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用于机械溶栓的血管内振动聚合物驱动器探针的研制:一项体模研究。

Development of endovascular vibrating polymer actuator probe for mechanical thrombolysis: a phantom study.

机构信息

Department of Radiology, Seoul National University College of Medicine, Chongno-gu, Seoul, Korea.

出版信息

ASAIO J. 2011 Jul-Aug;57(4):286-92. doi: 10.1097/MAT.0b013e31822188ce.

Abstract

In this study, we propose a new method for enhancement of intraarterial thrombolysis using an ionic polymer-metal composite (IPMC) actuator. The purpose of this study was to test the mechanical thrombolysis efficiency of IPMC actuators and evaluate the endovascular vibrating polymer actuator probe for mechanical thrombolysis in a phantom model; 2 × 1 × 15 mm (2 mm in width, 1 mm in thickness, and 15 mm in length) and 0.8 × 0.8 × 10 mm (0.8 mm in width, 0.8 mm in thickness, and 10 mm in length) IPMC actuators were fabricated by stacking five and four Nafion-117 films, respectively. We manufactured the endovascular vibrating polymer actuator probe, for which thrombolysis efficiency was tested in a vascular phantom. The phantom study using 2 × 1 × 15 mm IPMC actuators showed that 5 Hz actuation is the optimal frequency for thrombolysis under both 2 and 3 V, when blood clot was not treated with rtPA, and when exposed to rtPA, IPMC actuators under the optimized condition (3 V, 5 Hz, and 5 min) significantly increased the thrombolysis degree compared with control and other experimental groups (p < 0.05). In addition, 0.8 × 0.8 × 10 mm IPMC actuators also revealed a significantly higher thrombolysis degree under the optimized condition than the control and rtPA only groups (p < 0.05). Finally, the fabricated probe using 0.8 × 0.8 × 10 mm IPMC actuators also incurred higher thrombolysis degree under the optimized condition than the control and rtPA only groups (p < 0.05). A vibrating polymer actuator probe is a feasible device for intravascular thrombolysis, and further study in an animal model is warranted.

摘要

在这项研究中,我们提出了一种使用离子聚合物-金属复合(IPMC)执行器增强动脉内溶栓的新方法。本研究的目的是测试 IPMC 执行器的机械溶栓效率,并评估血管内振动聚合物执行器探针在模型中的机械溶栓效果;我们制作了 2×1×15mm(宽 2mm,厚 1mm,长 15mm)和 0.8×0.8×10mm(宽 0.8mm,厚 0.8mm,长 10mm)两种 IPMC 执行器,分别由堆叠五层和四层 Nafion-117 薄膜制成。我们制造了血管内振动聚合物执行器探针,并在血管模型中测试了其溶栓效率。使用 2×1×15mm IPMC 执行器进行的模型研究表明,在没有接受 rtPA 治疗且施加 2V 和 3V 电压时,5Hz 的驱动频率是溶栓的最佳频率,在优化条件(3V、5Hz 和 5min)下,IPMC 执行器显著提高了与对照组和其他实验组相比的溶栓程度(p<0.05)。此外,在优化条件下,0.8×0.8×10mm IPMC 执行器也显示出比对照组和仅接受 rtPA 组更高的溶栓程度(p<0.05)。最后,使用 0.8×0.8×10mm IPMC 执行器制造的探针在优化条件下也比对照组和仅接受 rtPA 组的溶栓程度更高(p<0.05)。振动聚合物执行器探针是一种可行的血管内溶栓装置,需要在动物模型中进一步研究。

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