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Evaluation of image quality of a novel computed tomography metal artifact management technique on an anthropomorphic head and neck phantom

机译:一种新型计算机断层扫描金属工件管理技术的图像质量评价拟人头部和颈部幻影

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Background and purpose Artefacts caused by dental amalgam implants present a common challenge in computed tomography (CT) and therefore treatment planning dose calculations. The goal was to perform a quantitative image quality analysis of our Artifact Management for Proton Planning (AMPP) algorithm which used gantry tilts for managing metal artefacts on Head and Neck (HN) CT scans and major vendors’ commercial approaches. Materials and methods Metal artefact reduction (MAR) algorithms were evaluated using an anthropomorphic phantom with a removable jaw for the acquisition of images with and without (baseline) metal artifacts. AMPP made use of two angled CT scans to generate one artifact-reduced image set. The MAR algorithms from four vendors were applied to the images with artefacts and the analysis was performed with respective baselines. Planar HU difference maps and volumetric HU differences were analyzed. Results AMPP algorithm outperformed all vendors’ commercial approaches in the elimination of artefacts in the oropharyngeal region, showing the lowest percent of pixels outside ? 20 HU criteria, 4%; whereas those in the MAR-corrected images ranged from 26% to 67%. In the region of interest within the affected slices, the commercial MAR algorithms showed inconsistent performance, whereas the AMPP algorithm performed consistently well throughout the phantom’s posterior region. Conclusions A novel MAR algorithm was evaluated and compared to four commercial algorithms using an anthropomorphic phantom. Unanimously, the analysis showed the AMPP algorithm outperformed vendors’ commercial approaches, showing the potential to be broadly implemented, improve visualizations in patient anatomy and provide accurate HU information.
机译:牙科汞合金植入物引起的背景和目的人工​​制品在计算断层扫描(CT)中呈现共同挑战,因此治疗计划剂量计算。目标是对本发明的艺术管理进行定量图像质量分析,用于质子规划(AMPP)算法,该算法用龙门倾斜,用于管理头部和颈部(HN)CT扫描和主要供应商的商业方法上的金属艺术品。材料和方法使用具有可移除钳口的拟蒽型模型来评估金属伪造(MAR)算法,用于采集具有和无(基线)金属伪影的图像。 AMPP使用了两个角度的CT扫描来产生一个伪影缩小图像集。来自四个供应商的MAR算法被应用于带人工制品的图像,并且通过各个基线进行分析。平面HU差异图和体积HU差异进行了分析。结果AMPP算法表现优于所有供应商的商业方法,在消除口咽地区的人工制品中,显示出外部的最低百分比的百分比? 20胡标准,4%;而MAR校正的图像中的那些在26%至67%的范围内。在受影响的切片内的感兴趣区域中,商业MAR算法表现出不一致的性能,而AMPP算法在整个幻像的后部区域始终良好地进行。结论评估了一种新型MAR算法,并与使用拟人幽灵的四种商业算法进行了比较。一致地,分析显示了AMPP算法优于供应商的商业方法,表明潜力易于实施,提高患者解剖学中的可视化并提供准确的HU信息。

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