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Optimal Virtual Sources Distribution in 3-D Diverging Wave Ultrasound Imaging: An Experimental Study

机译:3-D发散波超声成像中的最佳虚拟源分布:实验研究

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The use of 2-D array probes to perform 3-D ultrasound imaging is still investigated in many domains. The extension from 2-D to 3-D imaging causes problems because of the need to control a very large number of elements on the probe. It might be overcome by using 2-D sparse array. This problem has been recently shown that sparse 2-D arrays can be used for 3-D fast ultrasound imaging based on the transmission of Diverging Waves (DW). The aim of this work is to experimentally analyze how the distribution of a given number (25)of Virtual Sources (VS)over a predefined area affects the images obtained with one fully populated probe and two sparse array probes, respectively. In order to do that, gridded and spiral distributions of virtual sources have been implemented. The results show that with the spiral distribution there is a general improvement of the contrast despite of a degradation on both lateral and axial resolutions.
机译:在许多领域中仍在研究使用2-D阵列探针进行3-D超声成像。从2D到3D成像的扩展引起了问题,因为需要控制探针上的大量元素。通过使用二维稀疏数组可以克服这一问题。最近已经显示了该问题,基于发散波(DW)的传输,稀疏2-D阵列可用于3-D快速超声成像。这项工作的目的是通过实验分析给定数量(25)的虚拟源(VS)在预定义区域上的分布如何分别影响使用一个完全填充的探针和两个稀疏阵列探针获得的图像。为了做到这一点,已经实现了虚拟源的网格分布和螺旋分布。结果表明,尽管横向和轴向分辨率均下降,但采用螺旋分布时,对比度总体上得到了改善。

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