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首页> 外文期刊>The Journal of the Acoustical Society of America >Simulation of nonlinear Westervelt equation for the investigation of acoustic streaming and nonlinear propagation effects
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Simulation of nonlinear Westervelt equation for the investigation of acoustic streaming and nonlinear propagation effects

机译:非线性Westervelt方程的模拟,用于研究声流和非线性传播效应

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This study investigates the influence of blood flow on temperature distribution during high-intensity focused ultrasound (HIFU) ablation of liver tumors. A three-dimensional acoustic-thermal-hydrodynamic coupling model is developed to compute the temperature field in the hepatic cancerous region. The model is based on the nonlinear Westervelt equation, bioheat equations for the perfused tissue and blood flow domains. The nonlinear Navier-Stokes equations are employed to describe the flow in large blood vessels. The effect of acoustic streaming is also taken into account in the present HIFU simulation study. A simulation of the Westervelt equation requires a prohibitively large amount of computer resources. Therefore a sixth-order accurate acoustic scheme in three-point stencil was developed for effectively solving the nonlinear wave equation. Results show that focused ultrasound beam with the peak intensity 2470 W/cm~2 can induce acoustic streaming velocities up to 75 cm/s in the vessel with a diameter of 3 mm. The predicted temperature difference for the cases considered with and without acoustic streaming effect is 13.5 °C or 81% on the blood vessel wall for the vein. Tumor necrosis was studied in a region close to major vessels. The theoretical feasibility to safely necrotize the tumors close to major hepatic arteries and veins was shown.
机译:这项研究调查了在肝肿瘤高强度聚焦超声(HIFU)消融过程中血流对温度分布的影响。建立了三维声-热-水动力耦合模型来计算肝癌区域的温度场。该模型基于非线性Westervelt方程,用于灌注组织和血流域的生物热方程。非线性Navier-Stokes方程用于描述大血管中的血流。在当前的HIFU模拟研究中也考虑了声流的影响。对Westervelt方程的仿真需要大量的计算机资源。因此,为了有效地求解非线性波动方程,提出了一种三点模板的六阶精确声学方案。结果表明,峰值强度为2470 W / cm〜2的聚焦超声束可以在直径为3 mm的血管中诱发高达75 cm / s的声流速度。对于考虑有或没有声流效应的情况,预计在静脉血管壁上的温差为13.5°C或81%。在靠近主要血管的区域研究了肿瘤坏死。显示了安全地坏死靠近主要肝动脉和静脉的肿瘤的理论可行性。

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