van Knippenberg Luuk, van Sloun Ruud J G, Shulepov Sergei, Bouwman R Arthur, Mischi Massimo
IEEE Trans Ultrason Ferroelectr Freq Control. 2020 Aug;67(8):1513-1524. doi: 10.1109/TUFFC.2020.2975315. Epub 2020 Feb 20.
The Doppler ultrasound is the most common technique for noninvasive quantification of blood flow, which, in turn, is of major clinical importance for the assessment of the cardiovascular condition. In this article, a method is proposed in which the vessel is imaged in the short axis, which has the advantage of capturing the whole flow profile while measuring the vessel area simultaneously. This view is easier to obtain than the longitudinal image that is currently used in flow velocity estimation, reducing operator dependence. However, the Doppler angle in cross-sectional images is unknown since the vessel wall can no longer be used to estimate the flow direction. The proposed method to estimate the Doppler angle in these images is based on the elliptical intersection between a cylindrical vessel and the ultrasound plane. The parameters of this ellipse (major axis, minor axis, and rotation) are used to estimate the Doppler angle by solving a least-squares problem. Theoretical feasibility was shown in a geometrical model, after which the Doppler angle was estimated in simulated ultrasound images generated in Field II, yielding a mean error within 4°. In vitro, across 15 short-axis measurements with a wide variety of Doppler angles, errors in the flow estimates were below 10%, and in vivo, the average velocities in systole obtained from longitudinal ( v=69.1 cm/s) and cross-sectional ( v=66.5 cm/s) acquisitions were in agreement. Further research is required to validate these results on a larger population.
多普勒超声是用于无创定量血流的最常用技术,而血流定量对于评估心血管状况具有重要的临床意义。本文提出了一种方法,即对血管进行短轴成像,其优点是在测量血管面积的同时能够获取整个血流剖面。这种视图比目前用于流速估计的纵向图像更容易获得,减少了对操作人员的依赖。然而,由于血管壁不再用于估计血流方向,横截面图像中的多普勒角度是未知的。本文提出的估计这些图像中多普勒角度的方法基于圆柱血管与超声平面之间的椭圆相交。通过求解最小二乘问题,利用该椭圆的参数(长轴、短轴和旋转)来估计多普勒角度。在几何模型中证明了理论可行性,之后在Field II中生成的模拟超声图像中估计了多普勒角度,平均误差在4°以内。在体外,对15次具有各种多普勒角度的短轴测量中,血流估计误差低于10%,在体内,从纵向(v = 69.1 cm/s)和横截面(v = 66.5 cm/s)采集获得的收缩期平均速度是一致的。需要进一步研究以在更大规模人群中验证这些结果。