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基于医学超声成像中最小平均相位方差的体外平均声速估计。

In vitro estimation of mean sound speed based on minimum average phase variance in medical ultrasound imaging.

机构信息

Department of Electronic Engineering, Sogang University, Seoul, Republic of Korea.

出版信息

Ultrasonics. 2011 Oct;51(7):795-802. doi: 10.1016/j.ultras.2011.03.007. Epub 2011 Mar 23.

Abstract

Effective receive beamforming in medical ultrasound imaging is important for enhancing spatial and contrast resolution. In current ultrasound receive beamforming, a constant sound speed (e.g., 1540m/s) is assumed. However, the variations of sound speed in soft tissues could introduce phase distortions, leading to degradation in spatial and contrast resolution. This degradation becomes even more severe in imaging fatty tissues (e.g., breast) and with obese patients. In this paper, a mean sound speed estimation method where phase variance of radio-frequency channel data in the region of interest is evaluated is presented for improving spatial and contrast resolution. The proposed estimation method was validated by the Field II simulation and the tissue mimicking phantom experiments. In the simulation, the sound speed of the medium was set to 1450m/s and the proposed method was capable of capturing this value correctly. From the phantom experiments, the -18-dB lateral resolution of the point target at 50mm obtained with the estimated mean sound speed was improved by a factor of 1.3, i.e., from 3.9mm to 2.9mm. The proposed estimation method also provides an improvement of 0.4 in the contrast-to-noise ratio, i.e., from 2.4 to 2.8. These results indicate that the proposed mean sound speed estimation method could enhance the spatial and contrast resolution in the medical ultrasound imaging systems.

摘要

医学超声成像是提高空间分辨率和对比度分辨率的重要手段。在目前的超声接收波束形成中,假设声速是恒定的(例如 1540m/s)。然而,软组织中声速的变化会引起相位失真,导致空间分辨率和对比度分辨率下降。在对脂肪组织(如乳房)和肥胖患者进行成像时,这种退化更为严重。在本文中,提出了一种基于感兴趣区域中射频通道数据相位方差评估的平均声速估计方法,以提高空间分辨率和对比度分辨率。该方法通过 Field II 模拟和组织模拟体模实验进行了验证。在模拟中,将介质的声速设置为 1450m/s,该方法能够正确捕获该值。从体模实验中可以看出,使用估计的平均声速,50mm 处的点目标的-18dB 横向分辨率提高了 1.3 倍,即从 3.9mm 提高到 2.9mm。该估计方法还将对比度噪声比提高了 0.4,即从 2.4 提高到 2.8。这些结果表明,所提出的平均声速估计方法可以提高医学超声成像系统的空间分辨率和对比度分辨率。

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