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“HIFU 波束”:用于预测层状介质中聚焦换能器产生的轴对称非线性声场的模拟器。

"HIFU Beam:" A Simulator for Predicting Axially Symmetric Nonlinear Acoustic Fields Generated by Focused Transducers in a Layered Medium.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2021 Sep;68(9):2837-2852. doi: 10.1109/TUFFC.2021.3074611. Epub 2021 Aug 27.

Abstract

"HIFU beam" is a freely available software tool that comprises a MATLAB toolbox combined with a user-friendly interface and binary executable compiled from FORTRAN source code (HIFU beam. (2021). Available: http://limu.msu.ru/node/3555?language=en). It is designed for simulating high-intensity focused ultrasound (HIFU) fields generated by single-element transducers and annular arrays with propagation in flat-layered media that mimic biological tissues. Numerical models incorporated in the simulator include evolution-type equations, either the Khokhlov-Zabolotskaya-Kuznetsov (KZK) equation or one-way Westervelt equation, for radially symmetric ultrasound beams in homogeneous and layered media with thermoviscous or power-law acoustic absorption. The software uses shock-capturing methods that allow for simulating strongly nonlinear acoustic fields with high-amplitude shocks. In this article, a general description of the software is given along with three representative simulation cases of ultrasound transducers and focusing conditions typical for therapeutic applications. The examples illustrate major nonlinear wave effects in HIFU fields including shock formation. Two examples simulate propagation in water, involving a single-element source (1-MHz frequency, 100-mm diameter, 90-mm radius of curvature) and a 16-element annular array (3-MHz frequency, 48-mm diameter, and 35-mm radius of curvature). The third example mimics the scenario of a HIFU treatment in a "water-muscle-kidney" layered medium using a source typical for abdominal HIFU applications (1.2-MHz frequency, 120-mm diameter, and radius of curvature). Linear, quasi-linear, and shock-wave exposure protocols are considered. It is intended that "HIFU beam" can be useful in teaching nonlinear acoustics; designing and characterizing high-power transducers; and developing exposure protocols for a wide range of therapeutic applications such as shock-based HIFU, boiling histotripsy, drug delivery, immunotherapy, and others.

摘要

"HIFU 波束" 是一款免费的软件工具,它由一个 MATLAB 工具箱组成,结合了用户友好的界面和用 FORTRAN 源代码编译的二进制可执行文件(HIFU 波束。(2021). 可访问:http://limu.msu.ru/node/3555?language=en)。它旨在模拟由单个换能器和环形阵列产生的高强度聚焦超声 (HIFU) 场,这些换能器和环形阵列在模拟生物组织的平面层状介质中传播。模拟器中包含的数值模型包括演化型方程,即 Khokhlov-Zabolotskaya-Kuznetsov (KZK) 方程或单向 Westervelt 方程,用于模拟各向同性和层状介质中轴对称的超声束,这些介质具有热粘性或幂律声吸收。该软件使用激波捕捉方法,可以模拟具有高振幅激波的强非线性声场。本文给出了该软件的总体描述,并结合三个具有代表性的超声换能器和聚焦条件的模拟案例,这些案例典型用于治疗应用。这些例子说明了 HIFU 场中主要的非线性波效应,包括激波的形成。有两个例子模拟了在水中的传播,涉及一个单个换能器(1MHz 频率,100mm 直径,90mm 曲率半径)和一个 16 个元件的环形阵列(3MHz 频率,48mm 直径,35mm 曲率半径)。第三个例子模拟了在“水-肌肉-肾”层状介质中进行 HIFU 治疗的情况,使用了典型的腹部 HIFU 应用的源(1.2MHz 频率,120mm 直径,曲率半径)。考虑了线性、准线性和冲击波暴露方案。旨在为非线性声学教学、大功率换能器设计和特性化以及广泛的治疗应用(如基于冲击波的 HIFU、沸腾组织破碎、药物输送、免疫治疗等)的暴露方案开发提供有用的工具。

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