Measurement of shear waves in tissue

J. Greenleaf, V. Dutt, R. Muthupillai, A. Manduca, R. Ehman
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引用次数: 2

Abstract

The wavelength of a propagating pulse of shear wave within tissue is related to the local shear modulus and density through the speed of propagation. If the pulse does not produce standing waves, then the wavelength is a function of the tissue properties and not boundary conditions. Methods for imaging such waves using ultrasound and magnetic resonance imaging have recently been developed. The MRI method, termed Magnetic Resonance Elastography, can measure displacements in all three dimensions and is sensitive to motion of the order of 100 nanometers. The ultrasound method can measure in one plane very quickly and is sensitive to displacements of fractions of micrometers. Local wavelength of the propagating shear waves can be measured using specially modified filters. Shear modulus can then be estimated if density is known or assumed. Applications of this method reminiscent of palpation but in three dimensions and at any depth in the tissue are possibilities.
组织中剪切波的测量
剪切波脉冲在组织内的传播波长通过传播速度与局部剪切模量和密度有关。如果脉冲不产生驻波,那么波长是组织特性的函数,而不是边界条件的函数。利用超声和磁共振成像对这种波进行成像的方法最近得到了发展。MRI方法,称为磁共振弹性成像,可以测量所有三个维度的位移,并且对100纳米量级的运动很敏感。超声方法可以在一个平面内快速测量,并且对微米级的位移敏感。用特殊改良的滤光片可以测量传播的横波的局部波长。如果密度已知或假设,则可以估计剪切模量。这种方法的应用让人想起触诊,但在三维和任何深度的组织是可能的。
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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