ANALYSIS OF HIGH-FREQUENCY C-CORE MAGNETIC FLUX LEAKAGES FOR BONE TUMOR WITH INDUCTION HEATING BY USING MULTI-COIL

Metharak Jokpudsa, Supawat Kotchapradit, C. Thongsopa, T. Thosdeekoraphat
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Abstract

High-frequency magnetic field has been developed pervasively. The induction of heat from the magnetic field can help to treat tumor tissue to a certain extent. Normally, treatment by the low-frequency magnetic field needed to be combined with magnetic substances. To assist in the induction of magnetic fields and reduce flux leakage. However, there are studies that have found that high frequencies can cause heat to tumor tissue. In this paper present, a new magnetic application will focus on the analysis of the high-frequency magnetic nickel core with multi-coil. In order to focus the heat energy using a high-frequency magnetic field into the tumor tissue. The magnetic coil was excited by 915 MHz signal and the combination of tissues used are muscle, bone, and tumor. The magnetic power on the heating predicted by the analytical model, the power loss density (2.98e-6 w/m3) was analyzed using the CST microwave studio.
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多线圈感应加热骨肿瘤高频c芯漏磁分析
高频磁场已经得到了广泛的发展。磁场产生的热感能在一定程度上帮助治疗肿瘤组织。通常情况下,低频磁场的处理需要与磁性物质相结合。协助感应磁场,减少漏磁。然而,有研究发现,高频率会使肿瘤组织发热。本文将重点分析多线圈高频磁性镍铁芯的一种新的磁性应用。利用高频磁场将热能聚焦到肿瘤组织中。磁线圈由915mhz的信号激发,使用的组织组合是肌肉、骨骼和肿瘤。利用CST微波工作室对分析模型预测的加热磁功率、功率损耗密度(2.98e-6 w/m3)进行了分析。
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