Department of Radiation Oncology, Wake Forest School of Medicine, Winston-Salem, North Carolina.
Department of Radiation Oncology, Wake Forest School of Medicine, Winston-Salem, North Carolina.
Pract Radiat Oncol. 2019 Jul-Aug;9(4):e417-e421. doi: 10.1016/j.prro.2019.03.005. Epub 2019 Mar 27.
Three-dimensional printing has produced customized bolus during radiation therapy for superficial tumors along irregular skin surfaces. In comparison, traditional bolus materials are often difficult to manipulate for a proper fit. Current 3-dimensional printed boluses are made from either preexisting computed tomography scans or complex surface scanning methods. Herein, we introduce an inexpensive, convenient approach to generate a 3-dimensional printed bolus from surface scanning technology available in common smartphones.
A three-dimensional printed bolus was designed using surface scans from iPhone X true depth cameras and a low-cost 3-dimensional printer. The percentage density infill was adjusted to achieve tissue equivalence. To evaluate the clinical feasibility, fit against the skin surface and radiation dose distribution were compared with those of the traditional bolus.
We fabricated a customized 3-dimensional printed bolus for different areas of the face using an iPhone X camera and inexpensive commercially available 3-dimensional printer. When printed at 100% density, the bolus material approximated soft tissue/water and provided an equivalent dose distribution to that found with standard bolus materials on direct comparison. The bolus material is inexpensive and produces an ideal fit with the scanned anatomy.
We present a simplified method of highly customized bolus production that requires minimal experience with computer modeling programs and can be accomplished with an iPhone true depth camera.
在针对不规则皮肤表面的浅表肿瘤进行放射治疗时,三维打印已产生了定制的挡块。相比之下,传统的挡块材料通常难以贴合。目前的三维打印挡块是由预先存在的计算机断层扫描或复杂的表面扫描方法制成的。在此,我们介绍一种从常见智能手机中可用的表面扫描技术生成三维打印挡块的经济便捷方法。
使用 iPhone X 真深度相机和低成本的三维打印机对面部进行三维扫描,设计出三维打印挡块。调整百分比密度填充以达到组织等效性。为了评估临床可行性,比较了与传统挡块的贴合度和辐射剂量分布。
我们使用 iPhone X 相机和廉价的商用三维打印机为面部不同区域制造了定制的三维打印挡块。当以 100%密度打印时,挡块材料近似软组织/水,并与标准挡块材料的直接比较发现提供了等效的剂量分布。挡块材料价格便宜,与扫描的解剖结构贴合理想。
我们提出了一种简化的高度定制挡块制作方法,该方法仅需很少的计算机建模程序经验,并且可以使用 iPhone 真深度相机完成。