caused by stent implantation on biomechanical environment changes in vascular lesions, so as to explore biomechanical mechanism of restenosis and stent optimization. Methods Based on the computed tomography (CT) images of a patient, the balloon model, the left anterior descending coronary(LAD) artery model and two stent models (idealized stent and straightened stent) were reconstructed by Mimics, Geomagic and Pro/E software. The balloon-stent-LAD artery mechanical models were then established with the ABAQUS software. Based on the numerical simulation results, the influence of straightening phenomenon on mechanical environment at vascular lesions was analyzed. Results When the stents were expanded under the same inflation pressures (1.013 MPa), the Von Mises stress increased on vascular wall of the straightened stent model compared with the idealized stent model, and stress concentration occurred especially at the proximal and distal area of the stented regions and on the myocardial surface. The average and the maximum Von Mises stress on vascular wall of the idealized stent model were 0.39 MPa and 5.12 MPa, respectively. The average and the maximum Von Mises stress on vascular wall of the straightened stent model were 0.45 MPa and 7.43 MPa, respectively. Conclusions The straightening phenomenon caused by stent implantation would change the distribution of Von Mises stress and induce stress concentration. This kind of mechanical environment would cause greater damage to vascular wall, then might cause mechanical injury and vascular remodeling, leading to a higher risk of neointimal hyperplasia and subsequent restenosis. The research findings will be helpful for explaining the mechanism of in-stent restenosis, and may provide clinical guidance for the interventional surgery and optimization of stent design.

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刘鹏飞,邓小燕,孙安强.支架植入后趋直现象对血管壁局部生物力学环境的影响[J].医用生物力学,2018,33(6):483-489

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  • 收稿日期:2017-12-11
  • 最后修改日期:2018-01-28
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  • 在线发布日期: 2018-12-26
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