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Shape Memory Polymer Therapeutic Devices for Stroke

机译:用于中风的形状记忆聚合物治疗仪

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Shape memory polymers (SMPs) are attracting a great deal of interest in the scientific community for their use in applications ranging from light weight structures in space to micro-actuators in MEMS devices. These relatively new materials can be formed into a primary shape, reformed into a stable secondary shape, and then controllably actuated to recover their primary shape. The first part of this presentation will be a brief review of the types of polymeric structures which give rise to shape memory behavior in the context of new shape memory polymers with highly regular network structures recently developed at LLNL for biomedical devices. These new urethane SMPs have improved optical and physical properties relative to commercial SMPs, including improved clarity, high actuation force, and sharper actuation transition. In the second part of the presentation we discuss the development of SMP based devices for mechanically removing neurovascular occlusions which result in ischemic stroke. These devices are delivered to the site of the occlusion in compressed form, are pushed through the occlusion, actuated (usually optically) to take on an expanded conformation, and then used to dislodge and grip the thrombus while it is withdrawn through the catheter.
机译:形状记忆聚合物(SMP)的用途广泛,从空间中的轻型结构到MEMS器件中的微致动器,在科学界引起了极大的兴趣。这些相对较新的材料可以成型为主要形状,重新形成为稳定的辅助形状,然后可控地启动以恢复其主要形状。本演讲的第一部分将简要回顾在LLNL最近为生物医学设备开发的具有高度规则网络结构的新型形状记忆聚合物的背景下,聚合物结构的类型会引起形状记忆行为。相对于商业SMP,这些新型聚氨酯SMP具有改善的光学和物理性能,包括提高的清晰度,较高的驱动力和更清晰的驱动过渡。在演示文稿的第二部分中,我们讨论了基于SMP的设备的开发,该设备用于机械去除导致缺血性中风的神经血管闭塞。这些装置以压缩形式被递送至闭塞部位,被推动通过闭塞,被致动(通常是通过光学方式)以呈现扩张的构型,然后用于在通过导管抽出血栓时将其移出并握住。

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