Algin Oktay, Keles Ayse, Oto Cagdas
Yildirim Beyazit University, Ankara, Turkey.
National MR Research Center (UMRAM), Bilkent University, Ankara, Turkey.
Pol J Radiol. 2022 Oct 15;87:e557-e562. doi: 10.5114/pjr.2022.120520. eCollection 2022.
Using 3-dimensional (3D) printers, the creation of patient-specific models is possible before and after a therapeutic intervention. There are many articles about replicas for training and simulation of aneurysm clipping. However, no paper has focused on 3D replicas obtained from 3-tesla 3D time of flight (3D-TOF) MR angiography for intrasaccular flow diverter (WEB device) embolization of the cerebral aneurysms. In this paper, we aimed to investigate the feasibility of 3D printing models obtained from 3-tesla 3D-TOF data in the management and training of WEB-assisted embolization procedures.
We presented a longitudinal case report with several 3D-TOF MRA prints over time. Three-tesla 3D-TOF data were converted into STL and G-code files using an open-source (3D-Slicer) program. We built patient-specific realistic 3D models of a patient with a middle cerebral artery trifurcation aneurysm, which were able to demonstrate the entire WEB device treatment procedure in the pre-intervention and post-intervention periods. The aneurysmatic segment was well displayed on the STL files and the 3D replicas. They allowed visualization of the aneurysmatic segment and changes within a 6-year follow-up period. We successfully showed the possibility of fast, cheap, and easy production of replicas for demonstration of the aneurysm, the parent vessels, and post-intervention changes in a simple way using an affordable 3D printer.
3D printing is useful for training the endovascular team and the patients, understanding the aneurysm/parent vessels, and choosing the optimal embolization technique/device. 3D printing will potentially lead to greater interventionalist confidence, decreased radiation dose, and improvements in patient safety.
使用三维(3D)打印机,可以在治疗干预前后创建患者特异性模型。有许多关于动脉瘤夹闭训练和模拟复制品的文章。然而,尚无论文关注从3特斯拉三维时间飞跃(3D-TOF)磁共振血管造影获得的3D复制品用于脑动脉瘤囊内血流分流器(WEB装置)栓塞。在本文中,我们旨在研究从3特斯拉3D-TOF数据获得的3D打印模型在WEB辅助栓塞手术管理和训练中的可行性。
我们展示了一份纵向病例报告,随时间有多个3D-TOF MRA打印件。使用开源程序(3D-Slicer)将3特斯拉3D-TOF数据转换为STL和G代码文件。我们构建了一名大脑中动脉三叉动脉瘤患者的患者特异性逼真3D模型,这些模型能够展示干预前和干预后整个WEB装置治疗过程。动脉瘤段在STL文件和3D复制品上显示良好。它们允许在6年随访期内可视化动脉瘤段及其变化。我们成功展示了使用价格合理的3D打印机以简单方式快速、廉价且轻松制作复制品以展示动脉瘤、载瘤血管和干预后变化的可能性。
3D打印有助于培训血管内治疗团队和患者,理解动脉瘤/载瘤血管,并选择最佳栓塞技术/装置。3D打印可能会提高介入医生的信心,降低辐射剂量,并改善患者安全性。