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Influence of principal component analysis acceleration factor on velocity measurement in 2D and 4D PC-MRI

机译:主成分分析加速度因子对2D和4D PC-MRI速度测量的影响

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Objective The objective of the study was to determine how to optimize 2D and 4D phase-contrast magnetic resonance imaging (PC-MRI) acquisitions to acquire flow velocities in millimetric vessels. In particular, we search for the best compromise between acquisition time and accuracy and assess the influence of the principal component analysis (PCA). Materials and methods 2D and 4D PC-MRI measurements are conducted within two in vitro vessel phantoms: a Y-bifurcation phantom, the branches of which range from 2 to 5 mm in diameter, and a physiological subject-specific phantom of the carotid bifurcation. The same sequences are applied in vivo in carotid vasculature. Results For a vessel oriented in the axial direction, both 2D and axial 4D PC-MRI provided accuracy measurements regardless of the k-t PCA factor, while the acquisition time is reduced by a factor 6 for k-t PCA maximum value. The in vivo measurements show that the proposed sequences are adequate to acquire 2D and 4D velocity fields in millimetric vessels and with clinically realistic time durations. Conclusion The study shows the feasibility of conducting fast, high-resolution PC-MRI flow measurements in millimetric vessels and that it is worth maximizing the k-t PCA factor to reduce the acquisition time in the case of 2D and 4D axial acquisitions.
机译:目的该研究的目的是确定如何优化2D和4D相位对比磁共振成像(PC-MRI)采集以获得毫米血管中的流速。特别是,我们搜索采集时间和准确性之间的最佳折衷,并评估主成分分析(PCA)的影响。材料和方法2D和4D PC-MRI测量在两种体外血管血管内进行:Y分叉体模,其分支范围为2至5mm的直径,以及颈动脉分叉的生理学对象特异性幽灵。在颈动脉脉管系统的体内施用相同的序列。在轴向方向上取向的血管,两个和轴向4D PC-MRI都提供了无论K-T PCA因子如何提供精度测量,而采集时间减少了K-T PCA最大值的因子6。体内测量表明,所提出的序列足以在毫米血管中获得2D和4D速度场,并具有临床实际的时间持续时间。结论该研究表明,在毫米船舶中进行快速,高分辨率PC-MRI流量测量的可行性,并且值得最大限度地提高K-T PCA因子,以减少2D和4D轴向采集的情况下的采集时间。

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