Department of Electronics and Telecommunications, Università degli Studi di Firenze, Florence, Italy.
Ultrasound Med Biol. 2010 Mar;36(3):488-96. doi: 10.1016/j.ultrasmedbio.2009.11.004. Epub 2010 Feb 4.
Two-dimensional angle-independent blood velocity estimates typically combine the Doppler frequencies independently measured by two ultrasound beams with known interbeam angle. A different dual-beam approach was recently introduced in which one (reference) beam is used to identify the flow direction, and the second (measuring) beam directly estimates the true flow velocity at known beam-flow angle. In this paper, we present a procedure to automatically steer the two beams along optimal orientations so that the velocity magnitude can be measured. The operator only takes care of locating the Doppler sample volume in the region of interest and, through the extraction of appropriate parameters from the Doppler spectrum, the reference beam is automatically steered toward right orientation to the flow. The velocity magnitude is thus estimated by the measuring beam, which is automatically oriented with respect to the (known) flow direction at a suitable Doppler angle. The implementation of the new angle tracking method in the ULtrasound Advanced Open Platform (ULA-OP), connected to a linear array transducer, is reported. A series of experiments shows that the proposed method rapidly locks the flow direction and measures the velocity magnitude with low variability for a large range of initial probe orientations. In vitro tests conducted in both steady and pulsatile flow conditions produced coefficients of variability (CV) below 2.3% and 8.3%, respectively. The peak systolic velocities have also been measured in the common carotid arteries of 13 volunteers, with mean CV of 7%.
二维角度无关的血流速度估计通常将两个超声束独立测量的多普勒频率与已知的束间角度相结合。最近引入了一种不同的双束方法,其中一个(参考)束用于识别流向,第二个(测量)束直接在已知的波束-流角处估计真实的流速。在本文中,我们提出了一种自动引导两个波束沿最佳方向的方法,以便可以测量速度大小。操作员只需负责在感兴趣区域定位多普勒采样体积,并且通过从多普勒频谱中提取适当的参数,参考束会自动沿流向正确方向转向。因此,通过测量束来估计速度大小,测量束会自动相对于(已知)流向在适当的多普勒角度定向。报告了在连接到线性阵列换能器的 ULtrasound Advanced Open Platform (ULA-OP) 中实现新角度跟踪方法的情况。一系列实验表明,该方法可以快速锁定流向,并在很大的初始探头方向范围内以低变化性测量速度大小。在稳态和脉动流条件下进行的体外测试分别产生了低于 2.3%和 8.3%的变异系数 (CV)。还在 13 名志愿者的颈总动脉中测量了收缩期峰值速度,平均 CV 为 7%。