IEEE Trans Ultrason Ferroelectr Freq Control. 2017 Aug;64(8):1194-1204. doi: 10.1109/TUFFC.2017.2710361.
A method for estimating vector velocities using transverse oscillation (TO) combined with directional beamforming is presented. In directional TO (DTO), a normal focused field is emitted and the received signals are beamformed in the lateral direction transverse to the ultrasound beam to increase the amount of data for vector velocity estimation. The approach is self-calibrating as the lateral oscillation period is estimated from the directional signal through a Fourier transform to yield quantitative velocity results over a large range of depths. The approach was extensively simulated using Field IIpro and implemented on the experimental Synthetic Aperture Real-time Ultrasound System (SARUS) scanner in connection with a BK Medical 8820e convex array transducer. Velocity estimates for DTO are found for beam-to-flow angles of 60°, 75°, and 90°, and vessel depths from 24 to 156 mm. Using 16 emissions, the standard deviation (SD) for angle estimation at depths ranging from 24 to 104 mm is between 6.01° and 0.93° with a mean SD of 2.8°. The mean relative SD for the lateral velocity component is 9.2% and the mean relative bias -3.4% or four times lower than for traditional TO. The approach also works for deeper lying vessels with a slight increase in SD to 15.7%, but a maintained bias of -3.5% from 126 to 156 mm. Data for a pulsating flow have also been acquired for 15 cardiac cycles using a CompuFlow 1000 pump. The relative SD was here 7.4% for a femoral artery waveform.
本文提出了一种利用横向振动(TO)与指向性波束形成结合来估计向量速度的方法。在指向性 TO(DTO)中,发射一个正常聚焦场,接收信号在横向于超声束的侧向进行波束形成,以增加向量速度估计的数据量。该方法是自校准的,因为通过傅里叶变换从指向性信号估计侧向振动周期,从而在较大的深度范围内产生定量的速度结果。该方法使用 Field IIpro 进行了广泛的模拟,并在实验性合成孔径实时超声系统(SARUS)扫描仪上与 BK Medical 8820e 凸阵换能器一起实现。对于 DTO,针对 60°、75°和 90°的波束与血流角度以及 24 至 156mm 的血管深度进行了速度估计。使用 16 次发射,在 24 至 104mm 的深度范围内,角度估计的标准偏差(SD)在 6.01°至 0.93°之间,平均 SD 为 2.8°。侧向速度分量的平均相对 SD 为 9.2%,平均相对偏差为-3.4%,比传统 TO 低四倍。该方法对于较深的血管也有效,SD 略有增加至 15.7%,但从 126 至 156mm 的偏置保持在-3.5%。还使用 CompuFlow 1000 泵采集了 15 个心动周期的脉动流数据。对于股动脉波形,相对 SD 为 7.4%。