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Validation of optimal 2D sparse arrays in focused mode: Phantom experiments

机译:聚焦模式下最佳2D稀疏阵列的验证:虚拟实验

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There is an increasing interest for sparse 2D arrays as an alternative to full gridded arrays used in commercial systems. This work presents an effective and straightforward solution to perform 3D ultrasound imaging by driving a reduced number of elements of a commercial 2D array. The selection of 128, 192 or 256 elements out of a 32×32 array was based on simulated annealing to produce radiated beam patterns with optimal tradeoff in terms of main lobe width (resolution) and side lobe level (contrast) over a (± 32°) volume. The aim of the present work is to experimentally validate these optimal configurations by performing 3D focused imaging on a phantom. The performance metrics included the lateral resolution and the contrast to noise ratio (CNR), measured on the images obtained by scanning a grayscale phantom. The results show that the optimized 256 elements array performs, as expected, the best among all the compared sparse arrays, presents the same resolution performance as the full array and a -6 dB loss of CNR while using 25% of the active elements.
机译:对于商业系统中使用的全网格阵列的替代品,稀疏2D阵列越来越引起人们的关注。这项工作提出了一种有效而直接的解决方案,可以通过驱动减少数量的商业2D阵列元素来执行3D超声成像。从32×32阵列中选择128、192或256个元素是基于模拟退火,以产生在(±32)范围内主瓣宽度(分辨率)和旁瓣水平(对比度)方面具有最佳折衷的辐射束方向图。 °)的体积。本工作的目的是通过在体模上执行3D聚焦成像,以实验方式验证这些最佳配置。性能指标包括横向分辨率和对比度噪声比(CNR),它们是通过扫描灰度体模获得的图像上测得的。结果表明,优化的256个元素阵列按预期在所有比较的稀疏阵列中表现最佳,在使用25%的有源元素的情况下,具有与整个阵列相同的分辨率性能,并且CNR损耗为-6 dB。

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