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优化平均流和湍流的4D流磁共振成像的编码策略。

Optimizing encoding strategies for 4D Flow MRI of mean and turbulent flow.

作者信息

Dirix Pietro, Buoso Stefano, Kozerke Sebastian

机构信息

Institute for Biomedical Engineering, University and ETH Zurich, Zurich, Switzerland.

出版信息

Sci Rep. 2024 Aug 27;14(1):19897. doi: 10.1038/s41598-024-70449-9.

Abstract

For 4D Flow MRI of mean and turbulent flow a compromise between spatiotemporal undersampling and velocity encodings needs to be found. Assuming a fixed scan time budget, the impact of trading off spatiotemporal undersampling versus velocity encodings on quantification of velocity and turbulence for aortic 4D Flow MRI was investigated. For this purpose, patient-specific mean and turbulent aortic flow data were generated using computational fluid dynamics which were embedded into the patient-specific background image data to generate synthetic MRI data with corresponding ground truth flow. Cardiac and respiratory motion were included. Using the synthetic MRI data as input, 4D Flow MRI was subsequently simulated with undersampling along pseudo-spiral Golden angle Cartesian trajectories for various velocity encoding schemes. Data were reconstructed using a locally low rank approach to obtain mean and turbulent flow fields to be compared to ground truth. Results show that, for a 15-min scan, velocity magnitudes can be reconstructed with good accuracy relatively independent of the velocity encoding scheme ( , good accuracy ( ) and with peak velocity errors limited to 10%. Turbulence maps on the other hand suffer from both lower reconstruction quality ( ) and larger sensitivity to undersampling, motion and velocity encoding strengths ( when compared to velocity maps. The best compromise to measure unwrapped velocity maps and turbulent kinetic energy given a fixed 15-min scan budget was found to be a 7-point multi- acquisition with a low tuned for best sensitivity to the range of expected intra-voxel standard deviations and a high larger than the expected peak velocity.

摘要

对于平均流和湍流的4D流动MRI,需要在时空欠采样和速度编码之间找到折衷方案。假设扫描时间预算固定,研究了在主动脉4D流动MRI中权衡时空欠采样与速度编码对速度和湍流定量的影响。为此,使用计算流体动力学生成患者特异性的主动脉平均流和湍流数据,并将其嵌入到患者特异性背景图像数据中,以生成具有相应真实流的合成MRI数据。其中考虑了心脏和呼吸运动。以合成MRI数据为输入,随后针对各种速度编码方案,沿着伪螺旋黄金角笛卡尔轨迹进行欠采样,模拟4D流动MRI。使用局部低秩方法重建数据,以获得平均流场和湍流场,并与真实情况进行比较。结果表明,对于15分钟的扫描,速度大小可以以较高的精度重建,相对独立于速度编码方案(,精度良好(),峰值速度误差限制在10%以内。另一方面,与速度图相比,湍流图的重建质量较低(),并且对欠采样、运动和速度编码强度更为敏感()。在固定的15分钟扫描预算下,测量展开速度图和湍流动能的最佳折衷方案是采用7点多重采集,低用于对预期体素内标准差范围具有最佳敏感性,高大于预期峰值速度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e5b/11349923/d53e2e8d8aca/41598_2024_70449_Fig1_HTML.jpg

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