Development of magnetic shielding system for breast hyperthermia inductive heating

T. Thosdeekoraphat, C. Thongsopa
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引用次数: 5

Abstract

In this paper, the effect of cylindrical shield to heating area and location of induction heating for breast cancer hyperthermia treatment with hyperthermia inductive heating are presented. To determine heat distribution in the breast, which electric loss density is analyzed for various aperture sizes and radius of shielded cylindrical. It is a technique to control magnetic field intensity and relocate the heating area by using a cylindrical metal shielding with aperture. In the simulation, the inductive applicator is a ferrite core with diameter of 7 cm and excited by 4 MHz signal. The simulations show that the heating area can be effectively controlled by using the cylindrical shield with adjustable aperture size. The heating efficiency is reduced as the aperture size decreases. If the small heating area is needed, it may require longer treatment time. Nevertheless, the efficiency of heat can be increased by varying the radius size of shielding plate. Moreover, we investigate the position of heating region by varying the orientation of the ferrite core in x direction. The effect of horizontal position of the ferrite core to the heating location is also studied. Simulations show that the heating position can be relocated by changing the orientation of the ferrite core with cylindrical shield. The advantage of the magnetic shielding system is that it can be used to applied for prevent the effects of hyperthermia cancer treatment by induction heating.
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乳腺热疗感应加热磁屏蔽系统的研制
本文介绍了采用热疗感应加热治疗乳腺癌热疗时,圆柱形护罩对加热区域和感应加热位置的影响。为了确定乳房内的热量分布,分析了不同孔径大小和屏蔽圆柱半径下乳房的电损耗密度。它是一种利用带孔的圆柱形金属屏蔽来控制磁场强度和重新定位加热区域的技术。在仿真中,电感施加器是直径为7 cm的铁氧体铁芯,由4 MHz信号激励。仿真结果表明,采用孔径可调的圆柱屏蔽可以有效地控制加热面积。加热效率随着孔径的减小而降低。如果需要较小的加热面积,则可能需要较长的处理时间。然而,通过改变屏蔽板的半径大小可以提高热效率。此外,我们还通过改变铁氧体磁芯在x方向上的取向来研究加热区的位置。研究了铁氧体铁芯水平位置对加热位置的影响。仿真结果表明,通过改变圆柱形屏蔽铁氧体铁芯的方向,可以实现加热位置的重新定位。磁屏蔽系统的优点是可用于防止感应加热治疗癌症的热疗效果。
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