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Tungsten-loaded SMP foam nanocomposites with inherent radiopacity and tunable thermo-mechanical properties

机译:具有固有射线不透性和可调热机械性能的钨负载SMP泡沫纳米复合材料

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摘要

Shape memory polymer (SMP) foams have been developed for use in neurovascular occlusion applications. These materials are predominantly polyurethanes that are known for their biocompatibility and tunable properties. However, these polymers inherently lack X-ray visibility, which is a significant challenge for their use as implantable materials. Herein, low density, highly porous shape memory polyurethane foams were developed with tungsten nanoparticles dispersed into the foam matrix, at increasing concentrations, to serve as a radiopaque agent. Utilizing X-ray fluoroscopy sufficient visibility of the foams at small geometries was observed. Thermal characterization of the foams indicated altered thermal response and delayed foam actuation with increasing nanoparticle loading (because of restricted network mobility). Mechanical testing indicated decreased toughness and strength for higher loading because of disruption of the SMP matrix. Overall, filler addition imparted x-ray visibility to the SMP foams and allowed for tuned control of the transition temperature and actuation kinetics for the material. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:已经开发出形状记忆聚合物(SMP)泡沫用于神经血管闭塞应用。这些材料主要是聚氨酯,因其生物相容性和可调性而闻名。然而,这些聚合物固有地缺乏X射线可见性,这对于它们用作可植入材料而言是巨大的挑战。本文中,开发了低密度,高度多孔的形状记忆聚氨酯泡沫,其中钨纳米颗粒以越来越高的浓度分散在泡沫基质中​​,以用作不透射线的试剂。使用X射线荧光透视法,可以观察到小几何形状的泡沫具有足够的可见性。泡沫的热表征表明,随着纳米颗粒负载的增加,热响应发生了改变,泡沫的致动延迟(由于网络流动性受到限制)。机械测试表明,由于SMP基体的破坏,韧性和强度降低,从而可承受更高的载荷。总体而言,添加填料可以使SMP泡沫具有X射线可见性,并可以控制材料的转变温度和驱动动力学。版权所有(C)2015 John Wiley&Sons,Ltd.

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