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Iterative Reconstruction of Medical Ultrasound Images Using Spectrally Constrained Phase Updates

机译:使用谱约束相位更新迭代重建医学超声图像

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Image deconvolution is a standard numerical procedure used in medical ultrasound imaging for improving the resolution and contrast of diagnostic sonograms. However, due to the intrinsic bandlimitedness of ultrasound scanners and the adverse effect of measurement noises, image deconvolution is known to be exceedingly sensitive to the errors incurred during inference of the point spread function (PSF) that characterizes the imaging system in use. In this case, even the slightest errors in specification of the PSF are likely to result in significant artifacts, rendering the reconstructed images worthless. To address the aforementioned problem, this paper describes a new method for blind deconvolution of ultrasound images, in which the errors due to inaccuracies in specification of the PSF are eliminated concurrently with estimation of tissue reflectivity directly from its associated radio-frequency data. A principal derivation and justification of the proposed method are supported by experimental results which demonstrate the effectiveness and viability of the new technique.
机译:图像去卷积是用于医学超声成像的标准数值程序,用于提高诊断超声图的分辨率和对比度。但是,由于超声扫描仪固有的带宽限制和测量噪声的不利影响,因此已知图像反卷积对推断点扩展函数(PSF)期间出现的误差极为敏感,该点扩展函数表征了所使用的成像系统。在这种情况下,即使是PSF规格上的最细微的误差也可能会导致明显的伪影,从而使重建的图像变得毫无价值。为了解决上述问题,本文介绍了一种用于超声图像盲去卷积的新方法,其中消除了由于PSF规格不正确而导致的误差,同时直接从其相关的射频数据估计组织反射率。实验结果支持了该方法的原理推导和论证,实验结果证明了该新技术的有效性和可行性。

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