Personalization of X-Ray Tube Motion in Digital Breast Tomosynthesis Using Virtual Defrise Phantoms.

IF 0.2 0 HUMANITIES, MULTIDISCIPLINARY French Studies Bulletin Pub Date : 2019-02-01 Epub Date: 2019-03-01 DOI:10.1117/12.2511780
Raymond J Acciavatti, Bruno Barufaldi, Trevor L Vent, E Paul Wileyto, Andrew D A Maidment
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Abstract

In digital breast tomosynthesis (DBT), projection images are acquired as the x-ray tube rotates in the plane of the chest wall. We constructed a prototype next-generation tomosynthesis (NGT) system that has an additional component of tube motion in the perpendicular direction (i.e., posteroanterior motion). Our previous work demonstrated the advantages of the NGT system using the Defrise phantom. The reconstruction shows higher contrast and fewer blurring artifacts. To expand upon that work, this paper analyzes how image quality can be further improved by customizing the motion path of the x-ray tube based on the object being imaged. In simulations, phantoms are created with realistic 3D breast outlines based on an established model of the breast under compression. The phantoms are given an internal structure similar to a Defrise phantom. Two tissue types (fibroglandular and adipose) are arranged in a square-wave pattern. The reconstruction is analyzed as a binary classification task using thresholding to segment the two tissue types. At various thresholds, the classification of each voxel in the reconstruction is compared against the phantom, and receiver operating characteristic (ROC) curves are calculated. It is shown that the area under the ROC curve (AUC) is dependent on the x-ray tube trajectory. The trajectory that maximizes AUC differs between phantoms. In conclusion, this paper demonstrates that the acquisition geometry in DBT should be personalized to the object being imaged in order to optimize the image quality.

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在数字乳腺断层合成术中利用虚拟 Defrise 模型实现 X 射线管运动的个性化。
在数字乳腺断层合成术(DBT)中,X 射线管在胸壁平面内旋转时获取投影图像。我们构建了一个下一代断层合成(NGT)系统原型,该系统在垂直方向(即后前方运动)上具有额外的管子运动分量。我们之前的工作利用 Defrise 模型证明了 NGT 系统的优势。重建显示出更高的对比度和更少的模糊伪影。为了扩展这项工作,本文分析了如何根据成像对象定制 X 射线管的运动路径,从而进一步提高图像质量。在模拟中,根据已建立的受压乳房模型,创建了具有逼真三维乳房轮廓的模型。模型的内部结构与 Defrise 模型相似。两种组织类型(纤维腺组织和脂肪组织)以方波模式排列。重建分析是一项二元分类任务,使用阈值分割两种组织类型。在不同的阈值下,将重建中每个体素的分类与模型进行比较,并计算接收器操作特征曲线(ROC)。结果表明,ROC 曲线下的面积(AUC)取决于 X 射线管轨迹。使 AUC 最大化的轨迹在不同的模型之间存在差异。总之,本文证明了 DBT 的采集几何形状应根据成像对象进行个性化设计,以优化图像质量。
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来源期刊
French Studies Bulletin
French Studies Bulletin HUMANITIES, MULTIDISCIPLINARY-
CiteScore
0.30
自引率
0.00%
发文量
20
期刊介绍: French Studies Bulletin: A Quarterly Supplement is published on behalf of the Society of French Studies by Oxford University Press. It is the sister journal to French Studies. It is published four times a year (Spring, Summer, Autumn, Winter) and publishes articles (in English or French) spanning all areas of the subject, including language and linguistics (historical and contemporary), all periods and aspects of literature and France and the French-speaking world, French thought and the history of ideas, cultural studies, politics, film, and critical theory. The Bulletin also normally includes a Comments section, calls for papers and reports on selected conferences, and other notices of interest to researchers in French Studies.
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