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像素复合:用于定量分析的分辨率增强型超声成像

Pixel compounding: resolution-enhanced ultrasound imaging for quantitative analysis.

作者信息

Yang Zhi, Tuthill Theresa A, Raunig David L, Fox Martin D, Analoui Mostafa

机构信息

University of Michigan, Ann Arbor, MI, USA.

出版信息

Ultrasound Med Biol. 2007 Aug;33(8):1309-19. doi: 10.1016/j.ultrasmedbio.2007.02.013. Epub 2007 Apr 27.

Abstract

Accurate measurement of structural features represented in medical images is important in clinical trials and patient diagnosis. A key factor for precision is spatial resolution, which in ultrasonic imaging is limited by transducer array arrangements, transmitting frequency, and data acquisition firmware. In this paper, a variation of pixel compounding is proposed to enhance ultrasound resolution using acquired cine loops. The technique operates on a sequence of ultrasound B-scan images acquired with random motion. Subpixel registration is estimated and a maximum a posteriori (MAP) approach with the shift information is used to reconstruct a high-resolution single image. A nonhomogeneous anisotropic diffusion algorithm follows from the estimation process and is implemented to enhance the high-resolution edges. Preliminary tests using simulations and phantom studies show promising results. Pixel compounding can be a powerful preprocessing tool to assure accurate segmentation, measurement, and analysis of ultrasound images.

摘要

在临床试验和患者诊断中,准确测量医学图像中呈现的结构特征非常重要。精度的一个关键因素是空间分辨率,在超声成像中,它受到换能器阵列排列、发射频率和数据采集固件的限制。本文提出了一种像素合成的变体,以利用采集到的电影环来提高超声分辨率。该技术对通过随机运动采集的一系列超声B扫描图像进行操作。估计亚像素配准,并使用具有偏移信息的最大后验(MAP)方法来重建高分辨率单幅图像。估计过程之后采用非均匀各向异性扩散算法,并用于增强高分辨率边缘。使用模拟和体模研究进行的初步测试显示出了有前景的结果。像素合成可以成为确保对超声图像进行准确分割、测量和分析的强大预处理工具。

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