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基于 3D 全心脏 k 空间的旋转堆叠超分辨率心脏 T1 mapping。

3D whole heart k-space-based super-resolution cardiac T1 mapping using rotated stacks.

机构信息

Physikalisch-Technische Bundesanstalt (PTB), Braunschweig and Berlin, Germany.

Charité Medical Faculty University Medicine, Berlin, Germany.

出版信息

Phys Med Biol. 2024 Apr 9;69(8). doi: 10.1088/1361-6560/ad33b6.

Abstract

. To provide three-dimensional (3D) whole-heart high-resolution isotropic cardiac T1 maps using a k-space-based through-plane super-resolution reconstruction (SRR) with rotated multi-slice stacks.. Due to limited SNR and cardiac motion, often only 2D T1 maps with low through-plane resolution (4-8 mm) can be obtained. Previous approaches used SRR to calculate 3D high-resolution isotropic cardiac T1 maps. However, they were limited to the ventricles. The proposed approach acquires rotated stacks in long-axis orientation with high in-plane resolution but low through-plane resolution. This results in radially overlapping stacks from which high-resolution T1 maps of the whole heart are reconstructed using a k-space-based SRR framework considering the complete acquisition model. Cardiac and residual respiratory motion between different breath holds is estimated and incorporated into the reconstruction. The proposed approach was evaluated in simulations and phantom experiments and successfully applied to ten healthy subjects.. 3D T1 maps of the whole heart were obtained in the same acquisition time as previous methods covering only the ventricles. T1 measurements were possible even for small structures, such as the atrial wall. The proposed approach provided accurate (> 0.4;> 0.99) and precise T1 values (SD of 64.32 ± 22.77 ms in the proposed approach, 44.73 ± 31.9 ms in the reference). The edge sharpness of the T1 maps was increased by 6.20% and 4.73% in simulation and phantom experiments, respectively. Contrast-to-noise ratios between the septum and blood pool increased by 14.50% inmeasurements with a k-space compared to an image-space-based SRR.. The proposed approach provided whole-heart high-resolution 1.3 mm isotropic T1 maps in an overall acquisition time of approximately three minutes. Small structures, such as the atrial and right ventricular walls, could be visualized in the T1 maps.

摘要

. 利用基于 k 空间的平面内超分辨率重建(SRR)技术,从旋转多切片堆叠中获取三维(3D)全心高分辨率各向同性心脏 T1 图。由于信噪比和心脏运动的限制,通常只能获得低平面分辨率(4-8 毫米)的 2D T1 图。以前的方法使用 SRR 计算 3D 高分辨率各向同性心脏 T1 图。然而,它们仅限于心室。所提出的方法在长轴方向获取旋转的堆叠,具有高的平面内分辨率,但低的平面分辨率。这导致径向重叠的堆叠,从这些堆叠中使用基于 k 空间的 SRR 框架重建全心高分辨率 T1 图,同时考虑完整的采集模型。在不同的屏气之间估计心脏和残余呼吸运动,并将其纳入重建中。该方法在模拟和体模实验中进行了评估,并成功应用于 10 名健康受试者。与以前仅覆盖心室的方法相比,在相同的采集时间内获得了全心的 3D T1 图。即使对于小结构,如心房壁,也可以进行 T1 测量。该方法提供了准确(>0.4;>0.99)和精确的 T1 值(在提出的方法中,SD 为 64.32±22.77ms,在参考方法中为 44.73±31.9ms)。在模拟和体模实验中,T1 图的边缘锐度分别提高了 6.20%和 4.73%。与图像空间基于 SRR 的方法相比,在 k 空间的测量中,隔室和血池之间的对比噪声比增加了 14.50%。. 所提出的方法在大约三分钟的总采集时间内提供了全心高分辨率 1.3 毫米各向同性 T1 图。在 T1 图中可以看到小结构,如心房和右心室壁。

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