Kim Tae Gon
Department of Neurosurgery, CHA Bundang Medical Center, School of Medicine, CHA University, Seongnam, Korea.
J Cerebrovasc Endovasc Neurosurg. 2021 Mar;23(1):16-22. doi: 10.7461/jcen.2021.E2020.08.005. Epub 2021 Feb 3.
In coil embolization of cerebral aneurysms, it is very important to guide microcatheters to the appropriate location in the aneurysm and stabilize them during procedures. To do this, microcatheters need to be properly shaped. In this study, we aim to use a computer application program and a three-dimensional (3D) printer to make a patientspecific shaped microcatheter.
We simplified, skeletalized, and oversized the existing 3D vascular imaging structures and created the central line structure of the blood vessels. These processes were performed using a computer application program developed by our team. The microcatheters were shaped according to the skeletalized data shape, and the catheterization procedures were simulated using the 3D hollow model of the blood vessel region of interest; the number of hollow models was 10. The compatibility of the microcatheters shaped according to the skeletalized data shape was validated if the microcatheter tip was positioned into the aneurysm.
In all 10 hollow models, the positioning of the microcatheter into the aneurysms was successful following one or two attempts.
When shaping microcatheters during endovascular coil embolization, it may be useful to use central line structures with some expansions customized for a patientspecific vessel using a computer application program and a 3D printer. In the future, it may be necessary to apply this technique to actual patients.
在脑动脉瘤的线圈栓塞治疗中,将微导管引导至动脉瘤内的合适位置并在操作过程中使其稳定非常重要。为此,微导管需要进行适当塑形。在本研究中,我们旨在使用计算机应用程序和三维(3D)打印机制作患者特异性塑形的微导管。
我们对现有的3D血管成像结构进行简化、骨骼化和放大处理,创建血管的中心线结构。这些过程使用我们团队开发的计算机应用程序进行。微导管根据骨骼化数据形状进行塑形,并使用感兴趣的血管区域的3D空心模型模拟插管过程;空心模型数量为10个。如果微导管尖端能够定位到动脉瘤内,则验证根据骨骼化数据形状塑形的微导管的兼容性。
在所有10个空心模型中,经过一两次尝试后,微导管成功定位到动脉瘤内。
在血管内线圈栓塞治疗中对微导管进行塑形时,使用通过计算机应用程序和3D打印机为患者特异性血管定制的带有一些扩张的中心线结构可能会有所帮助。未来,可能有必要将该技术应用于实际患者。