3D+t Vector Flow Imaging with Transverse Oscillations and Doppler Estimator

F. Varray, Sébastien Salles, L. Petrusca, H. Liebgott
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引用次数: 3

Abstract

Blood flow evaluation with ultrasound is an extremely usefull tool in the clinics in many different situations. The evaluation of the real 2D or 3D flow direction and amplitude remains an unsolved issue and a challenge to access to the full and correct flow characteristic. In this paper, an advanced 3D ultrasound system is used to estimate the 3D blood flow in an home made phantom with a laminar flow. After the acquisitions, the 3D processing of the beamformed volumes allow the creation of transverse oscillations and motion estimation in several direction to create a complex vector flow map in 3D. The obtained streamlines are coherent through the cycle and the qualitative evaluation of the flow is possible, even in direction perpendicular to the US beam axis. The proposed setup and method must be evaluated more deeply in more complex geometries, but this work demonstrates the feasibility to use such advanced system in 3D+t flow evaluation.
三维+t矢量流成像与横向振荡和多普勒估计
在许多不同的情况下,超声血流评估是一种非常有用的工具。真实的二维或三维流动方向和幅度的评估仍然是一个未解决的问题,也是获得完整和正确的流动特性的挑战。本文采用一种先进的三维超声系统对自制的层流模型进行三维血流测量。采集数据后,对波束形成体进行三维处理,可以在多个方向上创建横向振荡和运动估计,从而创建复杂的三维矢量流图。获得的流线在整个循环中是一致的,并且可以对流动进行定性评估,甚至在垂直于US束轴的方向上也是如此。所提出的设置和方法必须在更复杂的几何形状中进行更深入的评估,但这项工作证明了在3D+t流动评估中使用这种先进系统的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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