Cone beam CT (CBCT) in radiotherapy: Assessment of doses using a pragmatic setup in an international setting

IF 2.7 3区 医学 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Physica Medica-European Journal of Medical Physics Pub Date : 2025-03-01 Epub Date: 2025-02-21 DOI:10.1016/j.ejmp.2025.104937
Mario Djukelic , Colin John Martin , Abdullah Abuhaimed , Tomas Kron , Sebastien Gros , Tim Wood , Piotr Pankowski , Ngie Min Ung , Jenia Vassileva , María Cristina Plazas , Snezana Vostinic , Anja Lazovic , Ana Cravo Sá , Isabelle Nilsson , Marianna Koutrouli , Lavanya Murugan , Hein Fourie , Aliaksandr Miadzvetski , Buthaina Al Ameri , Mirta Dumancic , William Small Jr.
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Abstract

Introduction

The imaging modality kV CBCT on linear accelerators (linacs) is utilised to verify positioning and anatomy in cancer patients undergoing radiotherapy treatment. There is a need for optimisation of radiological protection in kV CBCT imaging protocols to avoid unnecessarily high exposures to normal tissues surrounding the target.

Methods

A network of ICRP mentees from 23 countries were surveyed for available dosimetry equipment. Standardised measurements on CBCT linac imaging systems were conducted using a cone beam dose index (CBDI) devised as a straightforward measurement for wide beam doses. Measurements were made with (a) 100 mm ionisation chambers or (b) 0.6 cc Farmer ionisation chambers and cylindrical CT PMMA phantoms, and (c) an alternative setup of Farmer chambers and cubical phantoms comprised of slabs of water equivalent material readily available in radiotherapy centres. The measurements were compared with Monte Carlo (MC) simulations.

Results

The survey showed limited availability for the reference setup using 100 mm chambers and CT phantoms. Correction factors were derived to convert normalised CBDI from alternative setups to the reference setup and are on average within 2% of MC simulations.

Conclusion

The slab phantom in combination with a Farmer chamber provides an alternative to quantify CBCT radiation dose indices from linac-based image-guided radiotherapy using materials accessible in most centres worldwide. A method is presented to use correction factors for Varian Truebeam linacs if traditional 100 mm chambers and cylindrical CT phantoms are not available. This will enable most radiotherapy centres across the world to engage in meaningful imaging dose measurement and optimisation.
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锥形束CT (CBCT)在放射治疗中的应用:在国际环境中使用实用装置评估剂量
在线性加速器(linacs)上的成像模式kV CBCT用于验证接受放射治疗的癌症患者的定位和解剖。有必要优化kV CBCT成像方案中的放射防护,以避免不必要的高暴露于目标周围的正常组织。方法对来自23个国家的ICRP学员网络进行了剂量测定设备调查。采用锥束剂量指数(CBDI)对CBCT直线成像系统进行了标准化测量,该指数被设计为宽束剂量的直接测量。测量使用(a) 100毫米电离室或(b) 0.6毫升Farmer电离室和圆柱形CT PMMA模型,以及(c)由放射治疗中心现成的水等效材料板组成的Farmer电离室和立方体模型的替代设置。测量结果与蒙特卡罗(MC)模拟结果进行了比较。结果调查显示,使用100毫米腔室和CT幻象的参考装置的可用性有限。导出校正因子,将标准化的CBDI从替代设置转换为参考设置,平均在MC模拟的2%以内。结论:利用世界上大多数中心都能获得的材料,slab幻影与Farmer腔室相结合,为量化基于直线的图像引导放射治疗的CBCT辐射剂量指数提供了另一种选择。提出了在传统的100mm腔室和圆柱CT幻象不可用的情况下,对瓦里安Truebeam直线机使用校正因子的方法。这将使世界上大多数放射治疗中心能够从事有意义的成像剂量测量和优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.80
自引率
14.70%
发文量
493
审稿时长
78 days
期刊介绍: Physica Medica, European Journal of Medical Physics, publishing with Elsevier from 2007, provides an international forum for research and reviews on the following main topics: Medical Imaging Radiation Therapy Radiation Protection Measuring Systems and Signal Processing Education and training in Medical Physics Professional issues in Medical Physics.
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