Park Jong In, Ha Sung Whan, Kim Jung-In, Lee Hyunseok, Lee Jaegi, Kim Il Han, Ye Sung-Joon
Department of Transdisciplinary Studies, Program in Biomedical Radiation Sciences, Seoul National University Graduate School of Convergence Science and Technology, Seoul, 151-742, Korea.
Institute of Radiation Medicine, Seoul National University Medical Research Center, Seoul, Korea.
Radiat Oncol. 2016 Aug 31;11(1):112. doi: 10.1186/s13014-016-0686-7.
For breast cancer patients who require electron boost energies between 6 and 9 MeV, an energy degraders (ED) in the 9 MeV beamline was specially designed and manufactured to increase the skin dose of 6 MeV and to reduce the penetration depth of 9 MeV beams.
We used Monte Carlo (MC) techniques as a guide in the design of ED for use with linear accelerators. In order to satisfy percent depth dose (PDD) characteristics and dose profile uniformity in water, the shape and thickness of Lucite® ED in the 9 MeV beamline was iteratively optimized and then manufactured. The ED geometry consists of a truncated cone attached on top of a plane plate, with total central thickness of 1.0 cm. The ED was placed on the lower most scraper of the electron applicator. The PDDs, profiles, and output factors were measured in water to validate the MC-based design.
Skin doses with the EDs increased by 8-9 %, compared to those of the 9 MeV beam. The outputs with the EDs were 0.882 and 0.972 for 10 × 10 and 15 × 15 cm(2) cones, respectively, as compared to that of a conventional 9 MeV beam for a 10 × 10 cm(2) cone. The X-ray contamination remained less than 1.5 %. In-vivo measurements were also performed for three breast boost patients and showed close agreement with expected values.
The optimally designed ED in the 9 MeV beamline provides breast conserving patients with a new energy option of 7 MeV for boost of the shallow tumor bed. It would be an alternative to bolus and thus eliminate inconvenience and concern about the daily variation of bolus setup.
对于需要6至9兆电子伏特电子束进行瘤床追加照射的乳腺癌患者,在9兆电子伏特的束流线上专门设计并制造了一种能量衰减器(ED),以增加6兆电子伏特时的皮肤剂量,并减小9兆电子伏特射线束的穿透深度。
我们采用蒙特卡罗(MC)技术指导用于直线加速器的ED设计。为了满足水中百分深度剂量(PDD)特性和剂量分布均匀性,对9兆电子伏特束流线上的有机玻璃ED的形状和厚度进行了迭代优化,然后进行制造。ED的几何形状由附着在平板顶部的截头圆锥组成,中心总厚度为1.0厘米。ED放置在电子限光筒的最下部刮刀上。在水中测量PDD、剂量分布和输出因子,以验证基于MC的设计。
与9兆电子伏特射线束相比,使用ED时皮肤剂量增加了8 - 9%。对于10×10和15×15平方厘米的射野,使用ED时的输出分别为0.882和0.972,而传统9兆电子伏特射线束对于10×10平方厘米射野的输出为1。X射线污染仍低于1.5%。还对三名接受瘤床追加照射的乳腺癌患者进行了体内测量,结果与预期值密切相符。
9兆电子伏特束流线上经过优化设计的ED为保乳患者提供了一种新的7兆电子伏特能量选项,用于浅表瘤床的追加照射。它可替代组织等效填充物,从而消除因填充物每日设置变化带来的不便和担忧。