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Numerical study of the effect of ultrasound frequency on temperature distribution in layered tissue

机译:超声频率对分层组织温度分布影响的数值研究

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摘要

The high intensity focused ultrasound (HIFU) technology can produce therapeutic benefits in deep-seated tissues of interest, selectively and noninvasively. In order to control the treatment process, it is important to recognize the heat generation in biological tissue and the parameters that have an effect on temperature rising. This study investigates the influence of frequency and source intensity on temperature distribution during high-intensity focused ultrasound (HIFU). A nonlinear full wave equation model is simulated to compute the pressure field. Additionally, the absorbed coefficient of tissue is added to the nonlinear equations to simulate accurately the wave propagation in tissue with high absorbed coefficient. In addition, temperature distribution was solved by the Pennes bio-heat equation. Conclusively, frequencies in the range of 1-1.5 MHz are prescribed to have maximum heat absorption in the focal region
机译:高强度聚焦超声(HIFU)技术可以选择性地且无创地在感兴趣的深层组织中产生治疗益处。为了控制治疗过程,重要的是要认识到生物组织中产生的热量以及对温度升高有影响的参数。本研究调查了高强度聚焦超声(HIFU)期间频率和源强度对温度分布的影响。模拟非线性全波方程模型以计算压力场。另外,将组织的吸收系数添加到非线性方程中,以精确模拟具有高吸收系数的组织中的波传播。此外,温度分布通过Pennes生物热方程求解。最终,规定1-1.5 MHz范围内的频率在焦点区域具有最大的热吸收

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