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Simple Proposal for Dosimetry with an Elekta iViewGT(TM) Electronic Portal Imaging Device (EPID) Using Commercial Software Modules.

机译:使用商业软件模块使用Elekta iViewGT(TM)电子门成像设备(EPID)进行剂量测定的简单建议。

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BACKGROUND: : An electronic portal imaging device (EPID) is used to control for patient setup and positioning during fractionated radiotherapy. Due to the rising complexity and conformity of irradiation techniques, the demand for an accurate verification of the dose delivered to the patient has also increased. The purpose of this study was to investigate a simple guidance for dosimetry with an Elekta iViewGT(TM) EPID using commercial software modules. MATERIAL AND METHODS: : EPID measurements were performed using an Elekta iViewGT(TM) EPID on a linear accelerator with 6 MV x-ray beam. The EPID signal was studied for reproducibility, as well as characteristics as a function of dose, dose rate, and field size. A series of experiments, comparing the response of the flat panel imager and ionization chamber measurements of dose, determine the parameters for the calibration model. EPID measurements were also compared with calculations of the treatment planning system. RESULTS: : We found a stable response of the EPID signal over a period of 14 months. It showed nonlinearity depending on dose up to 6.8%. There were low oscillations up to 1.2% depending on dose rate. For all fields, the calibrated flat panel profiles match the measured and calculated dose profiles with maximum deviation of 2-3% for the in-field region. In the high gradient areas, higher differences up to 6% were found. CONCLUSIONS: : The gamma evaluation indicates good correlation between predicted and acquired EPID images. The EPID-based pretreatment IMRT verification method will help to improve the quality assurance procedure.
机译:背景技术:电子门禁成像设备(EPID)用于控制分级放疗期间的患者设置和定位。由于辐照技术的复杂性和一致性不断提高,对提供给患者的剂量进行准确验证的需求也增加了。这项研究的目的是研究使用商业软件模块使用Elekta iViewGT(TM)EPID进行剂量测定的简单指南。材料和方法:EPID测量是使用Elekta iViewGT(TM)EPID在具有6 MV X射线束的线性加速器上进行的。研究了EPID信号的可重复性以及与剂量,剂量率和视野大小有关的特性。一系列实验比较了平板成像器的响应和电离室的剂量测量结果,确定了校准模型的参数。 EPID测量值也与治疗计划系统的计算结果进行了比较。结果::我们发现EPID信号在14个月内稳定响应。它显示出非线性,取决于剂量高达6.8%。根据剂量率不同,振荡频率低至1.2%。对于所有场,校准后的平板轮廓与测量和计算的剂量轮廓相匹配,对于场内区域最大偏差为2-3%。在高梯度区域,发现差异最高可达6%。结论::伽马评估表明预测的和采集的EPID图像之间具有良好的相关性。基于EPID的预处理IMRT验证方法将有助于改善质量保证程序。

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