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Analysis of the Expansion Behavior and In-stent Restenosis of Coronary by Finite Element Method

机译:有限元法分析冠状动脉的膨胀行为及支架再支架再狭窄

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Restenosis is a re-narrowing or blockage of an artery at the same site where treatment like stent procedure has already taken place. The aim of this study is to more conclusively identify the mechanical stimulus for in-stent restenosis by means of numerical model based on the finite element method. The finite element model simulating the stent, balloon, crimping tool and artery interaction in the coronary artery is developed. The present model is used to determine the stress distribution in the artery wall followed by stent implantation. It is indicated that the compliance mismatch of stent with vascular induces the stress concentration in the stented artery, which impact the level of vascular injury caused to the artery by the stent. This study supports the hypothesis that the artery develops restenosis in response to injury, where high vessel stresses are a good measure of the injury.
机译:再狭窄是在相同的部位处重新缩小或阻塞动脉,其中已经发生了等待等待的处理。 本研究的目的是通过基于有限元方法,通过数值模型更进一步地确定用于支架内再狭窄的机械刺激。 开发了模拟冠状动脉中支架,气球,压接工具和动脉相互作用的有限元模型。 本模型用于确定动脉壁的应力分布,然后是支架植入。 结果表明,血管支架的依从性失配诱导支架动脉中的应力浓度,这影响支架对动脉引起的血管损伤水平。 本研究支持该假设,动脉造成损伤的损伤,高血管胁迫是损伤的良好衡量标准。

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