Modeling of the acoustic radiation force in elastography

被引:14
|
作者
Prieur, Fabrice [1 ]
Sapozhnikov, Oleg A. [2 ,3 ]
机构
[1] Univ Oslo, Dept Informat, Postboks 1080 Blindern, N-0316 Oslo, Norway
[2] Moscow MV Lomonosov State Univ, Phys Fac, 1-2 Leninskiye Gory,GSP 1, Moscow, Russia
[3] Univ Washington, Appl Phys Lab, Ctr Ind & Med Ultrasound, 1013 NE 40th St, Seattle, WA 98105 USA
来源
JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA | 2017年 / 142卷 / 02期
基金
俄罗斯基础研究基金会;
关键词
ELASTIC-WAVE PROPAGATION; QUASI-GAUSSIAN BEAM; NONLINEAR ULTRASOUND; HETEROGENEOUS MEDIA; TISSUE DISPLACEMENT; REMOTE PALPATION; SUPERPOSITION; SPHERE; FLUID;
D O I
10.1121/1.4998585
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
Elastography is a non-invasive imaging technique that can assess in vivo tissue stiffness. In shear wave elastography imaging, the acoustic radiation force (ARF) produced by focused ultrasound generates a local force that produces shear waves. The authors compare three existing formulations for the ARF: its full expression in the second-order approximation and two simplified formulations using a quasi-plane wave and an attenuated plane wave approximation. Analytical expressions for the ARF are derived for the special cases of a concave spherical source and a quasi-Gaussian beam. They provide expressions for the resulting ARF and show discrepancies between the different formulations. For strongly divergent or highly focused beams the ARF expressed by the second-order approximation significantly differs from both simplified formulations. However, despite those differences the second-order and quasi-plane wave approximations create identical shear displacements in tissue. To compute the ARF and the displacements produced by a conventional ultrasound probe, the three formulations were incorporated into the k-Wave simulation package. The secondorder and quasi-plane wave approximations give different forces but nearly identical displacements while the plane wave approximation significantly differs. It is concluded that to properly take into account the ultrasound field structure, the second-order or quasi-plane wave approximations should be preferably used. (C) 2017 Acoustical Society of America.
引用
收藏
页码:947 / 961
页数:15
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