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Recovery of the complete data set from focused transmit beams

机译:从聚焦的发射光束中恢复完整的数据集

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摘要

The focused transmit beam is a standard tool for clinical ultrasound scanning, concentrating energy from a number of array elements toward an imaging target. However, above and below the transmit focus, much of the energy in the beam is spread in a broadened main lobe and long off-axis tails that are ignored by conventional beamforming methods. This work proposes a method to decompose a set of focused transmit beams into their constituent components – diverging waves from individual array elements. The recovery of this complete data set enables synthetic transmit focusing at all points in the field of view without beam shape or focal depth artifacts commonly associated with virtual source synthetic aperture beamforming. An efficient frequency-domain linear decoding implementation is introduced. The principles of the method are demonstrated both in transmit field simulations and experimental imaging. At depth, up to a 9.6 dB improvement in electronic signal-to-noise ratio and 8.9 dB improvement in contrast were observed in comparison to conventional dynamic receive beamforming. The proposed method is broadly applicable to existing scan sequences and requires only channel data for processing.
机译:聚焦的发射束是用于临床超声扫描的标准工具,可将能量从多个阵列元件集中到成像目标。但是,在发射焦点的上方和下方,光束中的大部分能量都散布在一个较宽的主瓣和较长的偏轴尾部中,而传统的波束形成方法则忽略了它们。这项工作提出了一种方法,可以将一组聚焦的发射光束分解为它们的组成部分,即将各个阵列元件的波发散。该完整数据集的恢复使合成发射聚焦在视场中的所有点上,而无需通常与虚拟源合成孔径波束形成相关的光束形状或焦深伪影。介绍了一种有效的频域线性解码实现。该方法的原理在发射场仿真和实验成像中均得到了证明。与传统的动态接收波束形成相比,在深度处观察到电子信噪比提高了9.6 dB,对比度提高了8.9 dB。所提出的方法广泛适用于现有的扫描序列,并且仅需要信道数据进行处理。

著录项

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  • 作者

    Nick Bottenus;

  • 作者单位
  • 年(卷),期 -1(65),1
  • 年度 -1
  • 页码 30–38
  • 总页数 25
  • 原文格式 PDF
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