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采用 TWIST 采集技术在高空间分辨率下解决 DCE-MRM 的动脉期和时相增强特征。

Resolving arterial phase and temporal enhancement characteristics in DCE MRM at high spatial resolution with TWIST acquisition.

机构信息

Medical Physics Group, Department of Diagnostic and Interventional Radiology, Jena University Hospital, Jena, Germany.

出版信息

J Magn Reson Imaging. 2011 Oct;34(4):973-82. doi: 10.1002/jmri.22689. Epub 2011 Jul 18.

Abstract

PURPOSE

To investigate the potential of a view-sharing 3D fast gradient-echo sequence using pseudo random trajectories (TWIST) to achieve very short acquisition times with high in-plane resolution and good volume coverage and its application to dynamic contrast-enhanced (DCE) breast magnetic resonance imaging (MRI).

MATERIALS AND METHODS

Two versions of a 3D fast gradient echo TWIST sequence were implemented and applied to patients: First, an ultrafast TWIST acquisition (TA = 5.7 sec) in combination with a routine DCE MRM protocol to allow the extraction of arterial input functions and to resolve the first pass of the contrast agent. Second, a dynamic full coverage TWIST DCE acquisition (TA = 10.6 sec) in a repeat examination, replacing the routine DCE MRM sequence.

RESULTS

The ultrafast acquisition enabled extraction of arterial input functions and the monitoring of the contrast agent's first pass through vessels and lesions. The dynamic full coverage TWIST acquisition captured the initial dynamic slope of the signal time curve of lesions accurately, in contrast to the routine protocol.

CONCLUSION

TWIST acquisitions proved very robust and offer high flexibility in protocol timing. The ultrafast protocol achieved 5.7 seconds time resolution with good image quality and can be combined with any established routine protocol. The full dynamics TWIST DCE protocol offers improved time resolution of the CE dynamic time-course and closely matches the image quality of the routine protocol.

摘要

目的

研究使用伪随机轨迹(TWIST)的视图共享 3D 快速梯度回波序列实现极短采集时间、高平面分辨率和良好容积覆盖的潜力,并将其应用于动态对比增强(DCE)乳腺磁共振成像(MRI)。

材料和方法

我们实施了两种 3D 快速梯度回波 TWIST 序列并将其应用于患者:首先,采用超快 TWIST 采集(TA=5.7 秒)结合常规 DCE MRM 方案,以提取动脉输入函数并解析对比剂的首过。其次,在重复检查中采用动态全容积 TWIST DCE 采集(TA=10.6 秒)替代常规 DCE MRM 序列。

结果

超快采集能够提取动脉输入函数,并监测对比剂在血管和病变中的首过。与常规方案相比,动态全容积 TWIST 采集准确地捕获了病变信号时间曲线的初始动态斜率。

结论

TWIST 采集非常稳健,并在协议定时方面提供了高度的灵活性。超快协议实现了 5.7 秒的时间分辨率,具有良好的图像质量,可以与任何既定的常规协议相结合。全动态 TWIST DCE 协议提供了改进的 CE 动态时间过程的时间分辨率,并与常规协议的图像质量非常匹配。

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