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用于治疗性组织间热疗的感应加热铁磁合金植入物的评估。

Evaluation of inductively heated ferromagnetic alloy implants for therapeutic interstitial hyperthermia.

作者信息

Paulus J A, Richardson J S, Tucker R D, Park J B

机构信息

Department of Pathology, University of Iowa, Iowa City 52242, USA.

出版信息

IEEE Trans Biomed Eng. 1996 Apr;43(4):406-13. doi: 10.1109/10.486260.

Abstract

Ferromagnetic alloys heated by magnetic induction have been investigated as interstitial hyperthermia delivery implants for over a decade, utilizing low Curie temperatures to provide thermal self-regulation. The minimally invasive method is attractive for fractionated thermal treatment of tumors which are not easily heated by focused microwave or ultrasound techniques. Past analyses of ferromagnetic seeds by other authors depict poor experimental correlation with theoretical heating predictions. Improvements in computer hardware and commercially available finite element analysis software have simplified the analysis of inductively heated thermal seeds considerably. This manuscript examines end effects of finite length implants and nonlinear magnetic material properties to account for previous inconsistencies. Two alloys, Ni-28 wt% Cu (NiCu) and Pd-6.15 wt% Co (PdCo), were used for comparison of theoretical and experimental calorimetric results. Length to diameter (L/d) ratios of over 20 for cylindrical seeds are necessary for minimization of end effects. Magnetic properties tested for alloys of NiCu and PdCo illustrate considerable nonlinearity of these materials in field strength ranges used for induction heating. Field strength dependent magnetic permeabilities and calorimetric data illustrate that more detailed material information must be included to accurately estimate induction power loss for these implants.

摘要

通过磁感应加热的铁磁合金作为间质热疗植入物已被研究了十多年,利用低居里温度来实现热自调节。这种微创方法对于那些不易通过聚焦微波或超声技术加热的肿瘤的分次热处理很有吸引力。其他作者过去对铁磁种子的分析表明,实验结果与理论加热预测之间的相关性较差。计算机硬件和市售有限元分析软件的改进极大地简化了对感应加热热种子的分析。本文研究了有限长度植入物的端部效应和非线性磁性材料特性,以解释先前存在的不一致性。使用两种合金,即28 wt% Cu的Ni(NiCu)和6.15 wt% Co的Pd(PdCo),来比较理论和实验量热结果。圆柱形种子的长径比(L/d)超过20对于最小化端部效应是必要的。对NiCu和PdCo合金测试的磁性特性表明,在用于感应加热的场强范围内,这些材料具有相当大的非线性。与场强相关的磁导率和量热数据表明,必须纳入更详细的材料信息,才能准确估计这些植入物的感应功率损耗。

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