Department of Radiology, George Washington University Hospital, 900 23rd St. NW, Suite G2092, Washington, DC, 20037, USA.
J Digit Imaging. 2018 Feb;31(1):133-143. doi: 10.1007/s10278-017-0012-4.
In the context of medical three-dimensional (3D) printing, in addition to 3D reconstruction from cross-sectional imaging, graphic design plays a role in developing and/or enhancing 3D-printed models. A custom prototype modular 3D model of the liver was graphically designed depicting segmental anatomy of the parenchyma containing color-coded hepatic vasculature and biliary tree. Subsequently, 3D printing was performed using transparent resin for the surface of the liver and polyamide material to develop hollow internal structures that allow for passage of catheters and wires. A number of concepts were incorporated into the model. A representative mass with surrounding feeding arterial supply was embedded to demonstrate tumor embolization. A straight narrow hollow tract connecting the mass to the surface of the liver, displaying the path of a biopsy device's needle, and the concept of needle "throw" length was designed. A connection between the middle hepatic and right portal veins was created to demonstrate transjugular intrahepatic portosystemic shunt (TIPS) placement. A hollow amorphous structure representing an abscess was created to allow the demonstration of drainage catheter placement with the formation of pigtail tip. Percutaneous biliary drain and cholecystostomy tube placement were also represented. The skills of graphic designers may be utilized in creating highly customized 3D-printed models. A model was developed for the demonstration and simulation of multiple hepatobiliary interventions, for training purposes, patient counseling and consenting, and as a prototype for future development of a functioning interventional phantom.
在医学三维(3D)打印的背景下,除了从横截面成像进行 3D 重建外,图形设计在开发和/或增强 3D 打印模型方面也发挥着作用。设计了一个定制的、模块化的肝脏 3D 模型,该模型对肝脏的分段解剖结构进行了图形设计,其中包含了彩色编码的肝血管和胆道系统。随后,使用透明树脂对肝脏表面进行 3D 打印,使用聚酰胺材料开发内部中空结构,以便导管和电线穿过。模型中融入了许多概念。嵌入了一个具有周围供血动脉的代表性肿块,以演示肿瘤栓塞。设计了一条连接肿块和肝脏表面的直而狭窄的中空通道,显示出活检设备的针头路径和“投掷”长度的概念。创建了中肝静脉和右门静脉之间的连接,以演示经颈静脉肝内门体分流术(TIPS)的放置。创建了一个代表脓肿的中空无定形结构,以允许演示引流导管的放置,并形成猪尾尖端。还演示了经皮胆道引流和胆囊造口术。图形设计师的技能可用于创建高度定制的 3D 打印模型。为了演示和模拟多种肝胆介入治疗,为培训、患者咨询和同意以及作为未来功能性介入模拟原型的开发,开发了一个模型。