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首页> 外文期刊>Medical Physics >Reliable detection of fluence anomalies in EPID-based IMRT pretreatment quality assurance using pixel intensity deviations
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Reliable detection of fluence anomalies in EPID-based IMRT pretreatment quality assurance using pixel intensity deviations

机译:使用像素强度偏差在基于EPID的IMRT预处理质量保证中可靠地检测注量异常

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摘要

Purpose: This work uses repeat images of intensity modulated radiation therapy (IMRT) fields to quantify fluence anomalies (i.e., delivery errors) that can be reliably detected in electronic portal images used for IMRT pretreatment quality assurance. Methods: Repeat images of 11 clinical IMRT fields are acquired on a Varian Trilogy linear accelerator at energies of 6 MV and 18 MV. Acquired images are corrected for output variations and registered to minimize the impact of linear accelerator and electronic portal imaging device (EPID) positioning deviations. Detection studies are performed in which rectangular anomalies of various sizes are inserted into the images. The performance of detection strategies based on pixel intensity deviations (PIDs) and gamma indices is evaluated using receiver operating characteristic analysis. Results: Residual differences between registered images are due to interfraction positional deviations of jaws and multileaf collimator leaves, plus imager noise. Positional deviations produce large intensity differences that degrade anomaly detection. Gradient effects are suppressed in PIDs using gradient scaling. Background noise is suppressed using median filtering. In the majority of images, PID-based detection strategies can reliably detect fluence anomalies of 5 in ~1 mm 2 areas and 2 in ~20 mm 2 areas. Conclusions: The ability to detect small dose differences (2) depends strongly on the level of background noise. This in turn depends on the accuracy of image registration, the quality of the reference image, and field properties. The longer term aim of this work is to develop accurate and reliable methods of detecting IMRT delivery errors and variations. The ability to resolve small anomalies will allow the accuracy of advanced treatment techniques, such as image guided, adaptive, and arc therapies, to be quantified.
机译:目的:这项工作使用强度调制放射治疗(IMRT)场的重复图像来量化能可靠地在用于IMRT预处理质量保证的电子门图像中检测到的注量异常(即输送错误)。方法:在Varian Trilogy线性加速器上以6 MV和18 MV的能量采集11个临床IMRT场的重复图像。校正获取的图像的输出变化并进行配准,以最大程度地减少线性加速器和电子门成像设备(EPID)定位偏差的影响。执行检测研究,其中将各种大小的矩形异常插入到图像中。使用接收器工作特性分析评估基于像素强度偏差(PID)和伽玛指数的检测策略的性能。结果:配准图像之间的残留差异是由于颌骨和多叶准直器叶片的分数位置偏差以及成像器噪声造成的。位置偏差会产生较大的强度差异,从而降低异常检测能力。使用渐变缩放可在PID中抑制渐变效果。使用中值滤波可以抑制背景噪声。在大多数图像中,基于PID的检测策略可以可靠地检测到5〜1 mm 2区域和2〜20 mm 2区域的注量异常。结论:检测小剂量差异的能力(2)在很大程度上取决于背景噪声的水平。这又取决于图像配准的精度,参考图像的质量和场属性。这项工作的长期目标是开发准确可靠的方法来检测IMRT传递错误和变化。解决小异常现象的能力将可以量化高级治疗技术的准确性,例如图像引导疗法,自适应疗法和电弧疗法。

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