Phase aberration correction by multi-stencils fast marching method using sound speed image in ultrasound computed tomography

Xiaolei Qu, T. Azuma, Hongxiang Lin, Haruka Imoto, S. Tamano, S. Takagi, S. Umemura, I. Sakuma, Y. Matsumoto
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引用次数: 16

Abstract

Reflection image from ultrasound computed tomography (USCT) system can be obtained by synthetic aperture technique, however its quality is decreased by phase aberration caused by inhomogeneous media. Therefore, phase aberration correction is important to improve image quality. In this study, multi-stencils fast marching method (MSFMM) is employed for phase correction. The MSFMM is an accurate and fast solution of Eikonal equation which considers the refraction. The proposed method includes two steps. First, the MSFMM is used to compute sound propagation time from each element to each image gird point using sound speed image of USCT. Second, synthetic aperture technique is employed to obtain reflection image using the computed propagation time. To evaluate the proposed method, both numerical simulation and phantom experiment were conducted. With regard to numerical simulation, both quantitative and qualitative comparisons between reflection images with and without phase aberration correction were given. In the quantitative comparison, the diameters of point spread function (PSF) in reflection images of a two layer structure were presented. In the qualitative comparison, reflection images of simple circle and complex breast modes with phase aberration correction show higher quality than that without the correction. In respect to phantom experiment, a piece of breast phantom with artificial glandular structure inside was scanned by a USCT prototype, and the artificial glandular structure is able to be visible more clearly in the reflection image with phase aberration correction than in that without the correction. In this study, a phase aberration correction method by the MSFMM are proposed for reflection image of the USCT.
超声计算机断层扫描声速图像多模板快速推进法相位像差校正
超声计算机断层扫描(USCT)系统的反射图像可以通过合成孔径技术获得,但由于介质不均匀导致的相位像差降低了图像质量。因此,相位像差校正对提高图像质量具有重要意义。本文采用多模板快速推进法(MSFMM)进行相位校正。MSFMM是考虑折射的Eikonal方程的一种精确、快速的解。该方法包括两个步骤。首先,利用USCT的声速图像,利用MSFMM计算声音从每个单元到每个图像网格点的传播时间;其次,利用计算的传播时间,采用合成孔径技术获得反射像;为了验证该方法的有效性,进行了数值模拟和仿真实验。在数值模拟方面,对经过相位像差校正和没有经过相位像差校正的反射像进行了定性和定量的比较。在定量比较中,给出了两层结构反射图像中点扩散函数(PSF)的直径。在定性比较中,经过相位像差校正的简单圆模式和复杂乳房模式的反射图像质量优于未进行相位像差校正的反射图像。在假体实验方面,我们使用USCT样机扫描了一块乳房假体,假体内部有人工腺体结构,经过相位像差校正后的反射图像比没有经过相位像差校正的反射图像更清晰地显示出人工腺体结构。本文提出了一种利用MSFMM对USCT反射像进行相位像差校正的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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