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Original

Relation between body size and temperatures during locoregional hyperthermia of oesophageal cancer patients

, PhD, , , , , & show all
Pages 663-674 | Received 11 Jan 2008, Accepted 16 May 2008, Published online: 09 Jul 2009

References

  • Sapareto SA, Dewey WC. Thermal dose determination in cancer therapy. Int J Radiat Oncol Biol Phys 1984; 10: 787–800
  • Leopold KA, Dewhirst MW, Samulski TV, Dodge RK, George SL, Blivin JL, Prosnitz LR, Oleson JR. Cumulative minutes with T90 greater than Tempindex is predictive of response of superficial malignancies to hyperthermia and radiation. Int J Radiat Oncol Biol Phys 1993; 25: 841–847
  • Kapp DS, Cox RS. Thermal treatment parameters are most predictive of outcome in patients with single tumor nodules per treatment field in recurrent adenocarcinoma of the breast. Int J Radiat Oncol Biol Phys 1995; 33: 887–899
  • Jones EL, Oleson JR, Prosnitz LR, Samulski TV, Vujaskovic Z, Yu D, Sanders LL, Dewhirst MW. Randomized trial of hyperthermia and radiation for superficial tumors. J Clin Oncol 2005; 23: 3079–3085
  • Jones EL, Prosnitz LR, Dewhirst MW, Marcom PK, Hardenbergh PH, Marks LB, Brizel DM, Vujaskovic Z. Thermochemoradiotherapy improves oxygenation in locally advanced breast cancer. Clin Cancer Res 2004; 10: 4287–4293
  • Dewhirst MW, Viglianti BL, Lora-Michiels M, Hanson M, Hoopes PJ. Basic principles of thermal dosimetry and thermal thresholds for tissue damage from hyperthermia. Int J Hyperthermia 2003; 19: 267–294
  • Dewhirst MW, Vujaskovic Z, Jones E, Thrall D. Re-setting the biologic rationale for thermal therapy. Int J Hyperthermia 2005; 21: 779–790
  • Jones E, Thrall D, Dewhirst MW, Vujaskovic Z. Prospective thermal dosimetry: The key to hyperthermia's future. Int J Hyperthermia 2006; 22: 247–253
  • Cox RS, Kapp DS. Correlation of thermal parameters with outcome in combined radiation therapy-hyperthermia trials. Int J Hyperthermia 1992; 8: 719–732
  • 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: 289–297
  • Sherar M, Liu FF, Pintilie M, Levin W, Hunt J, Hill R, Hand J, Vernon C, Van Rhoon G, Van der Zee J, et al. 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: 371–380
  • Shimm DS, Kittelson JM, Oleson JR, Aristizabal SA, Barlow LC, Cetas TC. Interstitial thermoradiotherapy: Thermal dosimetry and clinical results. Int J Radiat Oncol Biol Phys 1990; 18: 383–387
  • Sneed PK, Gutin PH, Stauffer PR, Phillips TL, Prados MD, Weaver KA, Suen S, Lamb SA, Ham B, Ahn DK. Thermoradiotherapy of recurrent malignant brain tumors. Int J Radiat Oncol Biol Phys 1992; 23: 853–861
  • Wust P, Rau B, Gellerman J, Pegios W, Loffel J, Riess H, Felix R, Schlag PM. Radiochemotherapy and hyperthermia in the treatment of rectal cancer. Recent Results Cancer Res 1998; 146: 175–191
  • Overgaard J, Gonzalez GD, Hulshof MC, Arcangeli G, Dahl O, Mella O, Bentzen SM. Hyperthermia as an adjuvant to radiation therapy of recurrent or metastatic malignant melanoma. A multicentre randomized trial by the European Society for Hyperthermic Oncology. Int J Hyperthermia 1996; 12: 3–20
  • Myerson RJ, Perez CA, Emami B, Straube W, Kuske RR, Leybovich L, Von GD. Tumor control in long-term survivors following superficial hyperthermia. Int J Radiat Oncol Biol Phys 1990; 18: 1123–1129
