...
首页> 外文期刊>Advances in Radiation Oncology >Low-cost optical scanner and 3-dimensional printing technology to create lead shielding for radiation therapy of facial skin cancer: First clinical case series
【24h】

Low-cost optical scanner and 3-dimensional printing technology to create lead shielding for radiation therapy of facial skin cancer: First clinical case series

机译:低成本光学扫描仪和3维打印技术为面部皮肤癌的放射治疗创建铅屏蔽:首个临床案例系列

获取原文
   

获取外文期刊封面封底 >>

       

摘要

PurposeThree-dimensional printing has been implemented at our institution to create customized treatment accessories, including lead shields used during radiation therapy for facial skin cancer. To effectively use 3-dimensional printing, the topography of the patient must first be acquired. We evaluated a low-cost, structured-light, 3-dimensional, optical scanner to assess the clinical viability of this technology.Methods and materialsFor ease of use, the scanner was mounted to a simple gantry that guided its motion and maintained an optimum distance between the scanner and the object. To characterize the spatial accuracy of the scanner, we used a geometric phantom and an anthropomorphic head phantom. The geometric phantom was machined from plastic and included hemispherical and tetrahedral protrusions that were roughly the dimensions of an average forehead and nose, respectively. Polygon meshes acquired by the optical scanner were compared with meshes generated from high-resolution computed tomography images. Most optical scans contained minor artifacts. Using an algorithm that calculated the distances between the 2 meshes, we found that most of the optical scanner measurements agreed with those from the computed tomography scanner within approximately 1?mm for the geometric phantom and approximately 2?mm for the head phantom. We used this optical scanner along with 3-dimensional printer technology to create custom lead shields for 10 patients receiving orthovoltage treatments of nonmelanoma skin cancers of the face. Patient, tumor, and treatment data were documented.ResultsLead shields created using this approach were accurate, fitting the contours of each patient's face. This process added to patient convenience and addressed potential claustrophobia and medical inability to lie supine.ConclusionsThe scanner was found to be clinically acceptable, and we suggest that the use of an optical scanner and 3-dimensional printer technology become the new standard of care to generate lead shielding for orthovoltage radiation therapy of nonmelanoma facial skin cancer.
机译:目的我们机构已实施了三维打印,以创建定制的治疗配件,包括用于面部皮肤癌的放射治疗期间使用的铅屏蔽。为了有效地使用3D打印,必须首先获取患者的地形。我们评估了一种低成本的结构化三维三维光学扫描仪,以评​​估该技术的临床可行性。方法和材料为了易于使用,将扫描仪安装在一个简单的龙门上,该龙门可引导其运动并保持最佳距离在扫描仪和物体之间。为了表征扫描仪的空间精度,我们使用了几何体模和拟人化头部体模。几何体模是用塑料加工而成的,包括半球形和四面体的突出部分,分别大致相当于平均额头和鼻子的大小。将光学扫描仪获取的多边形网格与从高分辨率计算机断层扫描图像生成的网格进行比较。大多数光学扫描均包含较小的伪影。使用一种计算两个网格之间距离的算法,我们发现大多数光学扫描仪的测量结果与计算机断层扫描仪的测量结果相吻合,几何体模大约在1?mm范围内,头部体模大约在2?mm范围内。我们使用此光学扫描仪以及3维打印机技术为10位接受正电压治疗面部非黑素瘤皮肤癌的患者创建了定制的铅屏蔽。记录患者,肿瘤和治疗数据。结果使用此方法创建的铅盾准确,适合每个患者面部的轮廓。该过程增加了患者的便利性,并解决了潜在的幽闭恐惧症和仰卧的医学缺陷。结论扫描仪在临床上是可以接受的,我们建议使用光学扫描仪和3维打印机技术成为产生新护理的新标准。铅屏蔽用于非黑素瘤面部皮肤癌的正电压放射治疗。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号