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腹部呼吸运动校正的 T1 映射。

Respiratory motion-corrected T1 mapping of the abdomen.

机构信息

Physikalisch-Technische Bundesanstalt (PTB), Braunschweig and Berlin, Germany.

Department of Biomedical Engineering, Technical University of Berlin, Berlin, Germany.

出版信息

MAGMA. 2024 Aug;37(4):637-649. doi: 10.1007/s10334-024-01196-1. Epub 2024 Aug 12.

Abstract

OBJECTIVE

The purpose of this study was to investigate an approach for motion-corrected T1 mapping of the abdomen that allows for free breathing data acquisition with 100% scan efficiency.

MATERIALS AND METHODS

Data were acquired using a continuous golden radial trajectory and multiple inversion pulses. For the correction of respiratory motion, motion estimation based on a surrogate was performed from the same data used for T1 mapping. Image-based self-navigation allowed for binning and reconstruction of respiratory-resolved images, which were used for the estimation of respiratory motion fields. Finally, motion-corrected T1 maps were calculated from the data applying the estimated motion fields. The method was evaluated in five healthy volunteers. For the assessment of the image-based navigator, we compared it to a simultaneously acquired ultrawide band radar signal. Motion-corrected T1 maps were evaluated qualitatively and quantitatively for different scan times.

RESULTS

For all volunteers, the motion-corrected T1 maps showed fewer motion artifacts in the liver as well as sharper kidney structures and blood vessels compared to uncorrected T1 maps. Moreover, the relative error to the reference breathhold T1 maps could be reduced from up to 25% for the uncorrected T1 maps to below 10% for the motion-corrected maps for the average value of a region of interest, while the scan time could be reduced to 6-8 s.

DISCUSSION

The proposed approach allows for respiratory motion-corrected T1 mapping in the abdomen and ensures accurate T1 maps without the need for any breathholds.

摘要

目的

本研究旨在探讨一种用于腹部运动校正 T1 映射的方法,该方法允许在 100%扫描效率下进行自由呼吸数据采集。

材料和方法

使用连续的黄金径向轨迹和多个反转脉冲采集数据。为了校正呼吸运动,基于替代物的运动估计是从用于 T1 映射的相同数据中进行的。基于图像的自导航允许对呼吸分辨的图像进行分箱和重建,这些图像用于估计呼吸运动场。最后,从应用估计的运动场的数据中计算运动校正的 T1 图。该方法在五名健康志愿者中进行了评估。为了评估基于图像的导航器,我们将其与同时采集的超宽带雷达信号进行了比较。对不同扫描时间的运动校正 T1 图进行了定性和定量评估。

结果

对于所有志愿者,与未校正的 T1 图相比,运动校正的 T1 图在肝脏中显示出更少的运动伪影,并且肾脏结构和血管更清晰。此外,相对于参考屏气 T1 图的相对误差可以从未校正 T1 图的高达 25%降低到运动校正图的低于 10%,而扫描时间可以缩短至 6-8 秒。

讨论

所提出的方法允许在腹部进行呼吸运动校正 T1 映射,并确保在不需要任何屏气的情况下获得准确的 T1 图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b41/11417068/4e9172610cb8/10334_2024_1196_Fig1_HTML.jpg

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