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Power Absorption of Milliscaled Implants in Alternating Magnetic Field for Magnetically Induced Hyperthermia

机译:磁诱导热疗的交替磁场中毫念植入物的功率吸收

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The magnetically induced hyperthermia (MIH) system, based on the principle that milliscaled ferromagnetic alloy thermoseeds produce heat in a radio frequency (RF) alternating magnetic field due to eddy current and hysteresis, has been used in tumor clinical trials for decades. To provide guidance for implant distribution in tumors and temperature field simulation of MIH planning system, the theoretical formula for power absorption of an implant is deduced investigating geometry and orientation using the electromagnetic field constraint equation, including cylindrical and spherical implants. Then, the electromagnetic parameters that affect the power absorption have been analyzed using Matlab to simplify the formula. This simplified formula serves as a calculation model that can be easily programmed for temperature field simulation in a MIH system. Finally, the performance of several implants used for MIH is compared by power absorption per unit volume. The results show that the power absorption of the cylindrical implant per unit volume is maximized when the axis is parallel to the external magnetic field. The absorbed power of the spherical implant is slightly less than that of the cylindrical implant, and the formula is independent of the magnetic field direction. As a result, the use of a spherical implant will lead to a simplified calculation of the temperature field in a MIH system.
机译:磁性诱导的热疗(MIH)系统基于毫念铁磁合金热糖在射频(RF)交替磁场中产生热量的原理,由于涡流和滞后,已在肿瘤临床试验中使用数十年。为了为MIH计划系统的肿瘤和温度场模拟提供植入物分布的指导,使用电磁场约束方程推导出用于研究几何形状和取向的植入物的理论公式,包括圆柱形和球形植入物。然后,使用MATLAB分析影响功率吸收的电磁参数以简化公式。该简化的公式用作计算模型,可以在MIH系统中容易地编程用于温度场仿真。最后,通过每单位体积的功率吸收来比较用于MIH的几种植入物的性能。结果表明,当轴线平行于外部磁场时,每单位体积的柱面植入物的功率吸收最大化。球形植入物的吸收功率略小于圆柱形植入物的功率,并且配方与磁场方向无关。结果,使用球形植入物将导致MIH系统中的温度场的简化计算。

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