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Using 3D printed models for planning and guidance during endovascular intervention: a technical advance

机译:在血管内介入治疗过程中使用3D打印模型进行计划和指导:一项技术进步

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摘要

Three-dimensional (3D) printing applications in medicine have been limited due to high cost and technical difficulty of creating 3D printed objects. It is not known whether patient-specific, hollow, small-caliber vascular models can be manufactured with 3D printing, and used for small vessel endoluminal testing of devices. Manufacture of anatomically accurate, patient-specific, small-caliber arterial models was attempted using data from a patient’s CT scan, free open-source software, and low-cost Internet 3D printing services. Prior to endovascular treatment of a patient with multiple splenic artery aneurysms, a 3D printed model was used preoperatively to test catheter equipment and practice the procedure. A second model was used intraoperatively as a reference. Full-scale plastic models were successfully produced. Testing determined the optimal puncture site for catheter positioning. A guide catheter, base catheter, and microcatheter combination selected during testing was used intraoperatively with success, and the need for repeat angiograms to optimize image orientation was minimized. A difficult and unconventional procedure was successful in treating the aneurysms while preserving splenic function. We conclude that creation of small-caliber vascular models with 3D printing is possible. Free software and low-cost printing services make creation of these models affordable and practical. Models are useful in preoperative planning and intraoperative guidance.
机译:由于高成本和创建3D打印对象的技术难度,在医学中的三维(3D)打印应用受到了限制。尚不清楚是否可以通过3D打印来制造患者专用的中空小口径血管模型,并将其用于设备的小血管腔内测试。尝试使用来自患者CT扫描,免费开源软件和低成本Internet 3D打印服务的数据来制造解剖学上准确的,针对特定患者的小口径动脉模型。在对患有多条脾动脉瘤的患者进行血管内治疗之前,术前使用3D打印模型测试导管设备并进行操作。术中使用第二种模型作为参考。全尺寸塑料模型已成功生产。测试确定了导管定位的最佳穿刺部位。在术中成功使用了在测试过程中选择的引导导管,基础导管和微导管组合,并且最大限度地减少了对重复血管造影以优化图像方向的需求。一种困难且非常规的手术成功地治疗了动脉瘤,同时保留了脾功能。我们得出结论,使用3D打印创建小口径血管模型是可能的。免费软件和低成本打印服务使这些模型的创建变得既经济又实用。模型在术前计划和术中指导中很有用。

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