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采用可变翻转角方案增强呼吸导航门控三维扰相梯度回波序列

Enhancement of respiratory navigator-gated three-dimensional spoiled gradient-recalled echo sequence with variable flip angle scheme.

作者信息

Iwadate Yuji, Brau Anja C S, Vasanawala Shreyas S, Kabasawa Hiroyuki

机构信息

Global Applied Science Laboratory, GE Healthcare, Hino, Tokyo, Japan.

出版信息

Magn Reson Med. 2014 Jul;72(1):172-7. doi: 10.1002/mrm.24902. Epub 2013 Jul 31.

Abstract

PURPOSE

To develop and demonstrate the feasibility of a new technique for respiratory-gated, fat-suppressed, three-dimensional spoiled gradient-recalled echo (3D-SPGR) with navigator gating for more accurate and robust motion detection.

METHODS

A navigator-gated 3D-SPGR technique was modified to include a wait period immediately prior to the navigator sequence for magnetization recovery. Furthermore, a variable flip angle scheme was realized by a combination of ramp-up, ramp-down, and attenuation strategies for optimizing point spread functions. Phantom and human experiments were conducted with our technique on 1.5T scanners.

RESULTS

Using the method, T1-weighted 3D images with improved signal homogeneity were acquired with a maximum flip angle of 30° in phantom and human tests. Also, compared with the conventional navigator-gated 3D-SPGR, accurate respiratory motion detection of free-breathing subjects was provided, leading to reduced motion artifacts.

CONCLUSION

The combination of wait insertion and the variable flip angle method improved both motion detection accuracy and image homogeneity in a navigator-gated 3D-SPGR study.

摘要

目的

开发并证明一种新的呼吸门控、脂肪抑制三维扰相梯度回波(3D-SPGR)技术结合导航门控用于更准确、更可靠运动检测的可行性。

方法

对导航门控3D-SPGR技术进行修改,在导航序列之前加入一段等待期以实现磁化恢复。此外,通过上升、下降和衰减策略的组合实现可变翻转角方案,以优化点扩散函数。使用我们的技术在1.5T扫描仪上进行了体模和人体实验。

结果

使用该方法,在体模和人体测试中,以30°的最大翻转角获得了信号均匀性得到改善的T1加权三维图像。此外,与传统的导航门控3D-SPGR相比,该方法能够准确检测自由呼吸受试者的呼吸运动,减少运动伪影。

结论

在导航门控3D-SPGR研究中,等待期插入和可变翻转角方法的结合提高了运动检测精度和图像均匀性。

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