首页> 外文会议>ASME conference on frontiers in medical devices: applications of computer modeling and simulation 2013 : The role of experiment in modeling ... >INVESTIGATION OF THE EFFECT OF STENT LENGTH AND STENT LOCATION ON THE DEFORMATION CHARACTERISTICS OF THE FEMOROPOPLITEAL ARTERY AFTER KNEE FLEXION: A FINITE ELEMENT STUDY
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INVESTIGATION OF THE EFFECT OF STENT LENGTH AND STENT LOCATION ON THE DEFORMATION CHARACTERISTICS OF THE FEMOROPOPLITEAL ARTERY AFTER KNEE FLEXION: A FINITE ELEMENT STUDY

机译:膝关节屈曲后膝长和膝关节位置对股POP动脉变形特性影响的研究:有限元研究

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There are a range of physiological movements such as knee and hip flexion that result in the deformation and loading of the femoropopliteal artery, characterised as axial compression, radial compression, bending and torsion. The SFA is a prevalent location for peripheral arterial disease often requiring percutaneous transluminal angioplasty followed by stenting to restore vessel patency and uncompromised blood flow. Whilst stent placement provides the required scaffolding of the artery, opening up blockages and preventing elastic recoil of the vessel, it alters axial rigidity, changing the way in which the vessel deforms. With extreme stent rigidity and long stent lengths, severe bending can occur in the unstented vessel portions, proximal and distal to the stent. This has been observed in angiographic images of stented vessels that show unstented artery portions bending in an exaggerated manner adjacent to stented regions. It is postulated that due to knee flexion, deformation characteristics of the vessel are changed with extreme curvatures induced, initiating large stresses in the vessel tissue which may contribute to vascular injury, intimal hyperplasia and restenosis. The goal of this work was to determine the effect of stent placement on deformation characteristics of the SFA after knee flexion using an anatomically accurate, three dimensional finite element model of the leg. Deformation characteristics (length change, curvature change and axial twist) that result from knee flexion movements of the stented vessel are quantified and linked with stress and strain levels within the artery for various cases of stent length and location within the femoropopliteal artery.
机译:存在多种生理运动,例如膝盖和髋部弯曲,导致股pop动脉的变形和负荷,其特征在于轴向压缩,径向压缩,弯曲和扭转。 SFA是周围动脉疾病的普遍位置,通常需要进行经皮腔内血管成形术,然后进行支架置入术以恢复血管通畅和血流不受影响。支架放置可提供所需的动脉支架,打开堵塞并防止血管弹性回缩,但它会改变轴向刚度,从而改变血管变形的方式。由于具有极高的支架刚度和较长的支架长度,在支架近端和远端的未支架血管部分可能会发生严重弯曲。这在带支架的血管的血管造影图像中已观察到,该图像显示未扩张的动脉部分在与带支架的区域相邻处以夸张的方式弯曲。据推测,由于膝关节弯曲,血管的变形特性会随着极度弯曲而发生变化,从而在血管组织中产生较大的应力,这可能会导致血管损伤,内膜增生和再狭窄。这项工作的目的是使用解剖学上准确的腿部三维有限元模型确定膝盖弯曲后支架放置对SFA变形特征的影响。对于支架长度和股pop动脉内各种位置的情况,对由支架血管的屈膝运动引起的变形特性(长度变化,曲率变化和轴向扭曲)进行量化,并与动脉内的应力和应变水平相关联。

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