20
Views
36
CrossRef citations to date
0
Altmetric
Original Article

Pre-clinical evaluation of a microwave planar array applicator for superficial hyperthermia

&
Pages 227-246 | Received 08 Jun 1992, Accepted 24 Sep 1992, Published online: 09 Jul 2009

References

  • Anhalt D. A., Hynynen K. H. The efficiency of clinical microwave applicators measured by a calorimetric method. Medical Physics 1988; 15(6)919–921
  • Babij T. M., Hagmann M. J., Gottlieb C. F., Abitbol A. A., Lewin A. A., Schwade J. G., Houdek P. V. Evaluation of heating patterns of microwave interstitial applicators using miniature electric field and flouroptic temperature probes. International Journal of Hyperthermia 1991; 7(3)485–492
  • Bassen H. I., Smith G. S. Electric field probes-a review. IEEE Transactions on Antennas and Propagation 1983; AP-31(5)710–718
  • Bassen H. I., Swicord M., Abita J. A miniature broad-band electric field probe. Annals of the New York Academy of Sciences, Biological Effects of Nonionizing Radiation 1975; 247: 481–493
  • Chou C. K., Chen G. W., Guy A. W., Luk K. H. Formulas for preparing phantom muscle tissue at various radiofrequencies. Bioelectromagnetics 1984; 5: 435–441
  • Chou C. K., McDoucall J. A., Chan K. W., Luk K. H. Evaluation of captive bolus applicators. Medical Physics 1990; 17(4)705–709
  • Denman D. L., Kolasa M. J., Elson H. R., Aron B. S., Kereikes J. G. Specific absorption rates in simulated tissue media for a lOx 10 cm 915-MHz waveguide applicator. Medical Physics 1987; 14(4)681–686
  • Durney C. H., Iskander M. F. Antennas for medical applications. Antenna Handbook: Theory, Applications, and Design, Y. T. Lo, S. W. Lee. van Nostrand Reinhold, New York 1988; 24.1–24.59
  • Fessenden P., Kapp D. S., Lee E. R., Samulski T. V. Clinical microwave applicator design. Biological Physical and Clinical Aspects of Hyperthermia, B. R. Paliwall, F. W. Hetzel, M. W. Dewhirst. American Institute of Physics, New York 1988; 123–131, Medical Physics Monograph 16
  • Ghopal M. K., Hand J. W., Lumori M. L. D., Alkhairi S., Paulsen K. D., Cetas T. C. Current sheet applicator arrays for superficial hyperthermia of chest wall lesions. International Journal of Hyperthermia 1992; 8(2)227–240
  • Hand J. W. Biophysics and technology of electromagnetic hyperthermia. Methods of External Hyperthermic Heating, M. Gautherie. Springer-Verlag, Berlin 1990; 1–59
  • Hand J. W., Cheetham J. L., Hind A. J. Absorbed power distributions from coherent microwave arrays for localized hyperthermia. IEEE Transactions on Microwave Theory and Techniques 1986; 34(5)484–489
  • Hartsgrove G., Kraszewski A., Surowiec A. Simulated biological materials for electromagnetic radiation absorption studies. Bioelectromagnetics 1987; 8: 29–36
  • Kapp D. S., Fessenden P., Samulski T. V., Bagshaw M. A., Cox R. S., Lee E. R., Lohrbach A. W., Meyer J. L., Prionas S. D. Stanford University institutional report. Phase I evaluation of equipment for hyperthermia treatment of cancer. International Journal of Hyperthermia 1988; 4(1)75–115
  • Lee E. R., Wilsey T. R., Tarczy-Hornoch P., Kapp D. S., Fessenden P., Lohrbach A., Prionas S. Body conformable 915 MHz microstrip array applicators for large surface area hyperthermia. IEEE Transactions on Biomedical Engineering 1992; 39(5)470–483
  • Myerson R. J., Perez C. A., Emami B., Straube W., Kuske R. R., Leybovich L., Von Gerjchten D. Tumor control in long-term survivors following superficial hyperthermia. International Journal of Radiation Oncology, Biology and Physics 1990; 18(5)1123–1129
  • Nussbaum G. H. Quality assessment and assurance in clinical hyperthermia: requirements and procedures. Cancer Research (Suppl) 1984; 44: 4811s–4817s
  • Perez C. A., Gillespie B., Pajak T., Hornback N., Emami B., Rubin P. Quality assurance problems in clinical hyperthermia and its impact on therapeutic outcome. A report by the Radiation Therapy Oncology Group. International Journal of Radiation Oncology, Biology and Physics 1989; 16: 551
  • Samulski T. V., Fessenden P., Lee E. R., Kapp D. S., Tanabe E., McEuen A. Spiral microstrip hyperthermia applicators: technical design and clinical performance. International Journal of Radiation Oncology, Biology and Physics 1990; 18: 233–242
  • Sherar M. D., Newcombe D. J., Taylor W. B., Hunt J. W. Investigation of heating patterns of the MA-100 and MA-120 microwave applicators under different water bolus arrangements at 915 MHz. Abstract presented at International Congress of Radiation Research, Toronto, 1991, 194
  • Stauffer P. R., Diederich C. J., Adams W. M., Fidel J. A. Pre-Clinical studies of a multi-element microwave hyperthermia system: dosimetry and results with canine tumours. International Journal of Radiation Oncology, Biology and Physics 1993, submitted
  • Straube W. L., Myerson R. J., Emami B., Leybovich L. B. SAR patterns of external 915 MHz microwave applicators. International Journal of Hyperthermia 1990; 6(3)665–670
  • Tennant A., Conway J., Anderson A. P. A robot-controlled microwave antenna system for uniform hyperthermia treatment of superficial tumors with arbitrary shape. International Journal of Hyperthermia 1990; 6(1)193–202
  • Underwood H. R., Peterson A. F., Magin R. L. Electric-Field distribution near rectangular microstrip radiators for hyperthermia heating: theory versus experiment in water. IEEE Transactions on Biomedical Engineering 1992; 39(2)146–153

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.