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Temperature Field FDTD Simulation of HIFU in Human Body Tissues

机译:HIFU在人体组织中的温度场FDTD模拟

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摘要

High intensity focused ultrasound (HIFU) therapy has become a new way in the treatment of tumors due to its noninvasive advantage. However, as for the HIFU nonlinear propagation and temperature field in human body in relation to practice HIFU therapy, there are few studies on numerical simulation based on models conforming to practical situation. In this study, we report a numerical method of finite difference time domain (FDTD) for analyzing HIFU temperature field in human body tissues and demonstrate it through a model of 3D breast tissues. The calculation of HIFU propagation in human body tissues is done using Euler's equation of motion and continuity, which combines nonlinear ultrasound propagation with a bulk modulus and an attenuation parameter. The Pennes Bio-heat transfer equation is used to calculate temperature distribution. The simulation results of the temperature field of HIFU in human body tissues in case of different excitation function frequency and excitation function average ultrasound power densities (USPD) are reported.
机译:高强度聚焦超声(HIFU)治疗由于其无创性优势,已成为治疗肿瘤的新方法。但是,关于HIFU在人体中与实际HIFU治疗相关的非线性传播和温度场,基于符合实际情况的模型的数值模拟研究很少。在这项研究中,我们报告了一种用于分析人体组织中HIFU温度场的有限时域(FDTD)数值方法,并通过3D乳房组织模型对其进行了演示。 HIFU在人体组织中传播的计算使用欧拉运动和连续性方程完成,该方程将非线性超声传播与体积模量和衰减参数结合在一起。 Pennes生物热传递方程用于计算温度分布。报道了不同激励函数频率和激励函数平均超声功率密度(USPD)情况下人体组织HIFU温度场的仿真结果。

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