Kaufmann Reinhard, Deutschmann Michael, Meissnitzer Matthias, Scharinger Bernhard, Hergan Klaus, Vötsch Andreas, Dinges Christian, Hecht Stefan
Department of Radiology, University Hospital Salzburg, Paracelsus Medical University, Salzburg, Austria.
Clinic of Cardiac, Vascular and Endovascular Surgery, University Hospital Salzburg, Paracelsus Medical University, Salzburg, Austria.
Int J Bioprint. 2023 Jan 13;9(2):669. doi: 10.18063/ijb.v9i2.669. eCollection 2023.
306Three-dimensional (3D)-printed vascular models for cardiovascular surgery planning and endovascular procedure simulations often lack realistic biological tissues mimicking material properties, including flexibility or transparency, or both. Transparent silicone or silicone-like vascular models were not available for end-user 3D printers and had to be fabricated using complex and cost-intensive workarounds. This limitation has now been overcome by novel liquid resins with biological tissue properties. These new materials enable simple and low-cost fabrication of transparent and flexible vascular models using end-user stereolithography 3D printers and are promising technological advances toward more realistic patient-specific, radiation-free procedure simulations and planning in cardiovascular surgery and interventional radiology. This paper presents our patient-specific manufacturing process of fabricating transparent and flexible vascular models using freely available open-source software for segmentation and 3D post-processing, aiming to facilitate the integration of 3D printing into clinical care.
用于心血管手术规划和血管内手术模拟的三维(3D)打印血管模型通常缺乏模仿材料特性的逼真生物组织,包括柔韧性或透明度,或两者皆无。透明硅胶或类似硅胶的血管模型无法用于终端用户3D打印机,必须使用复杂且成本高昂的变通方法来制造。现在,具有生物组织特性的新型液体树脂克服了这一限制。这些新材料能够使用终端用户立体光刻3D打印机简单且低成本地制造透明且灵活的血管模型,并且朝着在心血管手术和介入放射学中进行更逼真的针对患者的无辐射手术模拟和规划迈出了有前景的技术进步。本文介绍了我们使用免费开源软件进行分割和3D后处理来制造透明且灵活的血管模型的针对患者的制造过程,旨在促进3D打印融入临床护理。