Department of Radiation Oncology, University of Rochester Medical Center, Rochester, New York, USA.
Department of Applied Mathematics, University of Rochester, Rochester, New York, USA.
J Appl Clin Med Phys. 2023 Nov;24(11):e14102. doi: 10.1002/acm2.14102. Epub 2023 Jul 27.
As three-dimensional (3D) printing becomes increasingly common in radiation oncology, proper implementation, usage, and ongoing quality assurance (QA) are essential. While there have been many reports on various clinical investigations and several review articles, there is a lack of literature on the general considerations of implementing 3D printing in radiation oncology departments, including comprehensive process establishment and proper ongoing QA. This review aims to guide radiation oncology departments in effectively using 3D printing technology for routine clinical applications and future developments. We attempt to provide recommendations on 3D printing equipment, software, workflow, and QA, based on existing literature and our experience. Specifically, we focus on three main applications: patient-specific bolus, high-dose-rate (HDR) surface brachytherapy applicators, and phantoms. Additionally, cost considerations are briefly discussed. This review focuses on point-of-care (POC) printing in house, and briefly touches on outsourcing printing via mail-order services.
随着三维(3D)打印在放射肿瘤学中越来越普遍,正确的实施、使用和持续的质量保证(QA)至关重要。虽然已经有许多关于各种临床研究的报告和几篇综述文章,但缺乏关于在放射肿瘤学部门实施 3D 打印的一般考虑因素的文献,包括全面的流程建立和适当的持续 QA。本综述旨在指导放射肿瘤学部门有效使用 3D 打印技术进行常规临床应用和未来的发展。我们根据现有文献和我们的经验,尝试就 3D 打印设备、软件、工作流程和 QA 提供建议。具体而言,我们专注于三个主要应用领域:患者特异性治疗垫、高剂量率(HDR)表面近距离治疗施源器和体模。此外,还简要讨论了成本考虑因素。本综述侧重于现场即时(POC)打印,并简要涉及通过邮购服务进行外包打印。