Chmura Jennifer, Erdman Arthur, Ehler Eric, Lawrence Jessica, Wilke Christopher T, Rogers Brent, Ferreira Clara
Biomedical Engineering Department, University of Minnesota, Minneapolis, MN, USA.
Medical Devices Center, University of Minnesota, Minneapolis, MN, USA.
3D Print Med. 2019 Jul 22;5(1):10. doi: 10.1186/s41205-019-0045-z.
Skin tumors are the most predominant form of cancer in the United States. Radiation therapy, particularly high dose-rate (HDR) brachytherapy, provides an effective form of cancer control when surgery is not possible or when surgical margins are incomplete. The treatment of superficial skin cancers on irregular surfaces, such as the nose, lips or ears, present challenges for treatment. To address this issue, we designed and constructed a novel conformal superficial brachytherapy (CSBT) device prototype to improve patient-specific treatment for complex sites. The device is mounted on an automated remote after-loader, providing limited radiation exposure to operating personnel, is inexpensive to construct, and offers a unique method of conformal surface radiation therapy.
A prototype of the CSBT device was successfully manufactured. A computed tomography (CT) scan of a Rando phantom was used to plan the target treatment area. The CSBT device has a hexagonal lattice array of retractable rods with radioactive seeds placed at the tip of each rod. A 3D-printed conformal shape insert with a hexagonal array of cylindrical projections of varying length is driven into the rods by a single linear actuator. The rods are displaced to conform to the patient's skin. This elegant device design permits the delivery of radiation to complex targets using readily available beta-emitting radionuclides, such as Yttrium-90 (Y-90) or Strontium-90 (Sr-90).
A working prototype of a novel CSBT device was built using 3D-printing technology that provides a safe and economically attractive means of improving radiation delivery to complex treatment sites.
皮肤肿瘤是美国最主要的癌症形式。当无法进行手术或手术切缘不完整时,放射治疗,尤其是高剂量率近距离放射治疗,是一种有效的癌症控制方式。在诸如鼻子、嘴唇或耳朵等不规则表面上治疗浅表皮肤癌存在治疗挑战。为解决这一问题,我们设计并构建了一种新型适形浅表近距离放射治疗(CSBT)设备原型,以改善针对复杂部位的个体化治疗。该设备安装在自动遥控后装治疗机上,可减少操作人员的辐射暴露,制造成本低廉,并提供了一种独特的适形表面放射治疗方法。
成功制造出CSBT设备的原型。使用Rando人体模型的计算机断层扫描(CT)来规划靶治疗区域。CSBT设备具有可伸缩棒的六边形点阵阵列,放射性种子置于每根棒的尖端。一个带有不同长度圆柱形凸起六边形阵列的3D打印适形形状插入件由单个线性致动器驱动进入棒中。棒被移动以贴合患者皮肤。这种精巧的设备设计允许使用现成的发射β射线的放射性核素,如钇-90(Y-90)或锶-90(Sr-90),对复杂靶区进行放射治疗。
利用3D打印技术制造出了新型CSBT设备的工作原型,该原型为改善向复杂治疗部位的放射治疗提供了一种安全且经济上有吸引力的方法。