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首页> 外文期刊>Medical Physics >Dose distribution of a 125 keV mean energy microplanar x-ray beam for basic studies on microbeam radiotherapy.
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Dose distribution of a 125 keV mean energy microplanar x-ray beam for basic studies on microbeam radiotherapy.

机译:125 keV平均能量的微平面x射线束的剂量分布,用于微束放射治疗的基础研究。

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摘要

A multislit collimator was designed and fabricated for basic studies on microbeam radiation therapy (MRT) with an x-ray energy of about 100 keV. It consists of 30 slits that are 25 microm high, 30 mm wide, and 5 mm thick in the beam direction. The slits were made of 25 microm-thick polyimide sheets that were separated by 175 microm-thick tungsten sheets. The authors measured the dose distribution of a single microbeam with a mean energy of 125 keV by a scanning slit method using a phosphor coupled to a charge coupled device camera and found that the ratios of the dose at the center of a microbeam to that at midpositions to adjacent slits were 1050 and 760 for each side of the microbeam. This dose distribution was well reproduced by the Monte Carlo simulation code PHITS.
机译:设计并制造了多缝准直仪,用于X射线能量约为100 keV的微束放射疗法(MRT)的基础研究。它由30个狭缝组成,这些狭缝在光束方向上高25微米,宽30毫米,厚5毫米。狭缝由25微米厚的聚酰亚胺片制成,并由175微米厚的钨片隔开。作者使用耦合到电荷耦合器件照相机的荧光粉,通过扫描狭缝法测量了平均能量为125 keV的单个微束的剂量分布,发现微束中心处的剂量与中间位置处的剂量之比对于微束的每一侧,相邻狭缝的“”分别为1050和760。蒙特卡罗模拟代码PHITS很好地再现了这种剂量分布。

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