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Column-based micro-beamformer for improved 2D beamforming using a matrix array transducer

机译:基于柱的微束形成器,用于使用矩阵阵列换能器改进的2D波束成形

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In a 3-D medical ultrasound imaging system, a matrix array probe with 2-D positioning of the elements allows high resolution of ultrasound images due to its capability of two-dimensional dynamic focusing. However, the hundreds (up to thousands) of elements in the matrix array make the fabrication of the transducers and cables challenging. In this paper1, to achieve high quality of 3-D ultrasound images with low hardware complexity, we introduce a column-based micro-beamformer (CMB) in which a column in the matrix array is considered as a sub-array and then elevational and lateral beamformings are sequentially conducted in the analog and digital stages, respectively. For the performance evaluation of the proposed beamformer, the beam pattern simulations are conducted and point-spread-functions are obtained. In addition, root-mean-square-errors (RMSEs) in round-trip time delays were measured over the depths. Compared to a conventional micro-beamformer, the CMB produced more tightly focused beam patterns and showed almost equivalent performance to that of fully sampled array. In the near field, the mean RMSEs of the proposed and conventional beamformers were 274 ns and 18.1 ns (improved 93.4% of delay accuracy), respectively.
机译:在3-D医用超声成像系统中,由于其二维动态聚焦的能力,具有2-D元件的矩阵阵列探针允许高分辨率高分辨率超声图像。然而,矩阵阵列中的数百(高达数千个)元件使换能器和电缆的制造具有挑战性的制造。在本文中,为了实现具有低硬件复杂性的高质量的三维超声图像,我们引入了基于列的微束形成器(CMB),其中矩阵阵列中的列被认为是子阵列,然后是高度的横向波束形成分别在模拟和数字阶段中顺序进行。对于所提出的波束形成器的性能评估,进行光束图案模拟,并获得点扩散功能。另外,在深度上测量往返时间延迟中的根平均方误差(RMSE)。与传统的微束形成器相比,CMB产生了更紧密聚焦的光束图案,并且对完全采样阵列的性能几乎相当于相同的性能。在近场中,所提出的和常规波束形成剂的平均RMSS分别为274ns和18.1ns(提高了93.4%的延迟精度)。

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