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A Monte Carlo model for mean glandular dose evaluation in spot compression mammography

机译:蒙特卡洛模型用于点压式乳腺X线摄影术中平均腺体剂量评估

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摘要

PURPOSE: To characterize the dependence of normalized glandular dose (DgN) on various breast model and image acquisition parameters during spot compression mammography and other partial breast irradiation conditions, and evaluate alternative previously proposed dose-related metrics for this breast imaging modality. METHODS: Using Monte Carlo simulations with both simple homogeneous breast models and patient-specific breasts, three different dose-related metrics for spot compression mammography were compared: the standard DgN, the normalized glandular dose to only the directly irradiated portion of the breast (DgNv), and the DgN obtained by the product of the DgN for full field irradiation and the ratio of the mid-height area of the irradiated breast to the entire breast area (DgNM ). How these metrics vary with field-of-view size, spot area thickness, x-ray energy, spot area and position, breast shape and size, and system geometry was characterized for the simple breast model and a comparison of the simple model results to those with patient-specific breasts was also performed. RESULTS: The DgN in spot compression mammography can vary considerably with breast area. However, the difference in breast thickness between the spot compressed area and the uncompressed area does not introduce a variation in DgN. As long as the spot compressed area is completely within the breast area and only the compressed breast portion is directly irradiated, its position and size does not introduce a variation in DgN for the homogeneous breast model. As expected, DgN is lower than DgNv for all partial breast irradiation areas, especially when considering spot compression areas within the clinically used range. DgNM underestimates DgN by 6.7% for a W/Rh spectrum at 28 kVp and for a 9 x 9 cm2 compression paddle. CONCLUSION: As part of the development of a new breast dosimetry model, a task undertaken by the American Association of Physicists in Medicine and the European Federation of Organizations of Medical Physics, these results provide insight on how DgN and two alternative dose metrics behave with various image acquisition and model parameters.
机译:目的:表征归一化腺体剂量(DgN)在点压缩乳房X线照相术和其他局部乳房照射条件下对各种乳房模型和图像采集参数的依赖性,并评估该乳房成像方式的其他先前提出的剂量相关指标。方法:使用简单均质乳房模型和特定患者乳房的蒙特卡罗模拟,比较了三种不同的剂量相关指标进行点乳房X线照相术:标准DgN,仅对乳房直接照射部分的标准化腺体剂量(DgNv ),以及由DgN的全场照射乘积和所照射的乳房的中高度区域与整个乳房区域之比(DgNM)所获得的DgN。这些指标如何随视野大小,光斑面积厚度,X射线能量,光斑面积和位置,乳房形状和大小以及系统几何形状而变化,用于简单的乳房模型,并对简单模型的结果进行比较还进行了患者特定乳房的检查。结果:乳腺X线摄影中的DgN随乳房区域的不同而有很大差异。但是,点压缩区域和未压缩区域之间的乳房厚度差异不会引起DgN的变化。只要点压缩区域完全在乳房区域内,并且仅直接照射压缩的乳房部分,对于均匀的乳房模型,其位置和大小不会引起DgN的变化。正如预期的那样,对于所有局部乳房照射区域,DgN均低于DgNv,尤其是考虑到临床使用范围内的点压缩区域时。对于28 kVp的W / Rh频谱和9 x 9 cm2的压缩桨,DgNM低估了DgN 6.7%。结论:作为开发新的乳房剂量学模型的一部分,这是美国医学物理学家协会和欧洲医学物理组织联合会承担的任务,这些结果提供了关于DgN和两种替代剂量指标在各种情况下的行为的见解。图像采集和模型参数。

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