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高能近距离治疗剂量学中电离室束流品质校正因子的研究。

Investigations on the beam quality correction factor for ionization chambers in high-energy brachytherapy dosimetry.

机构信息

Institute of Medical Physics and Radiation Protection (IMPS), University of Applied Sciences, Gießen, Germany.

Department for Radiotherapy and Radiooncology, University Medical Center Heidelberg, Heidelberg, Germany.

出版信息

Phys Med Biol. 2024 Jul 30;69(16). doi: 10.1088/1361-6560/ad638b.

Abstract

. To enhance the investigations on MC calculated beam quality correction factors of thimble ionization chambers from high-energy brachytherapy sources and to develop reliable reference conditions in source and detector setups in water.. The response of five different ionization chambers from PTW-Freiburg and Standard Imaging was investigated for irradiation by a high dose rate Ir-192 Flexisource in water. For a setup in a Beamscan water phantom, Monte Carlo simulations were performed to calculate correction factors for the chamber readings. After exact positioning of source and detector the absorbed dose rate at the TG-43 reference point at one centimeter nominal distance from the source was measured using these factors and compared to the specification of the calibration certificate. The Monte Carlo calculations were performed using the restricted cema formalism to gain further insight into the chamber response. Calculations were performed for the sensitive volume of the chambers, determined by the methods currently used in investigations of dosimetry in magnetic fields.. Measured dose rates and values from the calibration certificate agreed within the combined uncertainty (= 2) for all chambers except for one case in which the full air cavity was simulated. The chambers showed a distinct directional dependence. With the restricted cema formalism calculations it was possible to examine volume averaging and energy dependence of the perturbation factors contributing to the beam quality correction factor also differential in energy.. This work determined beam quality correction factors to measure the absorbed dose rate from a brachytherapy source in terms of absorbed dose to water for a variety of ionization chambers. For the accurate dosimetry of brachytherapy sources with ionization chambers it is advisable to use correction factors based on the sensitive volume of the chambers and to take account for the directional dependence of chamber response.

摘要

为了提高对高能近距离治疗源中筒式电离室 MC 计算射束质量校正因子的研究,并开发水中源和探测器设置的可靠参考条件。研究了来自 PTW-Freiburg 和 Standard Imaging 的五个不同电离室在水中高剂量率 Ir-192 Flexisource 照射下的响应。对于 Beamscan 水模体中的设置,进行了蒙特卡罗模拟,以计算腔室读数的校正因子。在精确定位源和探测器后,使用这些因子测量在距源一厘米标称距离处 TG-43 参考点处的吸收剂量率,并与校准证书的规范进行比较。使用受限 CEMA 形式主义进行蒙特卡罗计算,以更深入地了解腔室响应。计算是针对腔室的敏感体积进行的,敏感体积由当前在磁场中剂量学研究中使用的方法确定。除了一个情况,即模拟了完整的空气空腔,所有腔室的测量剂量率和校准证书上的值都在合并不确定度(=2)范围内一致。腔室表现出明显的方向依赖性。使用受限 CEMA 形式主义计算,可以检查体积平均和能量依赖性的微扰因子,这些因子也对射束质量校正因子有影响,并且在能量上也有差异。这项工作确定了射束质量校正因子,以测量各种电离室从近距离治疗源吸收的水吸收剂量率。为了准确测量电离室的近距离治疗源剂量,建议使用基于腔室敏感体积的校正因子,并考虑腔室响应的方向依赖性。

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