首页> 外文学位 >Prospective motion correction for magnetic resonance spectroscopy.
【24h】

Prospective motion correction for magnetic resonance spectroscopy.

机译:磁共振波谱的预期运动校正。

获取原文
获取原文并翻译 | 示例

摘要

Proton magnetic resonance spectroscopy (1H-MRS) is an important tool in both research and clinical settings. However, 1H-MRS spectra are susceptible to artifacts and distortions due to physiological motion, which cause reduced peak amplitudes, shifts in frequency and phase, decreased quality in water suppression and change in voxel partial volume. Due to these artifacts, motion correction for 1H-MRS in the brain is desirable, especially for young subject and patients with movement disorders. Although subject motion is a common problem, little is also known about the properties of head motion in the MR environment. Using 4 healthy participants, we characterized head motion using predetermined motion patterns. Significant velocities and accelerations from head motion were recorded, especially during fast right lateral and flexion movements, of approximately 1g. Simulated tremors showed power in the 2 to 11Hz range. Kalman filtering, with the inclusion of expected motion statistics, improved involuntary motion tracking. Prospective motion correction was performed on 5 healthy subjects during Z translations and right lateral rotations. To determine changes in spectral quality, the ratio of Cho and Cr was used due to their similar sensitivity to changes in partial volume. Average change in Cho/Cr was 14.6% (+/- 3.4%) for uncorrected and 1.1% (+/- 3.3%) for corrected. The ratio of Cho/Cr, show a significant difference (t=15.5, P=0.0001) between uncorrected and corrected data. All other changes in metabolite ratios with Cr were not significant. Motion plots for both uncorrected and corrected lateral rotations showed an average rotation (Rz) of 12.5° (+/-5°), with expected X and Y translations. During uncorrected Z translations lipid peak from the skull was present in spectra however, corrected spectra were similar to the baseline. Our data demonstrate that prospective motion for 1H-MRS, using single-camera RGR tracking, significantly reduces spectral artifacts and quantitation errors due to motion. Movements that happen to introduce large lipid peaks are easily identifiable during Quality Assurance. However, other movements may change metabolite ratios in a more subtle manner that cannot be identified visually. Overall, adaptive motion correction for MRS, using single camera RGR tracking, improved spectral quality and reproducibility in subjects who move during scans.
机译:质子磁共振波谱(1H-MRS)是研究和临床环境中的重要工具。但是,1H-MRS光谱容易受到由于生理运动引起的伪影和畸变的影响,从而导致峰值幅度降低,频率和相位偏移,水抑制质量下降以及体素分体积变化。由于存在这些伪影,因此需要对大脑中的1H-MRS进行运动校正,特别是对于年轻受试者和运动障碍患者。尽管对象运动是一个常见问题,但对于MR环境中头部运动的性质知之甚少。我们使用4位健康的参与者,使用预定的运动模式来表征头部运动。记录到头运动产生的明显速度和加速度,尤其是在快速的右侧和屈曲运动期间,大约为1g。模拟的震颤显示功率在2至11Hz范围内。卡尔曼滤波(包括预期的运动统计信息)改善了非自愿运动跟踪。在Z平移和右侧旋转期间对5名健康受试者进行了预期的运动校正。为了确定光谱质量的变化,使用了Cho和Cr之比,因为它们对部分体积的变化具有相似的敏感性。未校正的Cho / Cr平均变化为14.6%(+/- 3.4%),校正后为1.1%(+/- 3.3%)。 Cho / Cr的比值在未校正和校正后的数据之间显示出显着差异(t = 15.5,P = 0.0001)。 Cr的代谢物比率的所有其他变化均不显着。未校正和校正的横向旋转的运动图均显示平均旋转(Rz)为12.5°(+/- 5°),并具有预期的X和Y平移。在未经校正的Z平移期间,光谱中存在来自头骨的脂质峰,但校正后的光谱与基线相似。我们的数据表明,使用单摄像机RGR跟踪的1H-MRS预期运动可以显着减少由于运动而引起的频谱伪影和定量误差。在质量保证过程中,很容易识别出出现大脂质峰的运动。但是,其他运动可能会以更细微的方式改变代谢物的比例,而这在视觉上是无法识别的。总体而言,使用单摄像机RGR跟踪对MRS进行自适应运动校正,可以改善扫描过程中移动的对象的光谱质量和可重复性。

著录项

  • 作者

    Andrews-Shigaki, Brian C.;

  • 作者单位

    University of Hawai'I at Manoa.;

  • 授予单位 University of Hawai'I at Manoa.;
  • 学科 Engineering Biomedical.;Health Sciences Radiology.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 147 p.
  • 总页数 147
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号