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The Simulation of Temperature Field for HIFU Phased Array Transducer

机译:HIFU相控阵换能器温度场的仿真

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High Intensity Focused Ultrasound (HIFU) phased array transducer can obtain variable focus and multiple focus for the variable timetable of ultrasound launched by different elements. In this study, the approximation of Westervelt formula, associated with Pennes heat conduction equation, through a model of 3D breast tissues, is reported for analyzing the differences of the temperature field between the plane phased array transducer and the spherical-section phased array transducer with a numerical method of Finite Difference Time Domain (FDTD). The effect of frequency and ultrasound power densities (USPD) on the temperature field of spherical-section phased array are also studied. The results demonstrated that the spherical-section phased array transducer can reduce the temperature of skin effectively, and cause less damage to skin. While the therapy frequency increases, the treated region decreases. In addition, the higher USPD are, the bigger the focal region is, but the focal distance does not change so much.
机译:高强度聚焦超声(HIFU)相控阵换能器可以获得可变焦点和多重聚焦,用于由不同元件发射的超声波的可变时间表。在本研究中,通过3D乳房组织模型,威斯特察雷特配方的近似值,通过3D乳房组织的模型分析平面相控阵换能器与球形部分相控阵换能器之间的温度场的差异分析有限差分时域(FDTD)的数值方法。还研究了频率和超声波功率密度(USPD)对球形部分相控阵的温度场的影响。结果表明,球形部分相控阵换能器可以有效降低皮肤的温度,并导致皮肤损坏。虽然治疗频率增加,处理区域降低。此外,USPD越高,焦点区域的越大,但焦距不会改变这么多。

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