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High Resolution Magnetic Resonance Imaging of the Bilateral Breasts Using an Accelerated 3D Radial Trajectory.

机译:使用加速的3D径向轨迹对双侧乳房进行高分辨率磁共振成像。

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摘要

Breast cancer is the most commonly diagnosed cancer in women in the United States after skin cancer. MRI has been proven to be highly sensitive to breast cancer however it suffers from moderate specificity, resulting in an increased number of false positive. There is the potential to improve the differential diagnosis of breast lesions through better depiction of the morphologic features of interest as well as improving the depiction of contrast kinetics through improved temporal resolution in the DCE scan.;This work utilizes the rapid and efficient 3D-radial VIPR pulse sequence to speed the acquisition of MR breast images, allowing for higher spatial and temporal resolution. A Balanced Steady State Free Precession (bSSFP) signal model is developed to combine bSSFP imaging with chemical shift based decomposition, producing robust fat suppression despite large field inhomogeneities in short acquisition times. This model is designed to handle the complex signal behavior expected when a multiple peak spectral fat model is modulated by the frequency response of a bSSFP acquisition. The ability of this model to accurately decompose fat and water is demonstrated in a phantom as well as in vivo imaging at 1.5 T.;This signal model is used in conjunction with a bSSFP implementation of VIPR to provide images with T2-like contrast and high 0.63 mm isotropic resolution with robust fat suppression across both breasts in a six minute scan time at 1.5 T. The VIPR pulse sequence is modified to provide bilateral coverage and accommodate the collection of four half echoes for use in chemical shift based fat/water decomposition using an iterative graph cuts algorithm. Results are demonstrated in normal breast volunteers.;Finally, VIPR is used to provide high temporal and isotropic spatial resolution during DCE breast imaging. A previously developed version of VIPR was used to obtain promising high spatial and temporal resolution results. Sensitivity to motion and low SNR when using this method provided motivation for the development of bilateral VIPR IDEAL described in this work. While a more thorough analysis of the temporal settings remains to be done, initial results from an ongoing post-contrast study are presented here.
机译:在皮肤癌之后,乳腺癌是美国女性中最常被诊断出的癌症。 MRI已被证明对乳腺癌高度敏感,但是它具有中等特异性,导致假阳性的数量增加。通过更好地描述感兴趣的形态特征以及通过改善DCE扫描中的时间分辨率来改善对比动力学的描述,有可能改善乳腺病变的鉴别诊断。;这项工作利用了快速有效的3D放射成像VIPR脉冲序列可加快MR乳房图像的采集速度,从而实现更高的空间和时间分辨率。平衡稳态无进动(bSSFP)信号模型已开发,将bSSFP成像与基于化学位移的分解相结合,尽管在较短的采集时间内存在很大的田间不均匀性,但仍能产生强大的脂肪抑制作用。此模型旨在处理通过bSSFP采集的频率响应调制多峰频谱脂肪模型时预期的复杂信号行为。在幻影以及1.5 T的体内成像中证明了该模型能够准确分解脂肪和水的能力;该信号模型与VIPR的bSSFP实现结合使用,可提供具有T2样对比度和高对比度的图像0.63 mm的各向同性分辨率,在1.5 T的六分钟扫描时间内,在两个乳房上均具有强大的脂肪抑制能力。对VIPR脉冲序列进行了修改,以提供双侧覆盖并容纳四个半回波的收集,用于基于化学位移的脂肪/水分解,使用迭代图割算法。结果在正常的乳房志愿者中得到证实。最后,VIPR在DCE乳房成像期间用于提供高的时间和各向同性的空间分辨率。使用先前开发的VIPR版本可获得有希望的高时空分辨率结果。使用此方法时,对运动的敏感性和低SNR为该工作中描述的双边VIPR IDEAL的开发提供了动力。虽然还需要对时间设置进行更彻底的分析,但此处显示了正在进行的对比后研究的初步结果。

著录项

  • 作者

    Henze Bancroft, Leah C.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Health Sciences Radiology.;Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 92 p.
  • 总页数 92
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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