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首页> 外文期刊>Medical Physics >An edge spread technique for measurement of the scatter-to-primary ratio in mammography.
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An edge spread technique for measurement of the scatter-to-primary ratio in mammography.

机译:边缘扩散技术,用于在乳腺X射线摄影术中测量散射与原始比率。

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摘要

An experimental measurement technique that directly measures the magnitude and spatial distribution of scatter in relation to primary radiation is presented in this work. The technique involves the acquisition of magnified edge spread function (ESF) images with and without scattering material present. The ESFs are normalized and subtracted to yield scatter-to-primary ratios (SPRs), along with the spatial distributions of scatter and primary radiation. Mammography is used as the modality to demonstrate the ESF method, which is applicable to all radiographic environments. Sets of three images were acquired with a modified clinical mammography system employing a flat panel detector for 2, 4, 6, and 8 cm thick breast tissue equivalent material phantoms composed of 0%, 43%, and 100% glandular tissue at four different kV settings. Beam stop measurements of scatter were used to validate the ESF methodology. There was good agreement of the mean SPRs between the beam stop and ESF methods. There was good precision in the ESF-determined SPRs with a coefficient of variation on the order of 5%. SPRs ranged from 0.2 to 2.0 and were effectively independent of energy for clinically realistic kVps. The measured SPRs for 2, 4, and 6 cm 0% glandular phantoms imaged at 28 kV were 0.21+/-0.01, 0.39+/-0.01, and 0.57+/-0.02, respectively. The measured SPRs for 2, 4, and 6 cm 43% glandular phantoms imaged at 28 kV were 0.20+/-0.01, 0.35+/-0.02, and 0.53+/-0.02, respectively. The measured SPRs for 2, 4, and 6 cm 100% glandular phantoms imaged at 28 kV were 0.22+/-0.02, 0.42+/-0.03, and 0.88+/-0.08, respectively.
机译:在这项工作中提出了一种直接测量散射相对于一次辐射的大小和空间分布的实验测量技术。该技术涉及在存在和不存在散射材料的情况下获取放大的边缘扩展函数(ESF)图像。对ESF进行归一化并减去,以得出散射与主要比例(SPR),以及散射和主要辐射的空间分布。乳房X线照相术被用作演示ESF方法的方法,该方法适用于所有射线照相环境。用改良的临床乳腺X线摄影系统获取三组图像,该系统使用平板探测器检测2、4、6和8 cm厚的乳腺组织等效材料模型,该模型由四个不同kV的0%,43%和100%的腺体组织组成设置。散射的波束停止测量用于验证ESF方法。波束停止和ESF方法之间的平均SPR有很好的一致性。 ESF确定的SPR具有很高的精度,变异系数约为5%。 SPR的范围从0.2到2.0,并且对于临床上实际的kVps有效地独立于能量。在28 kV下成像的2 cm,4 cm和6 cm 0%腺体模的测量SPR分别为0.21 +/- 0.01、0.39 +/- 0.01和0.57 +/- 0.02。在28 kV下成像的2 cm,4 cm和6 cm的43%腺体模型的测量SPR分别为0.20 +/- 0.01、0.35 +/- 0.02和0.53 +/- 0.02。在28 kV下成像的2 cm,4 cm和6 cm 100%腺体模的测量SPR分别为0.22 +/- 0.02、0.42 +/- 0.03和0.88 +/- 0.08。

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