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Extraluminal laser angioplasty (ELAN), a new method for treating atherosclerotic vessels

机译:外形激光血管成形术(Elan),一种治疗动脉粥样硬化血管的新方法

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ELAN is a new method for treating atherosclerotic vessels. Its purpose is to restore wall flexibility by removing arterial wall tissue from the outer arterial layer. This leads to expansion of the narrowed vessel resulting in increased blood flow. We generated cuts in dissected arteries of sheep and pigs by photo-ablation with an ArF-Excimer Laser operating at a wavelength of 193 nm. During the cutting process the vessel diameter was monitored by measuring the running time of the laser induced pressure transients with a pressure transducer lying under the artery. A nearly linear increase of the diameter dependent on the residual wall thickness was found with a maximum increase of vessel diameter about 10 %. We also observed that the arterial wall maintains stable to very small residual wall thicknesses i.e. deep cutting. To support the experiments and to test different geometries of tissue removal we performed FEM-Analysis. We simulated vessel deformation and the total strain depending on the depth, width and number of cuts in the outer arterial wall. We also found a significant increase of the "lumen" in a model with atherosclerotic shape obtained from a histological section.
机译:Elan是一种治疗动脉粥样硬化血管的新方法。其目的是通过从外部动脉层去除动脉壁组织来恢复墙壁柔韧性。这导致缩小容器的扩展导致血流增加。我们通过在193nm波长的波长的ARF-Chimimer激光下,通过光烧蚀在绵羊和猪的解剖动脉中产生切割。在切割过程期间,通过用位于动脉下方的压力传感器测量激光诱导的压力瞬变的运行时间来监测容器直径。发现依赖于残留壁厚的直径几乎线性增加,最大增加的容器直径约为10%。我们还观察到,动脉壁保持稳定,对非常小的残余壁厚I.E.深切割。为了支持实验并测试组织去除的不同几何形状,我们执行了FEM分析。根据外部动脉壁的切口的深度,宽度和数量,我们模拟血管变形和总菌株。我们还发现从组织学部分获得的动脉粥样硬化形状的模型中的“腔”显着增加。

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