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新型自调节温度磁性材料 FeZrB 在磁感应热疗中的应用。

Application of a new self-regulating temperature magnetic material FeZrB in magnetic induction hyperthermia.

机构信息

School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, China.

School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou, China.

出版信息

Int J Hyperthermia. 2023;40(1):2211269. doi: 10.1080/02656736.2023.2211269.

Abstract

INTRODUCTION

The temperature control of magnetic hyperthermia therapy mainly relies on circulating water cooling and regulating magnetic field intensity, which increases complexity in clinical applications. Using magnetic materials with appropriate Curie temperature has become an effective means to solve temperature monitoring and potentially achieve self-regulating temperature.

METHODS

A self-temperature-regulating FeZrB magnetic material was prepared. Based on this material, a simplified model of magnetic hyperthermia for arm tumors was established and verified using the finite- element method. The influence of magnetic field intensity and frequency on the heating power and temperature rise rate of different-sized and shaped magnetic media was studied. Additionally, factors such as the size, quantity, and spatial arrangement of the magnetic media were analyzed for their impact on the damage to tumors with different volumes and shapes.

RESULTS

Spherical shape is the most suitable for magnetic hyperthermia media, and the radius of the spherical magnetic media can be chosen according to the size of the tumor. For tumors with a radius below 10 mm, using magnetic media with a particle size of 3.5 mm is recommended. The optimal magnetic field conditions are H0 (10-12 kA/m) and f (110-120 kHz).

CONCLUSION

Based on the good magnetic properties and heating performance of the FeZrB magnetic material, it is feasible to use it as a magnetic medium for magnetic hyperthermia. The results of this study provide references for the selection of thermal seed size and magnetic field parameters in magnetic hyperthermia.

摘要

简介

磁热疗的温度控制主要依赖于循环水冷却和调节磁场强度,这增加了临床应用的复杂性。使用具有适当居里温度的磁性材料已成为解决温度监测问题并实现自调节温度的有效手段。

方法

制备了一种自调温 FeZrB 磁性材料。基于该材料,利用有限元法建立了简化的手臂肿瘤磁热疗模型,并进行了验证。研究了磁场强度和频率对不同尺寸和形状的磁性介质加热功率和温升率的影响。此外,还分析了磁性介质的尺寸、数量和空间排列等因素对不同体积和形状肿瘤损伤的影响。

结果

球形是最适合磁热疗介质的形状,球形磁性介质的半径可以根据肿瘤的大小来选择。对于半径小于 10mm 的肿瘤,建议使用粒径为 3.5mm 的磁性介质。最佳磁场条件为 H0(10-12kA/m)和 f(110-120kHz)。

结论

基于 FeZrB 磁性材料良好的磁性能和加热性能,将其用作磁热疗的磁性介质是可行的。本研究结果为磁热疗中热种子尺寸和磁场参数的选择提供了参考。

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