Cunha J Adam M, Mellis Katherine, Sethi Rajni, Siauw Timmy, Sudhyadhom Atchar, Garg Animesh, Goldberg Ken, Hsu I-Chow, Pouliot Jean
University of California, San Francisco.
J Appl Clin Med Phys. 2015 Jan 8;16(1):5168. doi: 10.1120/jacmp.v16i1.5168.
The purpose of this study was to evaluate the radiation attenuation properties of PC-ISO, a commercially available, biocompatible, sterilizable 3D printing material, and its suitability for customized, single-use gynecologic (GYN) brachytherapy applicators that have the potential for accurate guiding of seeds through linear and curved internal channels. A custom radiochromic film dosimetry apparatus was 3D-printed in PC-ISO with a single catheter channel and a slit to hold a film segment. The apparatus was designed specifically to test geometry pertinent for use of this material in a clinical setting. A brachytherapy dose plan was computed to deliver a cylindrical dose distribution to the film. The dose plan used an 192Ir source and was normalized to 1500 cGy at 1 cm from the channel. The material was evaluated by comparing the film exposure to an identical test done in water. The Hounsfield unit (HU) distributions were computed from a CT scan of the apparatus and compared to the HU distribution of water and the HU distribution of a commercial GYN cylinder applicator. The dose depth curve of PC-ISO as measured by the radiochromic film was within 1% of water between 1 cm and 6 cm from the channel. The mean HU was -10 for PC-ISO and -1 for water. As expected, the honeycombed structure of the PC-ISO 3D printing process created a moderate spread of HU values, but the mean was comparable to water. PC-ISO is sufficiently water-equivalent to be compatible with our HDR brachytherapy planning system and clinical workflow and, therefore, it is suitable for creating custom GYN brachytherapy applicators. Our current clinical practice includes the use of custom GYN applicators made of commercially available PC-ISO when doing so can improve the patient's treatment.
本研究的目的是评估PC-ISO的辐射衰减特性,PC-ISO是一种市售的、生物相容性好、可消毒的3D打印材料,以及其是否适用于定制的一次性妇科近距离放射治疗施源器,这种施源器有可能通过线性和弯曲的内部通道精确引导籽源。使用PC-ISO 3D打印了一个定制的放射变色薄膜剂量测定装置,该装置有一个单一的导管通道和一个用于固定薄膜段的狭缝。该装置是专门为测试与这种材料在临床环境中的使用相关的几何形状而设计的。计算了一个近距离放射治疗剂量计划,以向薄膜提供圆柱形剂量分布。该剂量计划使用192Ir源,并在距通道1 cm处归一化为1500 cGy。通过将薄膜曝光与在水中进行的相同测试进行比较来评估该材料。从该装置的CT扫描中计算出Hounsfield单位(HU)分布,并与水的HU分布和商用妇科施源器的HU分布进行比较。通过放射变色薄膜测量的PC-ISO的剂量深度曲线在距通道1 cm至6 cm之间与水的剂量深度曲线相差在1%以内。PC-ISO的平均HU为-10,水的平均HU为-1。正如预期的那样,PC-ISO 3D打印过程的蜂窝状结构导致HU值有一定程度的分散,但平均值与水相当。PC-ISO具有足够的水等效性,可与我们的高剂量率近距离放射治疗计划系统和临床工作流程兼容,因此,它适用于制造定制的妇科近距离放射治疗施源器。我们目前的临床实践包括,在使用市售PC-ISO制成的定制妇科施源器能够改善患者治疗效果时,就使用这种施源器。