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一种具有衍射效应校正的迭代合成孔径成像算法。

An iterative synthetic aperture imaging algorithm with correction of diffraction effects.

作者信息

Wennerström Erik, Stepinski Tadeusz, Olofsson Tomas

机构信息

Uppsala University, Signals and Systems group, Uppsala, Sweden.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2006 May;53(5):1008-17. doi: 10.1109/tuffc.2006.1632690.

Abstract

In this paper we present an iterative version of the synthetic aperture imaging algorithm extended synthetic aperture technique (ESAFT) proposed recently. The algorithm is based on a linear model that accounts for the distortions effects of an imaging system used for acquisition of ultrasonic data. Improved resolution (both lateral and temporal) in the reconstructed image is obtained as a result of minimizing the reconstruction mean square error. In this work, the minimization is extended to parameters that characterize expected amplitudes of each image element in the area of interest. An iterative optimization scheme is proposed, which in each step performs minimization of the reconstruction error based on the parameter matrix found in the previous step. Comparing to ESAFT, the proposed approach yields a significant improvement in resolution and a high degree of robustness with regard to initial choice of the parameter matrix. Performance of the proposed algorithm is evaluated using both real and simulated ultrasonic data.

摘要

在本文中,我们提出了一种最近提出的合成孔径成像算法——扩展合成孔径技术(ESAFT)的迭代版本。该算法基于一个线性模型,该模型考虑了用于采集超声数据的成像系统的失真效应。通过最小化重建均方误差,在重建图像中获得了更高的分辨率(横向和时间分辨率)。在这项工作中,最小化扩展到了表征感兴趣区域中每个图像元素预期幅度的参数。提出了一种迭代优化方案,该方案在每一步中基于上一步中找到的参数矩阵对重建误差进行最小化。与ESAFT相比,所提出的方法在分辨率方面有显著提高,并且在参数矩阵的初始选择方面具有高度的鲁棒性。使用真实和模拟的超声数据对所提出算法的性能进行了评估。

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