Department of Health Technology and Biology, Federal Institute of Bahia, Salvador, BA, Brazil.
Radiologic Technologist, Federal Institute of Bahia, Salvador, BA, Brazil.
Phys Med. 2019 Sep;65:29-32. doi: 10.1016/j.ejmp.2019.07.026. Epub 2019 Aug 11.
The aim of this work was to develop a low-cost, 3D printed tool to evaluate X-ray beam alignment and collimation. The study was divided into two phases: 1) the development of 3D printed prototypes; and 2) a comparison with a commercial test object. A 3D printer was used to develop two objects that utilized 40% infill and were each printed with a different filament: PLA (polylactic acid) and ABS (acrylonitrile butadiene styrene). Two pieces of X-ray equipment were used for the beam collimation and beam alignment tests. For validation, a standard commercial tool was used, and the evaluation results of the prototypes were compared with those of the commercial tool. The tests performed with both the prototypes and the standard tool showed a deviation of ±1 cm between the light field and the radiation field. The central ray's perpendicularity was evaluated through the coincidence between the rod and the metallic circle. The test of central ray alignment conducted with a standard tool revealed an axis perpendicularity of 1.5°, while both prototypes presented axis perpendicularities of less than 3°. The prototypes proved to be effective tools and were easy to handle. The variety of printing materials that can be used and the ease with which the filaments can be acquired contribute to a low cost of production.
本研究旨在开发一种低成本、3D 打印的工具,以评估 X 射线束的准直和对准情况。研究分为两个阶段:1)开发 3D 打印原型;2)与商业测试对象进行比较。使用 3D 打印机开发了两个利用 40%填充的物体,每个物体都使用不同的细丝进行打印:PLA(聚乳酸)和 ABS(丙烯腈-丁二烯-苯乙烯)。使用两种 X 射线设备进行光束准直和光束对准测试。为了进行验证,使用了标准的商业工具,并将原型的评估结果与商业工具进行了比较。原型和标准工具进行的测试均显示,光场和辐射场之间的偏差在±1cm 以内。通过棒和金属圈的重合来评估中心射线的垂直度。使用标准工具进行的中心射线对准测试显示,轴的垂直度为 1.5°,而两个原型的轴垂直度均小于 3°。原型被证明是有效的工具,且易于操作。可以使用多种打印材料,并且易于获取细丝,这有助于降低生产成本。