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血管曲率对多普勒衍生速度剖面和流体流动的影响。

Effect of vessel curvature on Doppler derived velocity profiles and fluid flow.

作者信息

Krams R, Bambi G, Guidi F, Helderman F, van der Steen A F W, Tortoli P

机构信息

Department of Biomedical Engineering, Erasmus MC, Erasmus University Rotterdam, PO Box 1738, 3000 DR Rotterdam, The Netherlands.

出版信息

Ultrasound Med Biol. 2005 May;31(5):663-71. doi: 10.1016/j.ultrasmedbio.2005.01.011.

Abstract

Side-branches and curvatures in the arterial tree yield deviations from the axial oriented velocity. Velocity or volume flow estimates based on the assumption that flow is axially oriented are of limited value at these sites. This article evaluates information obtainable by using a multigate Doppler ultrasound (US) instrument used with curved phantoms, which resemble the human coronary arteries. The comparison of experimental velocity data with data provided by an accurate computational fluid dynamics (CFD) method shows differences in the range of 4 to 11% for four curvatures with different radii. Multigate data are also used to estimate the volume flow in the curved segments at different experimental conditions. An error lower than 15% is obtained, to be compared with a 24% error obtained by assuming a parabolic velocity profile. In particular, it is shown that the residual error is not related to the small deviation of the velocity vectors from the axial direction due to the presence of secondary velocity components, which are found to be of magnitude less than 10% with respect to the axial velocity component.

摘要

动脉树中的分支和弯曲会导致轴向速度出现偏差。基于血流为轴向流动这一假设的速度或体积流量估计在这些部位的价值有限。本文评估了使用与人体冠状动脉相似的弯曲体模的多门多普勒超声(US)仪器可获得的信息。将实验速度数据与精确计算流体动力学(CFD)方法提供的数据进行比较,结果表明,对于四种不同半径的弯曲,差异在4%至11%的范围内。多门数据还用于估计不同实验条件下弯曲段的体积流量。获得的误差低于15%,与之相比,假设速度分布为抛物线形时获得的误差为24%。特别是,研究表明,残余误差与由于二次速度分量的存在而导致的速度矢量与轴向方向的小偏差无关,发现二次速度分量相对于轴向速度分量的大小小于10%。

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