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用于笔形束扫描质子治疗日常质量保证的原型阵列评估。

Evaluation of a prototype array for daily quality assurance in spot scanning proton therapy.

机构信息

SunNuclear, a Mirion Medical Company, Melbourne, Florida, USA.

Marburg Ion-Beam Therapy Center (MIT), Marburg, Germany.

出版信息

J Appl Clin Med Phys. 2024 Nov;25(11):e14454. doi: 10.1002/acm2.14454. Epub 2024 Oct 2.

Abstract

BACKGROUND

Quality assurance (QA) on a daily basis is an essential task in radiotherapy. In pencil beam scanning proton therapy (PBS), there is a lack of available practical QA devices for routine daily QA in comparison to conventional radiotherapy.

PURPOSE

The aim was to characterize and evaluate a prototype for the task of daily QA routine for PBS with parameters recommended by the AAPM TG 224, that is, the dose output constancy, the spot position and the distal range verification. Furthermore, a time efficient calibration method for fast and reliable daily QA routine was established for the prototype.

METHODS

First, a calibration routine was designed and evaluated, which characterizes the array response and allows for a conversion of the measured signal to clinically needed QA parameters. Finally, a time and resource efficient daily QA routine was developed and tested.

RESULTS

The prototype array can distinguish spot position deviations with sub-millimeter accuracy, as well as changes in the spot size in terms of FWHM with a 2 sensitivity. The range and thus the energy can be evaluated at different depths also with sub-millimeter precision. After some training, the setup of the prototype device took roughly two minutes and the total beamtime was about one minute on cyclotron site and five minutes for synchrotrons.

CONCLUSIONS

A prototype for daily QA in spot scanning proton therapy was evaluated, which features a fast and easy setup and allows for measuring relevant beam parameters, typically within less than a minute of beam time. All QA parameters as recommended by the AAPM TG 224 report can be analyzed with sufficient accuracy.

摘要

背景

在放射治疗中,日常质量保证(QA)是一项基本任务。与传统放射治疗相比,笔形束扫描质子治疗(PBS)缺乏可用的实用 QA 设备来进行常规日常 QA。

目的

本研究旨在对一种原型设备进行特征描述和评估,该原型设备用于执行 AAPM TG 224 推荐的 PBS 日常 QA 任务,即剂量输出稳定性、点位置和远距验证。此外,还为该原型设备建立了一种高效的校准方法,以实现快速可靠的日常 QA 常规。

方法

首先设计并评估了一种校准方案,该方案可对数组响应进行特征描述,并将测量信号转换为临床所需的 QA 参数。最后,开发并测试了一种高效省时的日常 QA 常规。

结果

原型阵列能够以亚毫米的精度区分点位置偏差,以及以 FWHM 的 2 为灵敏度区分光斑大小的变化。还可以在不同深度处评估射程和能量,精度也可达亚毫米级。经过一些训练,原型设备的设置大约需要两分钟,在回旋加速器站点的总束时大约为一分钟,在同步加速器站点的总束时大约为五分钟。

结论

评估了一种用于点状扫描质子治疗的日常 QA 原型设备,其具有快速、简便的设置,并且可以测量相关的光束参数,通常在不到一分钟的束时内完成。可以用足够的精度分析 AAPM TG 224 报告中推荐的所有 QA 参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c74/11540015/07c042b8db21/ACM2-25-e14454-g005.jpg

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