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首页> 外文期刊>Acta Radiologica >Accuracy of four-dimensional phase-contrast velocity mapping for blood flow visualizations: a phantom study.
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Accuracy of four-dimensional phase-contrast velocity mapping for blood flow visualizations: a phantom study.

机译:用于血流可视化的二维相衬速度测绘的准确性:幻像研究。

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Time-resolved three-dimensional, three-directional phase-contrast magnetic resonance velocity mapping (4D PC-MRI) is a powerful technique to depict dynamic blood flow patterns in the human body. However, the impact of phase background effects on flow visualizations has not been thoroughly studied previously, and it has not yet been experimentally demonstrated to what degree phase offsets affect flow visualizations and create errors such as inaccurate particle traces.To quantify background phase offsets and their subsequent impact on particle trace visualizations in a 4D PC-MRI sequence. Additionally, we sought to investigate to what degree visualization errors are reduced by background phase correction.A rotating phantom with a known velocity field was used to quantify background phase of 4D PC-MRI sequences accelerated with SENSE as well as different k-t BLAST speed-up factors. The deviation in end positions between particle traces in the measured velocity fields were compared before and after the application of two different phase correction methods.Phantom measurements revealed background velocity offsets up to 7 cm/s (7% of velocity encoding sensitivity) in the central slice, increasing with distance from the center. Background offsets remained constant with increasing k-t BLAST speed-up factors. End deviations of up to 5.3 mm (1.8 voxels) in the direction perpendicular to the rotating disc were found between particle traces and the seeding plane of the traces. Phase correction by subtraction of the data from the stationary phantom reduced the average deviation by up to 56%, while correcting the data-set with a first-order polynomial fit to stationary regions decreased average deviation up to 78%.Pathline visualizations can be significantly affected by background phase errors, highlighting the importance of dedicated and robust phase correction methods. Our results show that pathline deviation can be substantial if adequate phase background errors are not minimized.
机译:时间分辨的三维,三向相衬磁共振速度图(4D PC-MRI)是一种强大的技术,可以描述人体中动态血流模式。然而,相位背景效应对流动可视化的影响尚未得到充分研究,尚未通过实验证明相位偏移对流动可视化有多大程度的影响并产生诸如不准确的颗粒痕迹之类的误差。随后对4D PC-MRI序列中的微粒痕迹可视化的影响。此外,我们试图研究通过背景相位校正将可视化误差降低到何种程度。使用具有已知速度场的旋转体模来量化以SENSE以及不同的kt BLAST加速而加速的4D PC-MRI序列的背景相位因素。在应用两种不同的相位校正方法之前和之后,比较了测得的速度场中粒子迹之间的末端位置偏差。幻像测量显示中心的背景速度偏移高达7 cm / s(速度编码灵敏度的7%)切片,随着距中心距离的增加而增加。背景偏移随着k-t BLAST加速因子的增加而保持恒定。在粒子迹线和迹线的播种平面之间,在垂直于旋转圆盘的方向上出现了最大5.3毫米(1.8体素)的最终偏差。通过从固定体模中减去数据进行相位校正可将平均偏差最多减少56%,而通过对固定区域进行一阶多项式拟合来校正数据集可将平均偏差最多减少78%。受背景相位误差的影响,突出了专用且可靠的相位校正方法的重要性。我们的结果表明,如果不将适当的相位背景误差最小化,则路径偏差可能会很大。

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