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描述瓦里安 Halcyon 直线加速器的室内泄漏和散射辐射。

Characterisation of in-room leakage and scattered radiation for the Varian Halcyon linear accelerator.

机构信息

Icon Cancer Centre, Toowoomba, QLD, Australia.

Icon Group, Brisbane, QLD, Australia.

出版信息

Phys Eng Sci Med. 2022 Mar;45(1):73-81. doi: 10.1007/s13246-021-01084-1. Epub 2021 Nov 19.

DOI:10.1007/s13246-021-01084-1
PMID:34797532
Abstract

Unintended sources of secondary radiation resulting from photon beams in linear accelerators are patient scatter, collimator scatter, scatter from surfaces within the bunker, and head leakage. This work characterises the in-room leakage and scattered radiation for the Varian Halcyon linear accelerator. Scattered and leakage radiation for static gantry angles 0°, 45°, and 90° and largest field size 28 × 28 cm were measured with an ionisation chamber survey meter at a radial distance of 1.5 m from the isocentre. The scatter within the treatment room was characterised with isocontour maps from measurements of 360° arc deliveries with the largest field size 28 × 28 cm at various heights and distances from the isocentre. The transmission through the primary beam stopper was measured with a Farmer ionisation chamber. For static gantry angles, instantaneous dose rate readings were typically around 70 mSv/hr at 1.5 m from the isocentre with lower dose rates at room angles adjacent to the gantry. The head leakage was measured as less than 0.03% of the useful beam. In a full 360° arc, the radiation dose around the Halcyon was coldest in lateral areas, with hotter areas behind and in front of the gantry. The primary beam stopper transmission was measured as 0.019%, reducing the requirement of primary barriers in the shielding design by a factor of 1/500. The results presented in this study can be used to determine the out-of-field dose to patients and to inform bunker shielding designs for Halcyon linear accelerators.

摘要

直线加速器光子射束产生的意外二次辐射源包括患者散射、准直器散射、掩体内部表面散射和机头漏射。本工作对瓦里安 Halcyon 直线加速器的室内漏射和散射辐射进行了特性描述。在距等中心 1.5m 处,使用电离室巡测仪测量了静态旋转架角度为 0°、45°和 90°以及最大射野尺寸为 28×28cm 时的散射和漏射辐射。通过对最大射野尺寸为 28×28cm 的 360°弧形照射进行测量,得到了治疗室内散射的等轮廓图,测量位置为距等中心不同高度和距离处。使用 Farmer 电离室测量了主射束阻挡器的透射。对于静态旋转架角度,在距等中心 1.5m 处,瞬时剂量率读数通常约为 70mSv/hr,而在靠近旋转架的房间角度处,剂量率较低。机头漏射测量值小于有用射束的 0.03%。在整个 360°弧形照射中,Halcyon 周围的辐射剂量在侧面区域最低,在旋转架的背面和正面区域较高。主射束阻挡器的透射率测量值为 0.019%,这将屏蔽设计中主屏蔽的要求降低了 1/500。本研究中的结果可用于确定患者的场外剂量,并为 Halcyon 直线加速器的掩体屏蔽设计提供信息。

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本文引用的文献

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2
Dosimetric Characterization of the Dual Layer MLC System for an O-Ring Linear Accelerator.用于 O 形环直线加速器的双层多叶准直器的剂量学特性。
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3
Characterization of the Halcyon multileaf collimator system.
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Halcyon多叶准直器系统的特性描述。
J Appl Clin Med Phys. 2019 Apr;20(4):106-114. doi: 10.1002/acm2.12568. Epub 2019 Mar 19.
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