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用于二维阵列形成的医学超声图像中相位像差校正的交叉算法。

The cross algorithm for phase-aberration correction in medical ultrasound images formed with two-dimensional arrays.

作者信息

Li Yue, Robinson Brent

机构信息

Commonwealth Scientific and Industrial Research Organisation, Information and Communication Technologies Center, Sydney, Australia.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2008 Mar;55(3):588-601. doi: 10.1109/TUFFC.2008.684.

Abstract

Common-midpoint signals in the near-field signal-redundancy (NFSR) algorithm for one-dimensional arrays are acquired using three consecutive transducer elements. An all-row-plus-two-column algorithm has been proposed to implement the one-dimensional NFSR algorithm on two dimensional arrays. The disadvantage of this method is that its ambiguity profile is not linear and a timeconsuming iterative method has to be used to linearize the ambiguity profile. An all-row-plus-two-column-and-a-diagonal algorithm has also been proposed. Its ambiguity profile is linear, but it is very sensitive to noise and cannot be used. In this paper, a novel cross algorithm is proposed to implement the NFSR algorithm on two-dimensional arrays. In this algorithm, common-midpoint signals are acquired using four adjacent transducer elements, which is not available in one-dimensional arrays. Its advantage includes a linear ambiguity profile and a higher measurement signal-to-noise ratio. The performance of the cross algorithm is evaluated theoretically. The region of redundancy is analyzed. The procedure for deriving the phaseaberration profile from peak positions of cross-correlation functions between common-midpoint signals is discussed. This algorithm is tested with a simulated data set acquired with a two-dimensional array, and the result shows that the cross algorithm performs better than the all-row plus-twocolumn NFSR algorithm.

摘要

用于一维阵列的近场信号冗余(NFSR)算法中的公共中点信号是使用三个连续的换能器元件获取的。已经提出了一种全行列加两列算法,用于在二维阵列上实现一维NFSR算法。该方法的缺点是其模糊度图不是线性的,并且必须使用耗时的迭代方法来使模糊度图线性化。还提出了一种全行列加两列加一条对角线算法。其模糊度图是线性的,但对噪声非常敏感,无法使用。本文提出了一种新颖的交叉算法,用于在二维阵列上实现NFSR算法。在该算法中,使用四个相邻的换能器元件获取公共中点信号,这在一维阵列中是无法实现的。其优点包括线性模糊度图和更高的测量信噪比。从理论上评估了交叉算法的性能。分析了冗余区域。讨论了从公共中点信号之间的互相关函数的峰值位置推导相位像差图的过程。使用二维阵列采集的模拟数据集对该算法进行了测试,结果表明交叉算法的性能优于全行列加两列NFSR算法。

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