143
Views
10
CrossRef citations to date
0
Altmetric
Research Article

Edge-element based finite element analysis of microwave hyperthermia treatments for superficial tumours on the chest wall

&
Pages 414-430 | Published online: 09 Jul 2009

  • Seegenschmiedt MH, Fessenden P, Vernon CC, eds. Thermoradiotherapy and Thermochemotherapy, vol. 1. New York: Springer-Verlag, 1995; 89-102.
  • Overgaard J, Gonzalez Gonzalez D, Hulshof MCCH, Arcangeli G, Dahl O, Mella O, Bentzen SM. Hyperthermia as an adjuvant to radiation therapy of recurrent or metaststic malignant melanoma, a multicentre randomized trial by the European Society for Hyperthermic Oncology. Int. J. Hyperthermia 1996; 12: 3-20.
  • Vernon CC, Hand JW, Field SB, Machin D, Whaley JB, van der Zee, J van Putten WLJ, van Roon GC, van Dijk JDP, Gonzalez Gonzalez D, Liu F, Goodman P, Sherar M. Radiotherapy with or without hyperthermia in the treatment of superficial localized breast cancer--results from five randomized controlled trials. Int J Radiat Oncol Biol Pnys 1996; 35: 731-44.
  • Sneed PK, Stauffer PR, McDermott MW, Diederich CJ, Lamborn KR, Prados MD, Chang S, Weaver KA, Spry L, Malec MK, Lamb SA, Voss B, Davis RL, Wara WM, Larson DA, S TLP, Gutin PH. Survival benefit of hyperthermia in a prospective randomized trial of brachytherapy boost hyperthermia for glioblastoma multiforme. Int J Radiat Oncol Biol Phys 1998; 40: 287-95.
  • van der Zee J, Gonzalez Gonzalez D, van Rhoon GC, van Dijk JDP, van Putten WLJ, Hart AAM. Comparison of radiotherapy alone with radiotherapy plus hyperthermia in locally advanced pelvic tumours: a propsective, randomised, multicentre trial. Lancet 2000; 355: 1119-25.
  • Oleson JR, Samulski TV, Leopold KA, Clegg ST, Dewhirst MW, Dodge RK, George SL. Sensitivity of hyperthermia trial outcomes to temperature and time: implications for thermal goals of treatment. Int J Radiat Oncol Biol Phys 1993; 25: 289-97.
  • Kapp DS, Cox RS. Thermal treatment parameters are most predictive of outcome in patients with single tumour nodules per treatment field in recurrent adenocarcinoma of the breast. Int J Radiat Oncol Biol Phys 1995; 33: 887-99.
  • Sherar M, Liu F, Pintilie M, Levin W, Hunt J, Hill R, Hand J, Vernon C, van Rhoon GC, van der Zee J, Gonzalez Gonzalez D, van Dijk J, Whaley J, Machin D. Relationship between thermal dose and outcome in thermoradiotherapy treatments for superficial recurrences of breast cancer: data from a phase III trial. Int J Radiat Oncol Biol Phys 1997; 39: 371-80.
  • Lindholm CE, Kjlellén E, Nillson P, Weber L, Hill S. Prognostic factors for tumour response and skin damage to combined radiotherapy and hyperthermia in superficial ecurrent breast carcinomas. Int J Hyperthermia 1995; 11: 337-55.
  • Sherar MD, Clark H, Cooper B, Kumaradas J, Liu FF. A variable microwave array attenuator for use with single-element waveguide applicators. Int J Hyperthermia 1994; 10: 723-31.
  • Das SK, Clegg ST, Anscher MS, Samulski TV. Simulation of electromagnetically induced hyperthermia: a finite element gridding method. Int J Hyperthermia 1995; 11: 797-808.
  • Paulsen KD, Geimer S, Tang J, Boyse WE. Optimization of pelvic heating rate distributions with electromagnetic phased arrays. Int J Hyperthermia 1999; 15: 157-86.
  • van De Kamer JB, De Leeuw AAC, Hornsleth SN, Kroeze H, Kotte ANTJ, Lagendijk JJW. Development of a regional hyperthermia treatment planning system. Int J Hyperthermia 2001; 17: 207-20.
  • Nadobny J, Sullivan D, Wust P, Seebass M, Deuflhard P, Felix R. A high resolution interpolation at arbitrary interfaces for the FDTD method. IEEE Trans Micro Theor Tech 1998; 47: 1759-66.
  • Wust P, Seebass M, Nadobny J, Deuflhard P, Monich G, Felix R. Simulation studies promote technological development of radiofrequency phased array hyperthermia. Int J Hyperthermia 1996; 12: 477-94.
  • Gellermann J, Wust P, Stalling D, Seebass M, Nadobny J, Beck R, Hege HC, Deuflhard P, Felix R. Clinical evaluation and verification of the hyperthermia treatment planning system Hyperplan. Int J Radiat Oncol Biol Phys 2000; 47: 1145-56.
