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Simulation of ultrasound two-dimensional array transducers using a frequency domain model.

机译:使用频域模型模拟超声二维阵列换能器。

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摘要

Ultrasound imaging with two-dimensional (2D) arrays has garnered broad interest from scanner manufacturers and researchers for real time three-dimensional (3D) applications. Previously the authors described a frequency domain B-mode imaging model applicable for linear and phased array transducers. In this paper, the authors extend this model to incorporate 2D array transducers. Further approximations can be made based on the fact that the dimensions of the 2D array element are small. The model is compared with the widely used ultrasound simulation program FIELD II, which utilizes an approximate form of the time domain impulse response function. In a typical application, errors in simulated RF waveforms are less than 4% regardless of the steering angle for distances greater than 2 cm, yet computation times are on the order of 1/35 of those incurred using FIELD II. The 2D model takes into account the effects of frequency-dependent attenuation, backscattering, and dispersion. Modern beam-forming techniques such as apodization, dynamic aperture, dynamic receive focusing, and 3D beam steering can also be simulated.
机译:带有二维(2D)阵列的超声成像已引起扫描仪制造商和研究人员对实时三维(3D)应用的广泛兴趣。先前,作者描述了适用于线性和相控阵换能器的频域B模式成像模型。在本文中,作者扩展了该模型以合并2D阵列换能器。基于2D阵列元件的尺寸小的事实,可以进行进一步的近似。该模型与广泛使用的超声仿真程序FIELD II进行了比较,该程序利用时域脉冲响应函数的近似形式。在典型的应用中,对于大于2 cm的距离,无论转向角如何,模拟RF波形中的误差都小于4%,但是计算时间约为使用FIELD II所产生的误差的1/35。 2D模型考虑了频率相关的衰减,反向散射和色散的影响。还可以模拟现代的波束形成技术,例如变迹,动态孔径,动态接收聚焦和3D波束控制。

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