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Second generation anthropomorphic physical phantom for mammography and DBT: Incorporating voxelized 3D printing and inkjet printing of iodinated lesion inserts

机译:用于乳房X线照相术和DBT的第二代拟人化体模:结合碘化病变插入物的体素化3D打印和喷墨打印

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Physical phantoms are needed for the evaluation and optimization of new digital breast tomosynthesis (DBT) systems. Previously, we developed an anthropomorphic phantom based on human subject breast CT data and fabricated using commercial 3D printing. We now present three key advancements: voxelized 3D printing, photopolymer material doping, and 2D inkjet printing of lesion inserts. First, we bypassed the printer's control software in order to print in voxelized form instead of conventional STL surfaces, thus improving resolution and allowing dithering to mix the two photopolymer materials into arbitrary proportions. We demonstrated ability to print details as small as 150um, and dithering to combine VeroWhitePlus and TangoPlus in 10% increments. Second, to address the limited attenuation difference among commercial photopolymers, we evaluated a beta sample from Stratasys with increased TiO_2 doping concentration up to 2.5%, which corresponded to 98% breast density. By spanning 36% to 98% breast density, this doubles our previous contrast. Third, using inkjet printers modified to print with iopamidol, we created 2D lesion patterns on paper that can be sandwiched into the phantom. InkJet printing has advantages of being inexpensive and easy, and more contrast can be delivered through overprinting. Printing resolution was maintained at 210 μm horizontally and 330 μm vertically even after 10 overprints. Contrast increased linearly with overprinting at 0.7% per overprint. Together, these three new features provide the basis for creating a new anthropomorphic physical breast phantom with improved resolution and contrast, as well as the ability to insert 2D lesions for task-based assessment of performance.
机译:评估和优化新的数字乳房断层合成(DBT)系统需要物理模型。以前,我们根据人类受试者的胸部CT数据开发了拟人化体模,并使用商业3D打印技术进行了制作。现在,我们展示了三个关键的改进:体素化3D打印,光敏聚合物材料掺杂和病变插入物的2D喷墨打印。首先,我们绕过了打印机的控制软件,以便以体素化形式而不是传统的STL表面进行打印,从而提高了分辨率,并允许通过抖动处理将两种光敏聚合物材料混合成任意比例。我们展示了能够打印小至150um的细节并抖动以10%的增量组合VeroWhitePlus和TangoPlus的能力。其次,为了解决商业光敏聚合物之间有限的衰减差异,我们评估了Stratasys的Beta样品,其TiO_2掺杂浓度增加了2.5%,相当于98%的乳房密度。通过覆盖36%至98%的乳房密度,这使我们之前的对比倍增。第三,我们使用经过修改以使用碘帕醇进行打印的喷墨打印机,在纸上创建了2D病变图案,可以将其夹在幻像中。喷墨打印的优点是价格便宜且容易,并且可以通过套印传递更多的对比度。即使在套印10次后,打印分辨率也可保持水平为210μm,垂直为330μm。对比度随着套印而线性增加,每次套印为0.7%。这三个新功能共同为创建具有改进的分辨率和对比度的新拟人化物理乳房体模提供了基础,并为基于任务的性能评估插入2D病变提供了能力。

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