20
Views
17
CrossRef citations to date
0
Altmetric
Original Article

Comparison of numerical calculations with phantom experiments and clinical measurements

&
Pages 333-349 | Received 24 Oct 1988, Accepted 12 May 1989, Published online: 09 Jul 2009

References

  • Bagshaw M. A., Taylor M. A., Kapp D. S., Meyer J. L., Samulski T. V., Lee E. R., Fessenden P. Anatomical site-specific modalities for hyperthermia. Cancer Research (Suppl.) 1984; 44: 4842s–4852s
  • Baish J. W., Foster K. R., Ayyaswamy P. S. Perfused phantom models of microwave irradiated tissue. ASME Journal of Biomechanical Engineering 1986a; 108: 239–245
  • Baish J. W., Ayyaswamy P. S., Foster K. R. Small-scale temperature fluctuations in perfused tissue during local hyperthermia. ASME Journal of Biomechanical Engineering 1986b; 108: 246–250
  • Baish J. W., Ayyaswamy P. S., Foster K. R. Heat transport mechanisms in vascular tissue: a model comparison. ASME Journal of Biomechanical Engineering 1986c; 108: 324–331
  • Charny C. K., Levin R. L. Heat transfer normal to paired arterioles and venules embedded in perfused tissue during hyperthermia. ASME Journal of Biomechanical Engineering 1988; 110: 277–282
  • Chen Z. P., Roemer R. B., Cetas T. C. Errors in two-dimensional thermal model predictions of hyperthermia treatment when compared to three dimensional model predictions. Presented at the 37th Annual Meeting of the Radiation Research Society, Seattle, WA, 1989
  • Dewhirst M. W., Winget J. M., Edelstein-Keshet L., Sylvester J., Engler M., Thrall D. E., Page R. L., Oleson J. R. Clinical application of thermal isoeffect dose. International Journal of Hyperthermia 1987; 3: 307–318
  • Hagmann M. J. Difficulty in using two-dimensional models for calculating the energy deposition in tissues during hyperthermia. International Journal of Hyperthermia 1987; 3: 475–476
  • Hagmann M. J., Levin R. L. Aberant heating: a problem in regional hyperthermia. IEEE Transactions in Biomedical Engineering 1986; 33: 874–882
  • Hornsleth S. N., Anderson J. B., Chen Z. P., Roemer R. B., Cetas T. C. 3D temperature distributions from electromagnetic phased arrays. presented at the 5th International Symposium on Hyperthermic Oncology, Kyoto, Japan, 1988
  • Lagendijk J. J. W. A new theory to calculate temperature distributions in tissues, or why the ‘bioheat transfer’ equation does not work. Hyperthermic Oncology, J. Overgaard. Taylor & Francis, London 1984
  • Lau R. W. M., Sheppard R. J. The modelling of biological systems in three dimensions using the time-domain finite-difference method. Physics in Medicine and Biology 1986; 31: 1247–1266
  • Lumori M. L. D. Microwave power deposition in bounded and in homogeneous lossy media. Ph.D. thesis, University of Arizona, Tucson 1988
  • Lynch D. R., Paulsen K. D., Sullivan J. M., Strohbehn J. W. Hyperthermia analysis on finite elements. Proceedings of the Ninth Annual Conference of the IEEE Engineering in Medicine and Biology Society. 1987; 1293–1295
  • Paulsen K. D., Strohbehn J. W., Lynch D. R. Theoretical electric field distributions produced by three types of regional hyperthermia devices in a three-dimensional homogeneous model of man. IEEE Transactions in Biomedical Engineering 1988; 35: 36–45
  • Paulsen K. D., Strohbehn J. W., Lynch D. R. Comparative theoretical performance for two types of regional hyperthermia systems. International Journal of Radiation Oncology, Biology and Physics 1985; 11: 1659–1671
  • Paulsen K. D., Strohbehn J. W., Lynch D. R. Theoretical temperature distributions produced by an annular phased array type system in CT-based patient models. Radiation Research 1984; 100: 536–552
  • Pennes H. H. Analysis of tissue and arterial blood temperatures in the resting human forearm. Journal of Applied Physiology 1948; 1: 93–122
