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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Analysis of energy coupling into spheroidal ferritic implants for hyperthermia applications
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Analysis of energy coupling into spheroidal ferritic implants for hyperthermia applications

机译:热疗应用中球状铁素体植入物的能量耦合分析

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The coupling of energy of RF power into lossy tissues using a needle-shaped ferromagnetic implant excited by an externally applied current loop is analyzed theoretically. The ferritic implant is assumed to be of prolate spheroidal shape, while the tissue medium is modeled as a lossy sphere. The electromagnetic fields inside the ferritic implant, the surrounding lossy tissue, and the free space are appropriately expressed in terms of spherical and spheroidal wave functions. Application of the boundary conditions results in an infinite system of equations for the unknown field expansion coefficients. This system is truncated and solved and the electromagnetic field is computed numerically. Absorbed power density inside the implant and the surrounding medium is computed, and the efficiency of the method in producing in-depth energy deposition is examined.
机译:理论上分析了使用由外部施加的电流环路激励的针状铁磁植入物将射频功率能量耦合到有损组织中的过程。假定铁素体植入物呈扁球形,而组织介质被建模为有损球体。铁素体植入物,周围的有损组织和自由空间内的电磁场可以根据球面和球面波函数适当表达。边界条件的应用导致了未知场扩展系数的无限方程组。该系统被截断并求解,并且对电磁场进行了数值计算。计算植入物和周围介质内部的吸收功率密度,并检查该方法在产生深度能量沉积中的效率。

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