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使用均整和非均整射束时,由于碘油位置深度导致的能谱和剂量增强。

Energy spectrum and dose enhancement due to the depth of the Lipiodol position using flattened and unflattened beams.

作者信息

Kawahara Daisuke, Ozawa Shuichi, Saito Akito, Kimura Tomoki, Suzuki Tatsuhiko, Tsuneda Masato, Tanaka Sodai, Hioki Kazunari, Nakashima Takeo, Ohno Yoshimi, Murakami Yuji, Nagata Yasushi

机构信息

Radiation Therapy Section, Department of Clinical Support, Hiroshima University Hospital, Japan.

Medical and Dental Sciences Course, Graduate School of Biomedical & Health Sciences, Hiroshima University, Japan.

出版信息

Rep Pract Oncol Radiother. 2018 Jan-Feb;23(1):50-56. doi: 10.1016/j.rpor.2017.12.004. Epub 2018 Jan 12.

Abstract

AIM

Lipiodol was used for stereotactic body radiotherapy combining trans arterial chemoembolization. Lipiodol used for tumour seeking in trans arterial chemoembolization remains in stereotactic body radiation therapy. In our previous study, we reported the dose enhancement effect in Lipiodol with 10× flattening-filter-free (FFF). The objective of our study was to evaluate the dose enhancement and energy spectrum of photons and electrons due to the Lipiodol depth with flattened (FF) and FFF beams.

METHODS

FF and FFF for 6 MV beams from TrueBeam were used in this study. The Lipiodol (3 × 3 × 3 cm) was located at depths of 1, 3, 5, 10, 20, and 30 cm in water. The dose enhancement factor (DEF) and the energy fluence were obtained by Monte Carlo calculations of the particle and heavy ion transport code system (PHITS).

RESULTS

The DEFs at the centre of Lipiodol with the FF beam were 6.8, 7.3, 7.6, 7.2, 6.1, and 5.7% and those with the FFF beam were 20.6, 22.0, 21.9, 20.0, 12.3, and 12.1% at depths of 1, 3, 5, 10, 20, and 30 cm, respectively, where Lipiodol was located in water. Moreover, spectrum results showed that more low-energy photons and electrons were present at shallow depth where Lipiodol was located in water. The variation in the low-energy spectrum due to the depth of the Lipiodol position was more explicit with the FFF beam than that with the FF beam.

CONCLUSIONS

The current study revealed variations in the DEF and energy spectrum due to the depth of the Lipiodol position with the FF and FFF beams. Although the FF beam could reduce the effect of energy dependence due to the depth of the Lipiodol position, the dose enhancement was overall small. To cause a large dose enhancement, the FFF beam with the distance of the patient surface to Lipiodol within 10 cm should be used.

摘要

目的

将碘油用于立体定向体部放射治疗联合经动脉化疗栓塞术。经动脉化疗栓塞术中用于肿瘤定位的碘油在立体定向体部放射治疗中依然存在。在我们之前的研究中,我们报道了10倍无均整器(FFF)条件下碘油的剂量增强效应。本研究的目的是评估在有均整(FF)束流和FFF束流的情况下,由于碘油深度所导致的光子和电子的剂量增强及能谱情况。

方法

本研究使用了TrueBeam的6兆伏FF和FFF束流。将碘油(3×3×3厘米)置于水中1、3、5、10、20和30厘米的深度处。通过粒子与重离子传输代码系统(PHITS)的蒙特卡罗计算获得剂量增强因子(DEF)和能量注量。

结果

在水中碘油所在位置,深度为1、3、5、10、20和30厘米时,FF束流条件下碘油中心处的DEF分别为6.8%、7.3%、7.6%、7.2%、6.1%和5.7%,FFF束流条件下分别为20.6%、22.0%、21.9%、20.0%、12.3%和12.1%。此外,能谱结果显示,在水中碘油所在的浅深度处存在更多低能光子和电子。FFF束流条件下,因碘油位置深度导致的低能谱变化比FF束流条件下更明显。

结论

当前研究揭示了在FF和FFF束流下,由于碘油位置深度导致的DEF和能谱变化。尽管FF束流可降低因碘油位置深度导致的能量依赖性效应,但总体剂量增强较小。若要实现较大的剂量增强,应使用患者体表到碘油距离在10厘米以内的FFF束流。

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