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Element size effect on phase aberration correction

机译:元件尺寸对相差校正的影响

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摘要

The distortion effect of tissue on ultrasonic beamforming is simplified as a 2-D time-shifting screen placed against the array surface. The ideal correction of such distortion requires a 2-D array with infinitesimally small elements. However, elements of finite sizes must be utilized in practice, causing the so-called residual phase error (RPE). As element size is reduced, the magnitude of the RPE is reduced, and its spatial feature becomes finer. Analyses have been performed to reveal that the magnitude of the RPE is proportional to the imaging frequency, the rms magnitude of the original time-delay error, and the diagonal size of individual rectangular elements, and is inversely proportional to the correlation length of the original time-delay error. Simulations have been performed to study the peak sidelobe level caused by the RPE as the element sizes are reduced. The sidelobe is defined here as the difference between the ideal beam (with no phase error) and the beam obtained in the presence of the RPE. For a multi-row array in which a conventional 1-D array is divided into N rows of independent elements in the elevation direction, the peak sidelobe level is found to vary approximately as N-1 instead of the anticipated N-2. The reduction is caused by the reduced magnitude of the RPE, and the finer spatial feature of the RPE, although apparent in the reduced spatial correlation length, does not result in additional reduction of the sidelobe level. The reason for this has been analyzed. The results of this study provide guidance for designing multi-row arrays suitable for phase aberration correction.
机译:通过将二维时移屏幕紧贴阵列表面放置,可简化组织对超声波束形成的变形效果。对这种失真的理想校正需要具有无限小的元素的二维阵列。但是,实际上必须使用有限尺寸的元素,这会导致所谓的残留相位误差(RPE)。随着元素尺寸的减小,RPE的大小减小,并且其空间特征变得更精细。分析表明,RPE的大小与成像频率,原始延时误差的均方根大小以及各个矩形元素的对角线大小成正比,并且与原始的相关长度成反比延时错误。已经进行了仿真来研究由于元件尺寸减小而由RPE引起的峰值旁瓣电平。旁瓣在此定义为理想光束(无相位误差)与存在RPE时获得的光束之差。对于其中将传统的一维阵列在仰角方向上划分为N行独立元素的多行阵列,发现旁瓣峰的峰值近似变化为N-1,而不是预期的N-2。减小是由RPE的大小减小引起的,并且RPE的更精细的空间特征(尽管在减小的空间相关长度上很明显)不会导致旁瓣电平的进一步减小。已经对此进行了分析。这项研究的结果为设计适合行相差校正的多行阵列提供了指导。

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