  • Rine G., Dewhirst M. W., Samulski T. V., Wallen A. Modelling SAR values in tissue due to slab loaded waveguide applicators. Proceedings of the Ninth Annual Conference of the IEEE Engineering in Medicine and Biology Society. 1987; 1000–1001
  • Ross M. P. Evaluation of a two-dimensional electromagnetic model for hyperthermia treatment planning. MS thesis, University of Arizona, Tucson 1988
  • Samulski T. V., Fessenden P., Valdagni R., Kapp D. S. Correlations of thermal washout rate, steady-state temperatures, and tissue type in deep seated recurrent or metastatic tumors. International Journal of Radiation Oncology, Biology and Physics 1987a; 12: 907–916
  • Samulski T. V., Kapp D. S., Fessenden P., Lohrbach A. Heating deep seated eccentrically located tumors with an annular phased array system: a comparative clinical study using two annular array operating configurations. International Journal of Radiation Oncology, Biology and Physics 1987b; 13: 83–94
  • Spiegel R. F., Fatmi M. B. E., Kunz K. S. Application of a finite-difference technique to the human radiofrequency dosimetry problem. Journal of Microwave Power 1985; 20: 241–254
  • Strohbehn J. W., Curtis E. H., Paulsen K. D., Yuan X., Lynch D. R. Optimization of the absorbed power distribution for an annular phased array hyperthermia system. International Journal of Radiation Oncology, Biology and Physics. 1988a
  • Strohbehn J. W., Lynch D. R., Paulsen K. D. Numerical modelling of SAR and temperatures in 1992: where we might be. presented at the 5th International Symposium on Hyperthermia Oncology, Kyoto, Japan, 1988b
  • Strohbehn J. W., Paulsen K. D., Lynch D. R. Use of finite element methods in computerized thermal dosimetry. Physical Techniques in Clinical Hyperthermia, J. W. Hand, J. R. James. Research Studies Press, Letchworth 1986; 383–451
  • Sullivan D. M., Gandhi O. P., Taflove A. Use of the finite-difference time-domain method for calculating EM absorption in man models. IEEE Transactions in Biomedical Engineering 1988; 35: 179–186
  • Turner P. F. Regional hyperthermia with an annular phased array. IEEE Transactions in Biomedical Engineering 1984a; 31: 106–114
  • Turner P. F. Hyperthermia and inhomogeneous tissue effects using an annular phased array. IEEE Transactions in Microwave Theory and Technique 1984b; 32: 874–882
  • Van Putten M. H., Van Den Berg P. M. A three dimensional model for the ‘coaxial TEM’ deep-body hyperthermia applicator. International Journal of Hyperthermia 1986; 2: 243–252
  • Visser A. G., Van Rhoon G. C., Van Den Berg P. M., Reinhold R. S. Evaluation of calculated temperature distributions for a 27 MHz ridged waveguide used in localized deep hyperthermia. International Journal of Hyperthermia 1987; 3: 245–256
  • Wait J. R. Excitation of an enclosed lossy cylinder by an aperture source. IEEE Transactions in Microwave Theory and Technique 1987; 35: 210–212
  • Wang C., Gandhi O. P. Numerical simulation of annular phased arrays for anatomically based models using the FDTD method. IEEE Transactions in Microwave Theory and Technique 1989; 37: 118–126
  • Weinbaum S., Jui L. M. A new simplified bioheat equation for the effect of blood flow on local average tissue temperatures. ASME Journal of Biomechanical Engineering 1985; 107: 131–139
  • Weinbaum S., Jui L. M. Discussion of papers by Wissler and Baish et al. concerning the Weinbaum-Jiji bioheat equation. ASME Journal of Biomechanical Engineering 1987; 109: 234–237
  • Wissler E. H. Comments on the new bioheat equation proposed by Weinbaum and Jiji. ASME Journal of Biomechanical Engineering 1987; 109: 226–233
  • Zwamborn A. P. M., Van Den Berg P. M. A computational model for heat generation in a radially layered tissue inside a ‘coaxial TEM’ applicator. International Journal of Hyperthermia 1989; 5: 211–223

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.