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Development of a stationary digital breast tomosynthesis system for clinical applications.

机译:开发用于临床的固定式数字乳房断层合成系统。

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摘要

Digital breast tomosynthesis (DBT) has been shown to be a very beneficial tool in the fight against breast cancer. However, current DBT systems have poor spatial resolution compared to full field digital mammography (FFDM), the current gold standard for screening mammography. The poor spatial resolution of DBT systems is a result of the single X-ray source design. In DBT systems a single X-ray source is rotated over an angular span in order to acquire the images needed for 3D reconstruction. The rotation of the X-ray source degrades the spatial resolution of the images. DBT systems which are approved for use in the United States for screening mammography are required to also take a full field digital mammogram with every DBT acquisition in order to compensate for the poor spatial resolution. This double exposure essentially doubles the radiation dose to patients.;Over the past few years our research group has developed a carbon nanotube (CNT) based X-ray source technology. The unique nature of CNT X-ray sources allows for multiple X-ray focal spots in a single X-ray source. Using this technology we have recently developed a stationary DBT system (s-DBT) system which is capable of producing a full tomosynthesis image dataset with zero motion of the X-ray source. This system has been shown to have increased spatial resolution over other DBT systems in a laboratory setting. The goal of this thesis work was to optimize the s-DBT system, demonstrate its usefulness over other systems, and finally implement it into the clinic for a clinical trial.;The s-DBT system was optimized using different image quality measurements. The optimized system was then used in a breast specimen imaging trial which compared s-DBT to magnified 2D mammography and a conventional single source DBT system. Readers preferred s-DBT to magnified 2D mammography for specimen margin delineation and mass detection, these results were not significant. Using physical measures for spatial resolution the s-DBT system was shown to have improved image quality over conventional single source DBT systems in breast tissue. A separate study showed that s-DBT could be a feasible alternative to FFDM for screening patients with breast implants. Finally, a second s-DBT system was constructed and implemented into the Department of Mammography at UNC hospitals. The first patient was imaged on the system in December of 2013.
机译:数字化乳房断层合成(DBT)已被证明是对抗乳腺癌的一种非常有益的工具。但是,当前的DBT系统与全数字化乳腺X线照相术(FFDM)相比,其空间分辨率较差,而全场数字乳腺X线照相术是目前筛查乳腺X线照相术的金标准。 DBT系统较差的空间分辨率是单一X射线源设计的结果。在DBT系统中,单个X射线源在一个角度跨度上旋转,以获取3D重建所需的图像。 X射线源的旋转降低了图像的空间分辨率。为了补偿较差的空间分辨率,要求在美国获准用于乳腺钼靶筛查的DBT系统在每次DBT采集时也要进行全视野数字化乳腺X线摄影。这种双重曝光实质上使对患者的辐射剂量增加了一倍。 CNT X射线源的独特性质允许在单个X射线源中存在多个X射线焦点。使用这项技术,我们最近开发了一种固定式DBT系统(s-DBT)系统,该系统能够以X射线源的零运动生成完整的断层合成图像数据集。在实验室环境中,该系统已显示出比其他DBT系统更高的空间分辨率。本文工作的目的是优化s-DBT系统,证明其在其他系统上的实用性,最后将其应用于临床进行临床试验。然后将优化后的系统用于乳房标本成像试验中,该试验将s-DBT与放大的2D乳腺摄影和传统的单源DBT系统进行了比较。读者更喜欢使用s-DBT而不是放大的2D乳腺摄影来进行标本边缘描绘和质量检测,这些结果并不显着。通过空间分辨率的物理测量,表明s-DBT系统比传统的乳腺组织单源DBT系统具有更高的图像质量。另一项研究表明,s-DBT可以替代FFDM来筛查有乳房植入物的患者。最后,在UNC医院的乳房X线检查系统中构建并实施了第二个s-DBT系统。 2013年12月,第一位患者在系统上成像。

著录项

  • 作者

    Tucker, Andrew Wallace.;

  • 作者单位

    The University of North Carolina at Chapel Hill.;

  • 授予单位 The University of North Carolina at Chapel Hill.;
  • 学科 Health Sciences Radiology.;Engineering Biomedical.;Nanotechnology.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 204 p.
  • 总页数 204
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:54

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