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Original Article

Determination of power deposition patterns for localized hyperthermia: A transient analysis

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Pages 281-296 | Received 27 Oct 1987, Accepted 02 Jun 1987, Published online: 09 Jul 2009

References

  • Cravalho E. G., Fox L. R., Kan J. C. The application of the bioheat equation to the design of thermal protocols for local hyperthermia. Annals of the New York Academy of Sciences 1980; 335: 86–97
  • Dickinson R. J. An ultrasonic system for local hyperthermia using scanned focused transducers. IEEE Transactions Biomedical Engineering 1984; 31: 120–125
  • Halac S., Roemer R. B., Oleson J. R., Cetas T. C. Magnetic induction heating of tissue: Numerical evaluation of tumour temperature distributions. International Journal of Radiation Oncology, Biology, and Physics 1983; 9: 881–891
  • Ocheltree K. B., Frizzell L. A. Determination of power deposition patterns for localized hyperthermia: a steady-state analysis. International Journal of Hyperthermia 1987; 3: 269–279
  • Ocheltree K. B., Frizzell L. A. Applicator configurations and scan paths for localized hyperthermia. 1988, in preparation).
  • Roemer R. B., Swindell W., Clegg S. T., Kress R. L. Simulation of focused, scanned ultrasonic heating of deep-seated tumors: the effect of blood perfusion. IEEE Transactions on Sonics and Ultrasonics 1984; 31: 457–466
  • Stremler F. G. Introduction to Communication Systems. Addison-Wesley, Reading, Mass. 1977; 75–100
  • Strohbehn J. W., Roemer R. B. A survey of computer simulations of hyperthermia treatments. IEEE Transactions on Biomedical Engineering 1984; 31: 136–149
  • Van D en, Berg P. M., De Hoop A. T., Segal A., Praagman N. A computational model of the electromagnetic heating of biological tissue with application to hyperthermic cancer therapy. IEEE Transactions on Biomedical Engineering 1983; 30: 797–805

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