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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >2-D tissue motion compensation of synthetic transmit aperture images
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2-D tissue motion compensation of synthetic transmit aperture images

机译:合成发射孔径图像的二维组织运动补偿

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Synthetic transmit aperture (STA) imaging is susceptible to tissue motion because it uses summation of low-resolution images to create the displayed high-resolution image. A method for 2-D tissue motion correction in STA imaging is presented. It utilizes the correlation between highresolution images recorded using the same emission sequence. The velocity and direction of the motion are found by cross correlating short high-resolution lines beamformed along selected angles. The motion acquisition is interleaved with the regular B-mode emissions in STA imaging, and the motion compensation is performed by tracking each pixel in the reconstructed image using the estimated velocity and direction. The method is evaluated using simulations, and phantom and in vivo experiments. In phantoms, a tissue velocity of 15 cm/s at a 45 0; angle was estimated with relative bias and standard deviation of -6.9% and 5.4%; the direction was estimated with relative bias and standard deviation of -8.4% and 6.6%. The contrast resolution in the corrected image was -0.65% lower than the reference image. Abdominal in vivo experiments with induced transducer motion demonstrate that severe tissue motion can be compensated for, and that doing so yields a significant increase in image quality.
机译:合成发射孔径(STA)成像容易受到组织运动的影响,因为它使用低分辨率图像的总和来创建显示的高分辨率图像。提出了一种用于STA成像中的二维组织运动校正的方法。它利用了使用相同发射序列记录的高分辨率图像之间的相关性。通过将沿选定角度形成波束的高分辨率短短线进行互相关,可以找到运动的速度和方向。在STA成像中,运动采集与常规B模式发射交错,并且通过使用估计的速度和方向跟踪重建图像中的每个像素来执行运动补偿。该方法使用仿真,幻像和体内实验进行评估。在幻影中,组织速度为45 0时为15 cm / s;估计角度,相对偏差和标准偏差分别为-6.9%和5.4%;估计方向时的相对偏差和标准偏差分别为-8.4%和6.6%。校正后的图像中的对比度分辨率比参考图像低-0.65%。感应换能器运动引起的腹部体内实验表明,严重的组织运动可以得到补偿,并且这样做可以显着提高图像质量。

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