Costello Lucy F, McMenamin Paul G, Quayle Michelle R, Bertram John F, Adams Justin W
Centre for Human Anatomy Education, Department of Anatomy & Developmental Biology, Monash University, Clayton, Victoria, 3800, Australia.
Biomedicine Discovery Institute, Monash University, Clayton, Victoria, 3800, Australia.
Future Sci OA. 2024 Dec 31;10(1):2381956. doi: 10.1080/20565623.2024.2381956. Epub 2024 Aug 13.
To describe advances in 3D data capture and printing that allow photorealistic replicas of human anatomical specimens for education and research, and discuss advantages of current generation printing for replica design and manufacture. We combine surface scanning and computerized tomography datasets that maximize precise color and geometric capture with ultra violet (UV) curable resin printing to replicate human anatomical specimens. We describe the process for color control, print design and translation of photorealistic 3D meshes into 3D prints in durable resins. Current technologies allow previously unachievable ability to capture and reproduce anatomical specimens, and provide a platform for a new generation of 3D printed teaching materials to be designed and used in anatomy education environments.
描述3D数据采集和打印方面的进展,这些进展能够制作出用于教育和研究的逼真人体解剖标本复制品,并讨论当前一代打印技术在复制品设计和制造方面的优势。我们将表面扫描和计算机断层扫描数据集相结合,利用紫外线(UV)可固化树脂打印,最大限度地实现精确的颜色和几何形状捕捉,以复制人体解剖标本。我们描述了颜色控制、打印设计以及将逼真的3D网格转换为耐用树脂3D打印件的过程。当前技术使以前无法实现的捕捉和再现解剖标本的能力成为可能,并为新一代3D打印教材在解剖学教育环境中的设计和使用提供了一个平台。