大螺距可操纵合成透射孔径成像

Y. Li, Michael C. Kolios, Yuan Xu
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引用次数: 1

摘要

线性超声阵列系统通常比相控阵系统具有更大的间距和更低的成本,但失去了完全控制超声波束的能力。在本文中,我们提出了一个系统,它的硬件类似于一个大间距线性阵列系统,但其控制光束的能力类似于相控阵系统。其动机是在保持合理图像质量的同时,减少测量通道总数M(每次传输的传输通道数nT与每次传输的接收通道数nR的乘积)。我们将相邻的元素(引入适当的延迟)组合成一组,用于合成发射孔径成像的发射和接收过程。在采集到M个信道的射频数据后,利用伪反演方法估计传统STA中的等效信号,重建STA图像。即使M相似,选择不同的nT和nR也会产生不同的图像质量。在选定的感兴趣区域(ROI)中,用M=N2/15产生的图像被证明与全相控阵相当,其中N是阵列元素的数量。该系统的缺点是其在一个延迟配置下的视场小于标准的全相控阵。然而,通过调整每组中每个元件的延迟,可以引导波束覆盖与标准全填充相控阵相同的视场。LPSSTA系统可用于三维超声成像。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Large-pitch steerable synthetic transmit aperture imaging (LPSSTA)
A linear ultrasound array system usually has a larger pitch and is less costly than a phased array system, but loses the ability to fully steer the ultrasound beam. In this paper, we propose a system whose hardware is similar to a large-pitch linear array system, but whose ability to steer the beam is similar to a phased array system. The motivation is to reduce the total number of measurement channels M (the product of the number of transmissions, nT, and the number of the receive channels in each transmission, nR), while maintaining reasonable image quality. We combined adjacent elements (with proper delays introduced) into groups that would be used in both the transmit and receive processes of synthetic transmit aperture imaging. After the M channels of RF data were acquired, a pseudo-inversion was applied to estimate the equivalent signal in traditional STA to reconstruct a STA image. Even with the similar M, different choices of nT and nR will produce different image quality. The images produced with M=N2/15 in the selected regions of interest (ROI) were demonstrated to be comparable with a full phased array, where N is the number of the array elements. The disadvantage of the proposed system is that its field of view in one delay-configuration is smaller than a standard full phased array. However, by adjusting the delay for each element within each group, the beam can be steered to cover the same field of view as the standard fully-filled phased array. The LPSSTA system might be useful for 3D ultrasound imaging.
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