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通过超声评估组织的非线性粘弹性特性。

Nonlinear viscoelastic properties of tissue assessed by ultrasound.

作者信息

Sinkus Ralph, Bercoff Jeremy, Tanter Mickaël, Gennisson Jean-Luc, El-Khoury Carl, Servois Vincent, Tardivon Anne, Fink Mathias

机构信息

Laboratoire Ondes et Acoustique, Ecole Supérieure de Physique et de Chimie Industrielle, Université Denis Diderot-Paris 7, Centre National de la Recherche Scientifique Unité Mixte de Recherche 7587, France.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2006 Nov;53(11):2009-18. doi: 10.1109/tuffc.2006.141.

Abstract

A technique to assess qualitatively the presence of higher-order viscoelastic parameters is presented. Low-frequency, monochromatic elastic waves are emitted into the material via an external vibrator. The resulting steady-state motion is detected in real time via an ultra fast ultrasound system using classical, one-dimensional (1-D) ultrasound speckle correlation for motion estimation. Total data acquisition lasts only for about 250 ms. The spectrum of the temporal displacement data at each image point is used for analysis. The presence of nonlinear effects is detected by inspection of the ratio of the second harmonics amplitude with respect to the total amplitude summed up to the second harmonic. Results from a polyacrylamide-based phantom indicate a linear response (i.e., the absence of higher harmonics) for this type of material at 65 Hz mechanical vibration frequency and about 100 microm amplitude. A lesion, artificially created by injection of glutaraldehyde into a beef specimen, shows the development of higher harmonics at the location of injection as a function of time. The presence of upper harmonics is clearly evident at the location of a malignant lesion within a mastectomy.

摘要

本文介绍了一种定性评估高阶粘弹性参数存在情况的技术。通过外部振动器将低频单色弹性波发射到材料中。使用经典的一维(1-D)超声散斑相关性进行运动估计,通过超快超声系统实时检测由此产生的稳态运动。总数据采集仅持续约250毫秒。每个图像点处的时间位移数据频谱用于分析。通过检查二次谐波幅度与总和至二次谐波的总幅度之比来检测非线性效应的存在。基于聚丙烯酰胺的体模结果表明,在65Hz机械振动频率和约100微米振幅下,这种类型的材料具有线性响应(即不存在更高谐波)。通过向牛肉标本中注射戊二醛人工创建的病变显示,注射部位的更高谐波随时间发展。在乳房切除术中恶性病变的位置,更高谐波的存在明显可见。

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