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超声造影剂成像中的非线性传播效应。

Effects of nonlinear propagation in ultrasound contrast agent imaging.

机构信息

Department of Bioengineering, Faculty of Engineering, Imperial College London, London, UK.

出版信息

Ultrasound Med Biol. 2010 Mar;36(3):459-66. doi: 10.1016/j.ultrasmedbio.2009.11.011. Epub 2010 Feb 4.

Abstract

This paper investigates two types of nonlinear propagation and their effects on image intensity and contrast-to-tissue ratio (CTR) in contrast ultrasound images. Previous studies have shown that nonlinear propagation can occur when ultrasound travels through tissue and microbubble clouds, making tissue farther down the acoustic path appear brighter in pulse inversion (PI) images, thus reducing CTR. In this study, the effect of nonlinear propagation through tissue or microbubbles on PI image intensity and CTR are compared at low mechanical index. A combination of simulation and experiment with SonoVue microbubbles were performed using a microbubble dynamics model, a laboratory ultrasound system and a clinical prototype scanner. The results show that, close to the bubble resonance frequency, nonlinear propagation through a bubble cloud of a few centimeter thickness with a modest concentration (1:10000 dilution of SonoVue microbubbles) is much more significant than through tissue-mimicking material. Consequently, CTR in regions distal to the imaging probe is greatly reduced for nonlinear propagation through the bubble cloud, with as much as a 12-dB reduction compared with nonlinear propagation through tissue-mimicking material. Both types of nonlinear propagation cause only a small change in bubble PI signals at the bubble resonance frequency. When the driving frequency increases beyond bubble resonance, nonlinear propagation through bubbles is greatly reduced in absolute values. However because of a greater reduction in nonlinear scattering from bubbles at higher frequencies, the corresponding CTR is much lower than that at bubble resonance frequency.

摘要

本文研究了两种类型的非线性传播及其对对比超声图像中强度和对比到组织比(CTR)的影响。先前的研究表明,当超声波在组织和微泡云中传播时,可能会发生非线性传播,从而使声程更远的组织在反转脉冲(PI)图像中显得更亮,从而降低 CTR。在这项研究中,在低机械指数下比较了通过组织或微泡的非线性传播对 PI 图像强度和 CTR 的影响。使用微泡动力学模型、实验室超声系统和临床原型扫描仪,结合 SonoVue 微泡进行了模拟和实验。结果表明,在接近气泡共振频率的情况下,几厘米厚的微泡云的非线性传播比通过组织模拟材料的非线性传播更为显著,浓度适中(SonoVue 微泡稀释 1:10000)。因此,对于通过微泡云的非线性传播,在成像探头远端的区域中,CTR 大大降低,与通过组织模拟材料的非线性传播相比,降低了 12dB。这两种类型的非线性传播仅在气泡共振频率处引起气泡 PI 信号的微小变化。当驱动频率超过气泡共振时,通过气泡的非线性传播的绝对值大大降低。然而,由于更高频率下气泡非线性散射的减少更大,相应的 CTR 远低于气泡共振频率。

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