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Physical limits of hyperthermia using magnetite fine particles

IEEE Transactions on Magnetics · 1998 · Vol. 34(5) · pp. 3745–3754
R. HergtW. AndräC. G. D'amblyIngrid HilgerW. A. KaiserU. RichterH. Schmidt

Abstract

Structural and magnetic properties of fine particles of magnetite are investigated with respect to the application for hyperthermia. Magnetic hysteresis losses are measured in dependence on the field amplitude for selected commercial powders and are discussed in terms of grain size and structure of the particles. For ferromagnetic powders as well as for ferrofluids, results of heating experiments within organic gels in a magnetic high frequency field are reported. The heating effect depends strongly on the magnetic properties of the magnetite particles which may vary appreciably for different samples in dependence on the particle size and microstructure. In particular, the transition from ferromagnetic to superparamagnetic behavior causes changes of the loss mechanism, and accordingly, of the heating effect. The maximum attainable heating effect is discussed in terms of common theoretical models. Rise of temperature at the surface of a small heated sample as well as in its immediate neighborhood in the surrounding medium is measured in dependence on time and is compared with solutions of the corresponding heat conductivity problem. Conclusions with respect to clinical applications are given.

Characterization and Applications of Magnetic NanoparticlesGeomagnetism and Paleomagnetism StudiesMagnetic and Electromagnetic EffectsMaterials scienceMagnetiteFerrofluidSuperparamagnetismCondensed matter physicsGrain sizeFerromagnetismHysteresisParticle sizeMagnetic field
Citations
649
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2.43
field-weighted impact
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19
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88%
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References
Electrodynamics of Continuous Media
American Journal of Physics · 1961 · 10,810 citations
Selective Inductive Heating of Lymph Nodes
Annals of Surgery · 1957 · 1,062 citations
Conduction of heat in solids
Journal of the Mechanics and Physics of Solids · 1959 · 18,526 citations
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