Free-breathing 3D cardiac extracellular volume (ECV) mapping using a linear tangent space alignment (LTSA) model.

ArXiv Pub Date : 2024-08-22
Wonil Lee, Paul Kyu Han, Thibault Marin, Ismaël B G Mounime, Samira Vafay Eslahi, Yanis Djebra, Didi Chi, Felicitas J Bijari, Marc D Normandin, Georges El Fakhri, Chao Ma
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引用次数: 0

Abstract

$\textbf{Purpose:}$ To develop a new method for free-breathing 3D extracellular volume (ECV) mapping of the whole heart at 3T. $\textbf{Methods:}$ A free-breathing 3D cardiac ECV mapping method was developed at 3T. T1 mapping was performed before and after contrast agent injection using a free-breathing ECG-gated inversion-recovery sequence with spoiled gradient echo readout. A linear tangent space alignment (LTSA) model-based method was used to reconstruct high-frame-rate dynamic images from (k,t)-space data sparsely sampled along a random stack-of-stars trajectory. Joint T1 and transmit B1 estimation was performed voxel-by-voxel for pre- and post-contrast T1 mapping. To account for the time-varying T1 after contrast agent injection, a linearly time-varying T1 model was introduced for post-contrast T1 mapping. ECV maps were generated by aligning pre- and post-contrast T1 maps through affine transformation. $\textbf{Results:}$ The feasibility of the proposed method was demonstrated using in vivo studies with six healthy volunteers at 3T. We obtained 3D ECV maps at a spatial resolution of 1.9$\times$1.9$\times$4.5 $mm^{3}$ and a FOV of 308$\times$308$\times$144 $mm^{3}$, with a scan time of 10.1$\pm$1.4 and 10.6$\pm$1.6 min before and after contrast agent injection, respectively. The ECV maps and the pre- and post-contrast T1 maps obtained by the proposed method were in good agreement with the 2D MOLLI method both qualitatively and quantitatively. $\textbf{Conclusion:}$ The proposed method allows for free-breathing 3D ECV mapping of the whole heart within a practically feasible imaging time. The estimated ECV values from the proposed method were comparable to those from the existing method. $\textbf{Keywords:}$ cardiac extracellular volume (ECV) mapping, cardiac T1 mapping, linear tangent space alignment (LTSA), manifold learning.

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使用线性切线空间配准(LTSA)模型绘制自由呼吸三维心脏细胞外容积(ECV)图。
$textbf{目的:}$ 开发一种在3T下自由呼吸的全心三维细胞外容积(ECV)测绘新方法。$textbf{方法:}$ 在3T下开发了一种自由呼吸三维心脏ECV测绘方法。在注射造影剂前后,使用自由呼吸心电图门控反转恢复序列和破坏梯度回波读出进行T1测绘。采用基于线性切线空间配准(LTSA)模型的方法,从沿随机星堆轨迹稀疏采样的(k,t)空间数据重建高帧率动态图像。对对比前和对比后的 T1 映射逐象素进行联合 T1 和透射 B1 估算。为考虑造影剂注射后 T1 的时变性,在造影后 T1 映射中引入了线性时变 T1 模型。通过仿射变换对对比前和对比后的 T1 图进行对齐,生成 ECV 图。$textbf{Results:}$ 通过对六名健康志愿者在3T下进行的体内研究,证明了所提方法的可行性。我们获得了空间分辨率为1.9/times$1.9/times$4.5 mm^{3}$、FOV为308/times$308/times$144 mm^{3}$的三维ECV图,造影剂注射前后的扫描时间分别为10.1/pm/1.4和10.6/pm/1.6分钟。该方法得到的ECV图以及对比前后的T1图在定性和定量方面都与二维MOLLI方法有很好的一致性。$textbf{结论:}$ 所提出的方法可以在实际可行的成像时间内完成整个心脏的自由呼吸三维心电信号图。该方法估算出的ECV值与现有方法估算出的ECV值相当。$textbf{关键词:}$ 心脏细胞外容积(ECV)映射、心脏T1映射、线性切线空间配准(LTSA)、流形学习。
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