血管支架在真实狭窄血管模型中扩张过程的模拟研究
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国家自然科学基金项目(81171107)


Simulation study on expansion process of vascular stent in realistic stenosis model
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    摘要:

    目的 研究血管支架在真实狭窄血管模型中不同扩张阶段的形变与受力特性,为支架的介入治疗与设计提供科学的参考意见。方法 利用三维建模方法构建患者颈动脉血管模型以及斑块模型,利用Pro/E软件构建1种I型血管支架;在ABAQUS/Standard软件中分析支架在真实狭窄血管模型中径向扩张(第1阶段)和径向收缩(第2阶段)的扩张过程,同时建立斑块与血管为一体的对比实验。结果 在第1阶段,支架发生径向扩张,支架与斑块和血管内壁接触面积最大,支架、斑块、血管壁所受应力最大值分别为515.000、2.482、1.053 MPa;在第2阶段,支架发生径向收缩,形成“狗骨效应”,支架与血管壁之间形成较多的间隙,支架、斑块、血管壁所受应力最大值分别为464.500、0.954、0.316 MPa。在对比实验中,狭窄血管与支架在第2阶段所受应力最大值分别为0.9、414.1 MPa。结论 相对于对比实验,区分血管组织成分的模型更符合狭窄血管的真实情况,更能真实反映血管与支架的受力情况;在第1阶段支架对于斑块及血管内壁造成的损伤最大,在第2阶段支架的“狗骨效应”是造成支架与斑块、血管间产生空隙的重要影响因素。研究结果对支架在介入治疗中的选择与支架的改进设计具有指导意义。

    Abstract:

    Objective To study the deformation and mechanical characteristics during expansion process of vascular stent in realistic stenosis model, so as to provide scientific references for interventional treatment and stent design. Methods The carotid vessel model and plaque model of patient were built by using 3D reconstruction method, and the stent model with I-shaped link was established by using Pro/E; ABAQUS/Standard was used to simulate the radial expansion (the first stage) and radial contraction (the second stage) of the stent in real stenosis model, and a realistic model of blood vessel with plaque was also established to make contrast test. Results In the first stage, radial expansion of the stent was formed. The maximum contact area was generated between the outer surface of the stent and the inner surface of the plaque/arterial wall, and the maximum stresses on the stent, plague and arterial wall were 515.000, 2.482, 1.053 MPa, respectively. In the second stage, the radial contraction of the stent resulted in “dog-bone” effect. Many gaps between the stent and vessel wall was formed, and the maximum stresses on the stent, plague and arterial wall were 464.500, 0.954, 0.316 MPa, respectively. In contrast test, the maximum stresses on stenotic vessel and stent were 0.9, 414.1 MPa in the second stage. Conclusions Compared with the model in contrast test, the stenosis model differentiating the component of vascular tissues is more consistent with the real situation of stenotic vessels, by more truly showing deformation and mechanical characteristics of the stent and blood vessel. The stent causes the maximum damage to plaque and inner wall of blood vessel in the first stage, while “dog-bone” effect of the stent is an important influencing factor that results in the gaps between the stent, plague and blood vessel. These research findings may provide significant guidance for selecting stent in interventional treatment and improving stent design.

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任庆帅,任希力,彭坤,乔爱科.血管支架在真实狭窄血管模型中扩张过程的模拟研究[J].医用生物力学,2015,30(6):488-494

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  • 收稿日期:2015-04-11
  • 最后修改日期:2015-04-26
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  • 在线发布日期: 2015-12-29
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