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Pulse elongation and deconvolution filtering for medical ultrasonic imaging

机译:用于医学超声成像的脉冲伸长和去卷积滤波

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摘要

Range sidelobe artifacts which are associated with pulse compression methods can be reduced with a new method composed of pulse elongation and deconvolution (PED). While pulse compression and PED yield similar signal-to-noise ratio (SNR) improvements, PED inherently minimizes the range sidelobe artifacts. The deconvolution is implemented as a stabilized inverse filter. With proper selection of the excitation waveform an exact inverse filter can be implemented. The excitation waveform is optimized in a minimum mean square error (MMSE) sense. An analytical expression for the power spectrum of the optimal pulse is presented and several techniques to numerically optimize the excitation pulse are shown. The effects of PED are demonstrated in computer simulations as well as ultrasonic images.
机译:与脉冲压缩方法相关的距离旁瓣伪影可以通过由脉冲伸长和反卷积(PED)组成的新方法来减少。尽管脉冲压缩和PED产生了相似的信噪比(SNR)改善,但PED固有地将范围旁瓣伪像最小化。去卷积被实现为稳定的逆滤波器。通过正确选择激励波形,可以实现精确的逆滤波器。在最小均方误差(MMSE)的意义上优化了激励波形。给出了最佳脉冲功率谱的解析表达式,并给出了几种数值优化激励脉冲的技术。 PED的效果在计算机仿真以及超声图像中得到了证明。

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