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具有减少串扰伪影的三维多行传输:一项概念验证研究。

Multi-line transmission in 3-D with reduced crosstalk artifacts: a proof of concept study.

作者信息

Denarie Bastien, Bjåstad Tore, Torp Hans

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2013 Aug;60(8):1708-18. doi: 10.1109/TUFFC.2013.2752.

Abstract

Multi-line transmission (MLT) is a technique in which ultrasound pulses for several directions are transmitted simultaneously. The purpose is increased frame rate, which is especially important in 3-D echocardiography. Compared with techniques purely based on parallel beamformation, MLT avoids the need for reducing the transmit aperture and thus maintains a high harmonic signal level. The main disadvantage is that artifacts are caused by cross-talk between the simultaneous beams. In a conventional MLT implementation, simultaneous transmits would be spaced regularly in the azimuth and elevation planes. However, using rectangular geometry arrays, most of the acoustic side-lobe energy is concentrated along these planes. The results in this work show that the crosstalks can be pushed below the typical display range of 50 dB used in cardiac applications if the parallel transmit directions are aligned along the transverse diagonal of the array. Dispositions with 2 to 5 MLT for a typical cardiac 2-D phased-array were investigated using simulation software. Using the proposed alignment, the maximal crosstalk artifact amplitudes decreased 20 to 30 dB compared with conventional MLT dispositions. In water-tank measurements, side-lobe levels of a commercially available rectangular probe were 15 to 25 dB lower along the transverse diagonal, confirming that similar suppressions can be expected using actual transducers.

摘要

多线传输(MLT)是一种同时发射多个方向超声脉冲的技术。其目的是提高帧率,这在三维超声心动图中尤为重要。与单纯基于平行波束形成的技术相比,MLT避免了减小发射孔径的需要,从而保持了较高的谐波信号水平。主要缺点是同时发射的波束之间的串扰会导致伪像。在传统的MLT实现中,同时发射在方位角和仰角平面上会有规律地间隔。然而,使用矩形几何阵列时,大部分声学旁瓣能量集中在这些平面上。这项工作的结果表明,如果平行发射方向沿阵列的横向对角线排列,串扰可以被压低到心脏应用中常用的50 dB典型显示范围以下。使用模拟软件研究了典型心脏二维相控阵的2至55550 dB典型显示范围以下。使用模拟软件研究了典型心脏二维相控阵的2至5线MLT配置。使用所提出的排列方式,与传统的MLT配置相比,最大串扰伪像幅度降低了20至30 dB。在水槽测量中,市售矩形探头沿横向对角线的旁瓣水平低15至25 dB,这证实了使用实际换能器也可预期有类似的抑制效果。

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