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Polymer Actuated Patient-specific Artery Phantoms for Simulating Stenosis and Dilation

机译:聚合物驱动的患者专用动脉幻象,用于模拟狭窄和扩张

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摘要

This study presents a novel fabrication process for patient-specific bifurcated arterial phantoms integrated with electroactive polymer actuators enabling active control of internal geometries. Device fabrication is achieved via direct ink writing of PDMS within a hydrophilic support gel, resulting in the desired high-resolution 3D structure. Previously, PEDOT:PSS - PDMS bilayer actuators have demonstrated electro-thermomechanical actuation due to hygroscopic effects. Integration of these films with printed PDMS structures has been achieved through spray coating and the polymer formulation has been shown to be conductive and demonstrate actuation with applied heating. Further refinement is required to achieve the required surface finish of printed samples for analysis by particle image velocimetry and obtaining a uniform electroactive polymer coating.
机译:这项研究提出了一种新的制造工艺,该工艺结合了可主动控制内部几何形状的电活性聚合物致动器,用于患者专用的分叉动脉体模。通过在亲水性支撑凝胶内直接墨水书写PDMS,可以实现设备制造,从而获得所需的高分辨率3D结构。以前,PEDOT:PSS-PDMS双层执行器由于吸湿作用而具有电热机械执行器。这些薄膜与印刷的PDMS结构的集成已经通过喷涂完成,并且聚合物配方已显示出导电性,并在施加加热的情况下显示出驱动作用。需要进一步的改进以实现所需的印刷样品的表面光洁度,以通过颗粒图像测速法进行分析并获得均匀的电活性聚合物涂层。

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