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A Locally Adaptive Phase Aberration Correction (LAPAC) Method for Synthetic Aperture Sequences

机译:用于合成孔径序列的局部自适应相位像差校正(LAPAC)方法

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Phase aberration is a phenomenon caused by heterogeneity of the speed of sound in tissue, in which the actual speed of sound of the tissue is different than the assumed speed of sound used for beamforming. It reduces the quality and resolution of ultrasonic images and impairs clinical diagnostic capabilities. Although phase aberration correction (PAC) methods can reduce these detrimental effects, most practical implementations of PAC methods are based on the near field phase screen model, which have limited ability to represent the true aberration induced by inhomogeneous tissue. Accordingly, we propose a locally adaptive phase aberration correction (LAPAC) method that is applied through the use of synthetic aperture. The method is tested using full-wave simulations of models of human abdominal wall, experiments with tissue aberrators, and in vivo carotid images. LAPAC is compared with conventional phase aberration correction (cPAC) where aberration profiles are computed at a preselected depth and applied to the beamformer's time delays. For all experiments, LAPAC shows an average of 1 to 2 dB higher contrast than cPAC, and enhancements of 3 to 7 dB with respect to the uncorrected cases. We conclude that LAPAC may be a viable option to enhance ultrasound image quality images even in the presence of clinically relevant aberrating conditions.
机译:相位像差是由组织中声音速度的异质性引起的现象,其中组织的实际速度与用于波束成形的假设的声音速度不同。它降低了超声图像的质量和分辨率,损害了临床诊断能力。虽然相位像差校正(PAC)方法可以降低这些不利影响,但PAC方法的大多数实际实现基于近场相筛模型,其具有有限的能力来表示不均匀组织诱导的真实像差。因此,我们提出了一种通过使用合成孔径施加的局部自适应相位像差校正(LAPAC)方法。使用人腹腹壁模型的全波模拟测试该方法,用组织衰减器和体内颈动脉图像进行实验。将LAPAC与传统的相位像差校正(CPAC)进行比较,其中在预选深度下计算像差轮廓并应用于波束形成器的时间延迟。对于所有实验,LAPAC的平均比对比度比CPAC平均为1至2dB,并且对于未校正的病例而增强3至7dB。我们得出结论,即使在存在临床相关的异常情况下,LAPAC也可以是增强超声图像质量图像的可行选择。

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