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Methodology for the objective assessment of lesion detection performance with breast tomosynthesis and digital mammography using a physical anthropomorphic phantom

机译:使用物理拟人体模对乳腺断层合成和乳腺X线摄影术进行病变检测性能进行客观评估的方法学

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Realistic breast phantoms serve as important tools when evaluating full field digital mammography (FFDM) and digital breast tomosynthesis (DBT) system modifications. Current breast phantoms contain either unrealistic features or uniform backgrounds. The purpose of this work was to introduce a novel, task-based methodology for evaluating FFDM and DBT systems using an anthropomorphic inkjet-printed 3D phantom with clinically relevant signals. The methodology consists of multiple physical components: an anthropomorphic breast phantom, microcalcifications made of two types of material, and masses. A 4 cm compressed thickness breast phantom was first modeled analytically, then realized in a slice-by-slice fashion using inkjet printing with iohexol-doped ink. The microcalcifications (MCs) were made by arranging individual specks of varying sizes into regular patterns. Two types of MCs were used, ranging in diameter from 150 μm to 260 μm: one made from calcium hydroxyapatite (HA) and another from soda lime glass microspheres. Lastly, realistically-shaped masses were created using ink doped with potassium iodide. The phantom was imaged on two commercially available FFDM/DBT systems, Holgic Selenia Dimensions and the GE Senographe Essential. A typical mammographic beam was used (according to the automatic exposure control for each commercial system), and a similar average glandular dose was maintained across the systems. A pilot study consisting of a four-alternative, forced-choice (4AFC) analysis with human observers was performed on the FFDM and DBT acquisitions. The linear attenuation coefficients of the microcalcification models were measured to be similar to reference values. A custom Matlab program was created to extract ROI images from images of the phantom, each containing a signal, in preparation for use with 4AFC software. A pilot 4AFC study showed the visibility of the microcalcifications ranged from easy to difficult, and results informed the final reader study. An anthropomorphic breast phantom was created using inexpensive, easily available materials. The task-based assessment was performed on clinical FFDM and DBT systems. This promising phantom generation methodology can be used to objectively evaluate task performance resulting with FFDM and DBT breast imaging systems.
机译:在评估全场数字化乳腺摄影(FFDM)和数字化乳房断层合成(DBT)系统修改时,逼真的乳房幻影是重要的工具。当前的乳房幻像包含不真实的特征或统一的背景。这项工作的目的是介绍一种新的,基于任务的方法,该方法使用具有临床相关信号的拟人喷墨打印3D体模来评估FFDM和DBT系统。该方法包括多个物理组成部分:拟人化的乳房幻像,由两种材料制成的微钙化和肿块。首先对4 cm压缩厚度的乳房体模进行解析建模,然后使用掺有碘海醇的墨水进行喷墨打印,以逐层的方式实现。微钙化(MCs)是通过将大小不同的单个斑点排列成规则图案而制成的。使用了两种类型的MC,直径范围从150μm至260μm:一种由羟基磷灰石(HA)制成,另一种由钠钙玻璃微球制成。最后,使用掺有碘化钾的墨水创建了逼真的形状的块。幻像在两个市售的FFDM / DBT系统,Holgic Selenia Dimensions和GE Senographe Essential上成像。使用了典型的乳腺X射线摄影射线(根据每个商业系统的自动曝光控制),并且在整个系统中保持了相似的平均腺体剂量。对FFDM和DBT的购置进行了一项由人类观察员进行的四选,强制选择(4AFC)分析组成的试点研究。测得的微钙化模型的线性衰减系数与参考值相似。创建了一个定制的Matlab程序,以从模型的图像中提取ROI图像,每个图像都包含一个信号,准备与4AFC软件一起使用。一项4AFC试点研究显示,微钙化的可见性范围从容易到困难,并且结果告知了最终读者研究。拟人化的乳房幻影是使用廉价且易于获得的材料制成的。基于任务的评估是在临床FFDM和DBT系统上进行的。这种有前途的幻象生成方法可用于客观评估FFDM和DBT乳房成像系统产生的任务性能。

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