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乳腺 X 射线能谱的不确定性估计和统计比较方法。

Uncertainty estimation and statistical comparative methodology for mammography x-ray energy spectra.

机构信息

Institute of Physics, University of Sao Paulo, Sao Paulo, Brazil.

出版信息

Biomed Phys Eng Express. 2020 Apr 21;6(3):035018. doi: 10.1088/2057-1976/ab817d.

Abstract

Numerical models are an alternative to measurements of x-ray energy spectra when validated by comparative methods that assess the similarity of experimental and calculated spectra. In this work, we compared x-ray energy spectra using several methodologies and determined the methodology with highest statistical power among them. Experiments and Monte Carlo (MC) simulations were used to generate a set of 65 experimental and simulated x-ray mammography spectra pairs typically used in mammography applications. They were generated using Tungsten and Molybdenum targets and Molybdenum and Rhodium filters. The x-ray beams were transmitted through breast tissue equivalent material (bTEM) plates with different glandularities and thicknesses, and the transmitted beam was detected using solid-state x-ray spectrometry with a Cadmium Telluride (CdTe) diode. The MC simulations used the PENELOPE code. Additional uncertainties, beyond that from counting, were propagated using the MC method. Quantitative comparative methods based on the [Formula: see text] statistics, the first and second half-value layers, the mean energy, the effective energy, and the non-parametric u-test were applied and their specificity (true negative rate) was assessed. The polyenergetic normalized glandular dose (DgNp) to a 6 cm breast of 50/50 glandularity was derived from the spectra. In this work, the [Formula: see text] statistics attained the highest score; therefore, it is the most indicated metric for the x-ray energy spectra comparative evaluations. The contribution of the additional uncertainties was important, being responsible for up to 98% of the spectra total uncertainty and shifting the mean of the evaluated [Formula: see text] to 1.2(1), compatible with its expected value. The use of non-parametric test is discouraged by our results, since it failed to distinguish spectra pairs that resulted in up to 72% discrepant DgNp.

摘要

当通过评估实验和计算光谱相似性的比较方法验证时,数值模型是 X 射线能谱测量的替代方法。在这项工作中,我们使用了几种方法来比较 X 射线能谱,并确定了其中统计功效最高的方法。实验和蒙特卡罗(MC)模拟用于生成一组通常用于乳房 X 光摄影应用的 65 对实验和模拟 X 射线乳房 X 光摄影光谱对。它们使用钨和钼目标以及钼和铑滤光片生成。X 射线束穿过具有不同腺体和厚度的乳房组织等效材料(bTEM)板,使用固态 X 射线光谱法和碲化镉(CdTe)二极管检测透射束。MC 模拟使用 PENELoPE 代码。使用 MC 方法传播除计数之外的其他不确定性。应用了基于[公式:见文本]统计、第一和第二半价层、平均能量、有效能量和非参数 u 检验的定量比较方法,并评估了它们的特异性(真阴性率)。从光谱中得出了具有 50/50 腺体的 6cm 乳房的多能归一化腺体剂量(DgNp)。在这项工作中,[公式:见文本]统计获得了最高分;因此,它是最适合 X 射线能谱比较评估的度量。额外不确定性的贡献很重要,负责高达 98%的光谱总不确定性,并将评估的[公式:见文本]的平均值转移到 1.2(1),与预期值一致。我们的结果不鼓励使用非参数检验,因为它未能区分导致高达 72%的 DgNp 差异的光谱对。

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