arXiv:2506.20614eess.IVcs.AI2025-06

提出一种新频域特征,提升4D Flow MRI血管分割精度

Weighted Mean Frequencies: a handcraft Fourier feature for 4D Flow MRI segmentation

  • 设计加权平均频率(WMF)特征,捕捉脉动血流通过区域
  • 相比PC-MRA特征,分割指标IoU提升0.12,Dice提升0.13
  • 适用于心血管、脑血管等高动态血流区域的分割任务

近几十年来,4D Flow MRI已能对感兴趣区域内的速度场及心动周期中的变化进行量化。然而,这些生物标志物存在分辨率低和噪声大的问题。研究表明,壁面剪切应力等生物标志物尤其受血管分割分辨率不足的影响。目前最先进的分割方法是相位对比磁共振血管成像(PC-MRA)。本文提出一种新型手工设计特征——加权平均频率(WMF),用于4D Flow MRI图像的新可视化,有助于分割任务。该特征能揭示三维空间中被脉动血流经过的体素区域,代表所有脉动速度体素的包络。通过两项实验验证:使用最优阈值法与深度学习方法进行4D Flow MRI分割。结果表明,在深度学习任务中,相比PC-MRA特征,该方法在交并比(IoU)和Dice系数上分别提升0.12和0.13。该特征有望为心脏、脑部等其他血管区域的分割提供新思路。

原文摘要 · Abstract (English)

In recent decades, the use of 4D Flow MRI images has enabled the quantification of velocity fields within a volume of interest and along the cardiac cycle. However, the lack of resolution and the presence of noise in these biomarkers are significant issues. As indicated by recent studies, it appears that biomarkers such as wall shear stress are particularly impacted by the poor resolution of vessel segmentation. The Phase Contrast Magnetic Resonance Angiography (PC-MRA) is the state-of-the-art method to facilitate segmentation. The objective of this work is to introduce a new handcraft feature that provides a novel visualisation of 4D Flow MRI images, which is useful in the segmentation task. This feature, termed Weighted Mean Frequencies (WMF), is capable of revealing the region in three dimensions where a voxel has been passed by pulsatile flow. Indeed, this feature is representative of the hull of all pulsatile velocity voxels. The value of the feature under discussion is illustrated by two experiments. The experiments involved segmenting 4D Flow MRI images using optimal thresholding and deep learning methods. The results obtained demonstrate a substantial enhancement in terms of IoU and Dice, with a respective increase of 0.12 and 0.13 in comparison with the PC-MRA feature, as evidenced by the deep learning task. This feature has the potential to yield valuable insights that could inform future segmentation processes in other vascular regions, such as the heart or the brain.

医学图像血管分割频域特征MRI

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