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采用 PROPELLER EPI(4D-DW-PROPELLER-EPI)进行运动分辨的四维腹部弥散加权成像。

Motion-resolved four-dimensional abdominal diffusion-weighted imaging using PROPELLER EPI (4D-DW-PROPELLER-EPI).

机构信息

Department of Health Technology and Informatics, The Hong Kong Polytechnic University, Hong Kong, Hong Kong.

Department of Diagnostic Radiology, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong, Hong Kong.

出版信息

Magn Reson Med. 2023 Dec;90(6):2454-2471. doi: 10.1002/mrm.29802. Epub 2023 Jul 24.

Abstract

PURPOSE

To develop a distortion-free motion-resolved four-dimensional diffusion-weighted PROPELLER EPI (4D-DW-PROPELLER-EPI) technique for benefiting clinical abdominal radiotherapy (RT).

METHODS

An improved abdominal 4D-DWI technique based on 2D diffusion-weighted PROPELLER-EPI (2D-DW-PROPELLER-EPI), termed 4D-DW-PROPELLER-EPI, was proposed to improve the frame rate of repeated data acquisition and produce distortion-free 4D-DWI images. Since the radial or PROPELLER sampling with golden-angle rotation can achieve an efficient k-space coverage with a flexible time-resolved acquisition, the golden-angle multi-blade acquisition was used in the proposed 4D-DW-PROPELLER-EPI to improve the performance of data sorting. A new k-space and blade (K-B) amplitude binning method was developed for the proposed 4D-DW-PROPELLER-EPI to optimize the number of blades and the k-space uniformity before performing conventional PROPELLER-EPI reconstruction, by using two metrics to evaluate the adequacy of the acquired data. The proposed 4D-DW-PROPELLER-EPI was preliminarily evaluated in both simulation experiments and in vivo experiments with varying frame rates and different numbers of repeated acquisition.

RESULTS

The feasibility of achieving distortion-free 4D-DWI images by using the proposed 4D-DW-PROPELLER-EPI technique was demonstrated in both digital phantom and healthy subjects. Evaluation of the 4D completeness metrics shows that the K-B amplitude binning method could simultaneously improve the acquisition efficiency and data reconstruction performance for 4D-DW-PROPELLER-EPI.

CONCLUSION

4D-DW-PROPELLER-EPI with K-B amplitude binning is an advanced technique that can provide distortion-free 4D-DWI images for resolving respiratory motion, and may benefit the application of image-guided abdominal RT.

摘要

目的

开发一种无变形的运动分辨四维扩散加权 PROPELLER EPI(4D-DW-PROPELLER-EPI)技术,以造福临床腹部放疗(RT)。

方法

提出了一种基于 2D 扩散加权 PROPELLER-EPI(2D-DW-PROPELLER-EPI)的改进腹部 4D-DWI 技术,称为 4D-DW-PROPELLER-EPI,以提高重复数据采集的帧率并产生无变形的 4D-DWI 图像。由于具有黄金角度旋转的径向或 PROPELLER 采样可以实现高效的 k 空间覆盖和灵活的时间分辨采集,因此在提出的 4D-DW-PROPELLER-EPI 中使用了黄金角度多叶片采集来提高数据分类的性能。为了优化叶片数量和 k 空间均匀性,在进行常规 PROPELLER-EPI 重建之前,针对提出的 4D-DW-PROPELLER-EPI 开发了一种新的 k 空间和叶片(K-B)幅度分箱方法,通过使用两种度量来评估采集数据的充分性。在不同帧率和不同重复采集次数的模拟实验和体内实验中初步评估了提出的 4D-DW-PROPELLER-EPI。

结果

在数字体模和健康受试者中,证明了使用提出的 4D-DW-PROPELLER-EPI 技术实现无变形 4D-DWI 图像的可行性。4D 完整性度量的评估表明,K-B 幅度分箱方法可以同时提高 4D-DW-PROPELLER-EPI 的采集效率和数据重建性能。

结论

具有 K-B 幅度分箱的 4D-DW-PROPELLER-EPI 是一种先进的技术,可为解决呼吸运动提供无变形的 4D-DWI 图像,并可能有益于图像引导的腹部 RT 的应用。

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