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Covered Stent Membrane Design for Treatment of Atheroembolic Disease at Carotid Artery Bifurcation and Prevention of Thromboembolic Stroke: An In Vitro Experimental Study

机译:覆膜支架膜设计治疗颈动脉分叉处的动脉粥样硬化疾病和预防血栓栓塞性中风:一项体外实验研究

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摘要

In this study, a polymeric membrane has been designed and developed for carotid stents to prevent detachment of emboli from the arterial wall and subsequent stroke, while maintaining side-branch flow. Prototypes of different geometrical design parameters have been fabricated and their performance has been evaluated in vitro under physiological pulsatile flow condition in a life-size silicone anastomotic model of carotid artery bifurcation. These evaluations include both quantitative and qualitative experimental (in vitro) assessments of emboli prevention capability, side-branch flow preservation, and flow visualization. The covered stents with the novel membrane demonstrated significantly higher emboli prevention capability than the corresponding bare nitinol stent as well as some earlier related designs, while preserving more than 93% of the original flow of the external carotid artery (ECA). Flow in the ECA through these covered stents was uniform without evidence of undesirable flow recirculation or retrograde flow that might predispose the vessel wall to intimal thickening and atherosclerotic plaque formation. This study demonstrated the potential of these novel covered stent designs for the treatment of carotid atherosclerotic stenosis and prevention of late embolic stroke. However, further in vivo investigations of biological effects and mechanical performance of this covered stent design (e.g., its thrombogenicity potential and biocompatibility) are warranted.
机译:在这项研究中,已经设计并开发了一种用于颈动脉支架的聚合物膜,以防止栓子从动脉壁分离和随后的中风,同时保持支流。制作了不同几何设计参数的原型,并在生理脉动流条件下在与颈动脉分叉的真人大小的硅树脂吻合模型中体外评估了它们的性能。这些评估包括栓塞预防能力,支流保鲜和血流可视化的定量和定性实验(体外)评估。与相应的裸镍钛合金支架以及一些较早的相关设计相比,带有新型膜的覆盖支架显示出显着更高的防栓塞能力,同时保留了颈外动脉(ECA)原始流量的93%以上。通过这些覆盖的支架在ECA中的流动是均匀的,没有证据表明不良的血流再循环或逆行血流可能使血管壁易于内膜增厚和形成动脉粥样硬化斑块。这项研究证明了这些新颖的覆膜支架设计在治疗颈动脉粥样硬化狭窄和预防晚期栓塞性中风方面的潜力。但是,有必要对这种覆膜支架设计的生物学效应和机械性能进行进一步的体内研究(例如,其血栓形成潜力和生物相容性)。

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