Biozorb标记物在质子加速乳房部分照射中的剂量学效应。

IF 2.1 Q3 ONCOLOGY
International Journal of Particle Therapy Pub Date : 2021-03-08 eCollection Date: 2021-01-01 DOI:10.14338/IJPT-20-00077.1
Melton D Parham, Salahuddin Ahmad, Hosang Jin
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引用次数: 0

摘要

目的:探讨可生物降解的Biozorb (BZ)标记物在质子加速部分乳房照射(APBI)计划中的剂量学意义。材料和方法:将6个不同的bz放置在内部乳房幻象中获取计算机断层扫描(CT)图像。采用适当的质量密度覆盖BZ钛夹及其周围组织的轮廓校正方法,以尽量减少RayStation规划系统中CT图像的不准确性。每个乳房幻影采用单能质子束(103.23 MeV和8×8 cm2)照射,使用铅笔束扫描质子治疗系统。在一项范围摄动研究中,使用电离室在乳房幻影以下5个深度处测量剂量,并在密度校正方法(S1: 1.6 g/cm3)、原始CT (S2)和钛密度(S3: 4.54 g/cm3) 3种情况下与RayStation计算结果进行比较。对于局部剂量摄动研究,将放射照相EDR2胶片放置在幻影下方0和2厘米处,并与RayStation计算结果进行比较。采用3种情况下的10个APBI方案(经我们的机构审查委员会批准)回顾性检查了扰动的临床效果。结果:在范围摄动研究中,S1模拟与腔室测量结果吻合良好,而在S2和S3模拟中发现了1 ~ 2 mm的过量回拉。电影研究显示局部剂量阴影和干扰剪辑,RayStation无法预测。在方案研究中,3个方案的方案质量没有显著差异。然而,在S3中观察到大量的范围回调。结论:密度校正方法可减小测量值与RayStation预测值之间的剂量和范围差异。应避免由于对范围回调的高估而简单地覆盖已知的BZ夹的物理密度来进行治疗计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Dosimetric Effect of Biozorb Markers for Accelerated Partial Breast Irradiation in Proton Therapy.

Dosimetric Effect of Biozorb Markers for Accelerated Partial Breast Irradiation in Proton Therapy.

Dosimetric Effect of Biozorb Markers for Accelerated Partial Breast Irradiation in Proton Therapy.

Dosimetric Effect of Biozorb Markers for Accelerated Partial Breast Irradiation in Proton Therapy.

Purpose: To investigate dosimetric implications of biodegradable Biozorb (BZ) markers for proton accelerated partial breast irradiation (APBI) plans.

Materials and methods: Six different BZs were placed within in-house breast phantoms to acquire computed tomography (CT) images. A contour correction method with proper mass density overriding for BZ titanium clip and surrounding tissue was applied to minimize inaccuracies found in the CT images in the RayStation planning system. Each breast phantom was irradiated by a monoenergetic proton beam (103.23 MeV and 8×8 cm2) using a pencil-beam scanning proton therapy system. For a range perturbation study, doses were measured at 5 depths below the breast phantoms by using an ionization chamber and compared to the RayStation calculations with 3 scenarios for the clip density: the density correction method (S1: 1.6 g/cm3), raw CT (S2), and titanium density (S3: 4.54 g/cm3). For the local dose perturbation study, the radiographic EDR2 film was placed at 0 and 2 cm below the phantoms and compared to the RayStation calculations. Clinical effects of the perturbations were retrospectively examined with 10 APBI plans for the 3 scenarios (approved by our institutional review board).

Results: In the range perturbation study, the S1 simulation showed a good agreement with the chamber measurements, while excess pullbacks of 1∼2 mm were found in the S2 and S3 simulations. The film study showed local dose shadowing and perturbation by the clips that RayStation could not predict. In the plan study, no significant differences in the plan quality were found among the 3 scenarios. However, substantial range pullbacks were observed for S3.

Conclusion: The density correction method could minimize the dose and range difference between measurement and RayStation prediction. It should be avoided to simply override the known physical density of the BZ clips for treatment planning owing to overestimation of the range pullback.

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来源期刊
International Journal of Particle Therapy
International Journal of Particle Therapy Medicine-Radiology, Nuclear Medicine and Imaging
CiteScore
3.70
自引率
5.90%
发文量
23
审稿时长
20 weeks
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