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心电图分段三维扇形黄金角度改进的 k 空间均匀性。

Three-dimensional sector-wise golden angle-improved k-space uniformity after electrocardiogram binning.

机构信息

Department of Clinical Physiology, Karolinska University Hospital, and Karolinska Institutet, Stockholm, Sweden.

Department of Radiology, University of Michigan, Ann Arbor, Michigan, USA.

出版信息

Magn Reson Med. 2023 Sep;90(3):1041-1052. doi: 10.1002/mrm.29698. Epub 2023 May 14.

Abstract

PURPOSE

To develop and evaluate a 3D sector-wise golden-angle (3D-SWIG) profile ordering scheme for cardiovascular MR cine imaging that maintains high k-space uniformity after electrocardiogram (ECG) binning.

METHOD

Cardiovascular MR (CMR) was performed at 1.5 T. A balanced SSFP pulse sequence was implemented with a novel 3D-SWIG radial ordering, where k-space was divided into wedges, and each wedge was acquired in a separate heartbeat. The high uniformity of k-space coverage after physiological binning can be used to perform functional imaging using a very short acquisition. The 3D-SWIG was compared with two commonly used 3D radial trajectories for CMR (i.e., double golden angle and spiral phyllotaxis) in numerical simulations. Free-breathing 3D-SWIG and conventional breath-held 2D cine were compared in patients (n = 17) referred clinically for CMR. Quantitative comparison was performed based on left ventricular segmentation.

RESULTS

Numerical simulations showed that 3D-SWIG both required smaller steps between successive readouts and achieved better k-space sampling uniformity after binning than either the double golden angle or spiral phyllotaxis trajectories. In vivo evaluation showed that measurements of left ventricular ejection fraction calculated from a 48 heart-beat free-breathing 3D-SWIG acquisition were highly reproducible and agreed with breath-held 2D-Cartesian cine (mean ± SD difference of -3.1 ± 3.5% points).

CONCLUSIONS

The 3D-SWIG acquisition offers a simple solution for highly improved k-space uniformity after physiological binning. The feasibility of the 3D-SWIG method is demonstrated in this study through whole-heart cine imaging during free breathing with an acquisition time of less than 1 min.

摘要

目的

开发和评估一种用于心血管磁共振电影成像的三维扇区角度(3D-SWIG)谱序排序方案,该方案在心电图(ECG)分组后能保持高的 K 空间均匀性。

方法

在 1.5T 上进行心血管磁共振(CMR)检查。采用一种新的 3D-SWIG 径向排序实现了平衡的 SSFP 脉冲序列,其中 K 空间被分为楔形,每个楔形在单独的心跳中采集。在生理分组后,高均匀的 K 空间覆盖范围可用于进行非常短采集的功能成像。在数值模拟中,将 3D-SWIG 与两种常用于 CMR 的三维径向轨迹(即双黄金角度和螺旋叶序)进行了比较。在临床推荐进行 CMR 的患者(n=17)中,比较了自由呼吸的 3D-SWIG 和常规屏气的 2D 电影。基于左心室分段进行了定量比较。

结果

数值模拟表明,与双黄金角度或螺旋叶序轨迹相比,3D-SWIG 不仅需要在连续读取之间的步骤更小,而且在分组后能更好地实现 K 空间采样均匀性。体内评估显示,从 48 次心跳自由呼吸 3D-SWIG 采集计算得到的左心室射血分数测量值具有高度可重复性,与屏气 2D-Cartesian 电影(平均±标准差差异为-3.1±3.5%)一致。

结论

3D-SWIG 采集提供了一种简单的解决方案,可在生理分组后极大地提高 K 空间均匀性。通过在不到 1 分钟的时间内进行自由呼吸的全心脏电影成像,本研究证明了 3D-SWIG 方法的可行性。

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