  • Kumaradas JC, Sherar MD. An edge-element based finite element model of microwave heating in hyperthermia: method and verification. Int J Hyperthermia 2002; 18: 426-40.
  • Beck R, Erdmann B, Roitzsch R. KASKADE 3.0: an object-oriented adaptive finite element code. Tech. Rep. TR 95-4, Konrad-Zuse-Zentrum für Informationstechnik Berlin, Berlin-Wilmersdorf, 1995.
  • Erdmann B, Lang J, Roitzsch R. KASKADE manual. Tech. Rep. TR93-05, ZuseZentrum für Informationstechnik, Berlin, German, 1993.
  • Guiot C, Madon E, Allegro D, Piantà PG, Baiotto B, Gabriele P. Perfusion and thermal field during hyperthermia. experimental measurements and modelling in recurrent breast cancer. Phys Med Biol 1998; 43: 2831-43.
  • Emami BH, Song CW. Physiological mechanism in hyperthermia: a review. Int J Radit Oncol Biol Phys 1984; 10: 289-95.
  • Song CW. Effect of local hyperthermia on blood flow and microenvironment: a review. Cancer Res 1984; 44: 472s-80s.
  • Lang J, Erdmann B, Seebass M. The impact of a nonlinear heat transfer model for temperature control in regional hyperthermia. IEEE Trans Biomed Eng 1999; 46:1129-38.
  • Kumaradas JC, Sherar MD. An edge-element based finite element model of microwave heating in hyperthermia: application to a bolus design. Int J Hyperthermia 2002; 18: 44153.
  • Williams LR, Leggett RW. Reference values for resting blood flow to organs of man. Clin Phys Physiologic Meas 1989; 10: 187-217.
  • Duck FA. Physical Properties of Tissue. Toronto: Academic Press, 1990.
  • Grant JP, Clarke RN, Symm Gt, Spyrou NM. Invivio dielectric properties of human skin from 50MHz to 2.0GHz. Phys Med Biol 1988; 33: 607-12.
  • Hensel H, Bender F. Fortaufaude bestimmung der hautdurchblutung am menshen mit einem elektrishen wärmeleitmesser. Pflugers Arch 1956; 22: 603-14.
  • Burdette EC. Electromagnetic and acoustic properties of tissues. In: Nussbaum GH, ed., Physical Aspects of Hyperthermia, no. 8 in AAPM Medical Physics Monographs. American Association of Physicists in Medicine, 1982; 105-50.
  • Hensel H, Doerr FF. Untersuchungen mit enem neuen haut-wärmeleitmesser. P flugers Arch 1959; 270: 78.
  • Derksen WL, Murtha TD, Monahan TI. Thermal conductivity and diathermy of human skin for sources of intense thernal radiation employed in flash bum studies. J Appl Physiol 1957; 11:205-10.
  • Burdette EC, Cain FL, Seal J. In-vivo probe measurement technique for determining dielectric properties at VHF through microwave frequencies. IEEE Trans Micro Theor Tech 1980; 28: 414-27.
  • Bowman HF. Heat transfer and thermal dosimetry. J Micro Pow 1981; 16: 121-33.
  • Bowman HF, Cravalho EG, Woods M. Theory, measurement and application of thermal properties of biomaterials. Ann Rev Biophys Bioeng 1975; 4: 43-80.
  • Ray S, Behari J. Electrical conduction in bone in frequency range 0.4-1.3GHz. Biomat Med Dev Artif Organs 1986; 14: 153-65.
  • Henschel CJ. Heat impact of revolving instruments on vital dentin tubules. / Dent Res 1943; 22: 323-33.
  • Gabriel S, Lau RW, Gabriel C. The dielectric properties of biological tissues: II. Measurement in the frequency range 10 Hz to 2OGHz. Phys Med Biol 1996; 41: 2251-69.
  • Youn J, Telenkov SA, Kirn E, Bhavaraju MC, Wong BJF, Valvano JW, Mimer TE. Optical and thermal properties of nasal septal cartilage. Lasers Surg Med 2000; 27: 119-28.
  • Sullivan DM. Direct use of CT scans for hyperthermia treatment planning. IEEE Trans Biomed Eng 1992; 39: 845-51.
  • Wust P, Nadobny J, Seebass M, Stalling D, Gellermann J, Hege HC, Deuflhard P, Felix R. Influence of patient models and numerical methods on predicted power deposition patterns. Int J Hyperthermia 1999; 15: 519.
  • Wust P, Fähling H, Helzel T, Kniephoff M, Wlodarczyk M, Monich G, Felix R. Design and test of a new multi-amplifier system with phase and amplitude control. Int J Hyperthermia 1998; 14: 459-77.
  • Wegner S, Harms T, Oswald H, Fleck E. Multiresolution segnementation based on the watershed transformation. In: Lemke HU, Inamura K, Jaffe CC, Vannir MW, eds., Proceedings of the International Symposium on Computer Assisted Radiology. Berlin: Springer, 1995; 1259.

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.