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Two-dimensional and three-dimensional breast elastography with a combined ultrasound/digital tomosynthesis mammography system.

机译:二维和三维乳腺弹性成像,结合超声/数字断层合成乳腺X线照相系统。

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摘要

Ultrasound elastography is a novel imaging method which acts as a surrogate to manual palpation to evaluate elastic properties of tissue. In this dissertation, elastography was conducted through a mammographic paddle in conjunction with a combined ultrasound/digital tomosynthesis mammography system to improve breast lesion characterization. Imaging through a mammographic paddle may adversely affect ultrasound image quality by reducing spatial resolution, increasing attenuation, and decreasing contrast. Thus, appropriate paddle choice is essential to create high quality through-paddle ultrasound images and strain images. Sonographic image quality through mammographic paddles of varying materials and thicknesses was compared with direct-contact (no paddle) image quality. TPX plastic paddles ≤ 2.5 mm thick performed best; when employed in vivo, 83% of cases produced image quality as good or better than their direct-contact analogues. Through-paddle 2D elastography was conducted through the best paddle using a 1D ultrasound transducer at 7.5 MHz and performance was compared with freehand elastography. For small strain step sizes (< 0.5%), through-paddle elastography produced correlation coefficients and strain SNR comparable to freehand elastography.;Ultimately, the aim of elastography is to acquire high quality strain estimates in 3D to fully characterize tissue. Thus, data acquisition techniques were extended to a small 3D volume. Compared with its 2D analogue, 3D elastography created higher correlation coefficients for strain step sizes ≥ 1% and at least 35% improvement in strain SNR for all step sizes. These early successes indicate that through-paddle elastography can create high quality elastograms which might aid in breast lesion characterization. Next, through-paddle elastography was performed in 20 human subjects with varying breast masses. This dissertation introduced the elasticity characteristic "differential correlation coefficient," which exploits the severe decorrelation observed in cysts under compression to differentiate cystic and solid masses. When applied in a clinical setting, this characteristic demonstrated potential to reduce the malignancy rating of a complicated cyst, changing management options from biopsy to imaging follow-up. Additional elastographic appearances of breast masses were evaluated, including lesion size, stiffness, margin regularity, and boundary flow. These studies suggest that elastography has potential to improve characterization of breast masses beyond x-ray tomography and sonography alone.
机译:超声弹性成像是一种新颖的成像方法,可替代人工触诊以评估组织的弹性。在本文中,弹性成像是通过乳腺X线照相板结合超声/数字断层合成乳腺X线照相系统进行的,以改善乳腺病变的特征。通过乳房X光检查板成像可能会降低空间分辨率,增加衰减并降低对比度,从而对超声图像质量产生不利影响。因此,适当的桨叶选择对于创建高质量的桨叶式超声图像和应变图像至关重要。通过将不同材料和厚度的乳房X线照相片的超声图像质量与直接接触(无桨)图像质量进行比较。 ≤2.5毫米厚的TPX塑料桨片效果最好;当用于体内时,83%的病例产生的图像质量与其直接接触类似物相同或更高。使用1D超声换能器在7.5 MHz的频率下通过最佳桨板进行板桨式2D弹性成像,并将其性能与徒手弹性成像进行比较。对于较小的应变步长(<0.5%),板式弹性成像产生的相关系数和应变SNR可与徒手弹性成像相比。最终,弹性成像的目的是获得3D高质量的应变估计值以充分表征组织。因此,数据采集技术扩展到较小的3D体积。与2D类似物相比,3D弹性成像为所有步长≥1%的应变步长创建了更高的相关系数,并且应变SNR至少提高了35%。这些早期的成功表明,通过板式弹性成像可以创建高质量的弹性成像,这可能有助于乳腺病变的表征。接下来,对20名乳房质量各异的人类受试者进行了穿板式弹性成像。本论文介绍了弹性特征“微分相关系数”,它利用压缩时在囊肿中观察到的严重去相关性来区分囊肿和固体。当在临床环境中应用时,该特征表明有可能降低复杂囊肿的恶性程度,从而改变了从活检到影像学随访的管理选择。评估了乳腺肿块的其他弹性成像外观,包括病变大小,僵硬,边缘规则性和边界血流。这些研究表明,弹性成像技术有可能超越仅X线断层扫描和超声检查来改善乳腺肿块的特征。

著录项

  • 作者

    Booi, Rebecca C.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 191 p.
  • 总页数 191
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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