  • Myerson RJ, Straube WL, Moros EG, Emami BN, Lee HK, Perez CA, Taylor ME. Simultaneous superficial hyperthermia and external radiotherapy: Report of thermal dosimetry and tolerance to treatment. Int J Hyperthermia 1999; 15: 251–266
  • Thrall DE, Larue SM, Yu D, Samulski T, Sanders L, Case B, Rosner G, Azuma C, Poulson J, Pruitt AF, et al. Thermal dose is related to duration of local control in canine sarcomas treated with thermoradiotherapy. Clin Cancer Res 2005; 11: 5206–5214
  • Dewhirst MW, Sim DA, Sapareto S, Connor WG. Importance of minimum tumor temperature in determining early and long-term responses of spontaneous canine and feline tumors to heat and radiation. Cancer Res 1984; 44: 43–50
  • Hand JW, Machin D, Vernon CC, Whaley JB. Analysis of thermal parameters obtained during phase III trials of hyperthermia as an adjunct to radiotherapy in the treatment of breast carcinoma. Int J Hyperthermia 1997; 13: 343–364
  • Prionas SD, Kapp DS, Goffinet DR, Ben-Yosef R, Fessenden P, Bagshaw MA. Thermometry of interstitial hyperthermia given as an adjuvant to brachytherapy for the treatment of carcinoma of the prostate. Int J Radiat Oncol Biol Phys 1994; 28: 151–162
  • Ryan TP, Trembly BS, Roberts DW, Strohbehn JW, Coughlin CT, Hoopes PJ. Brain hyperthermia: I. Interstitial microwave antenna array techniques–The Dartmouth experience. Int J Radiat Oncol Biol Phys 1994; 29: 1065–1078
  • Seegenschmiedt MH, Martus P, Fietkau R, Iro H, Brady LW, Sauer R. Multivariate analysis of prognostic parameters using interstitial thermoradiotherapy (IHT-IRT): Tumor and treatment variables predict outcome. Int J Radiat Oncol Biol Phys 1994; 29: 1049–1063
  • Wust P, Stahl H, Loffel J, Seebass M, Riess H, Felix R. Clinical, physiological and anatomical determinants for radiofrequency hyperthermia. Int J Hyperthermia 1995; 11: 51–167
  • Albregts M, Hulshof MC, Zum Vorde Sive Vording PJ, van Lanschot JJ, Richel DJ, Crezee H, Fockens P, van Dijk JD, Gonzalez-Gonzalez D. A feasibility study in oesophageal carcinoma using deep loco-regional hyperthermia combined with concurrent chemotherapy followed by surgery. Int J Hyperthermia 2004; 20: 647–659
  • van Dijk JD, Schneider C, van Os R, Blank LE, Gonzalez DG. Results of deep body hyperthermia with large waveguide radiators. Adv Exp Med Biol 1990; 267: 315–319
  • Westerterp M, Omloo JM, Sloof GW, Hulshof MC, Hoekstra OS, Crezee H, Boellaard R, Vervenne WL, Ten Kate FJ, van Lanschot JJ. Monitoring of response to pre-operative chemoradiation in combination with hyperthermia in oesophageal cancer by FDG-PET. Int J Hyperthermia 2006; 22: 149–160
  • Van de Kamer JB, de Leeuw AA, Hornsleth SN, Kroeze H, Kotte AN, Lagendijk JJ. Development of a regional hyperthermia treatment planning system. Int J Hyperthermia 2001; 17: 207–220
  • Kok HP, van Haaren PM, Van de Kamer JB, Wiersma J, van Dijk JD, Crezee J. Highresolution temperature-based optimization for hyperthermia treatment planning. Phys Med Biol 2005; 50: 3127–3141
  • van Dijk JD, Schneider C, van Os R, Blank LE, Gonzalez DG. Results of deep body hyperthermia with large waveguide radiators. Adv Exp Med Biol 1990; 267: 315–319
  • van Haaren PM, Kok HP, Zum Vorde Sive Vording PJ, van Dijk JD, Hulshof MC, Fockens P, van Lanschot JJ, Crezee J. Reliability of temperature and SAR measurements at oesophageal tumour locations. Int J Hyperthermia 2006; 22: 545–561
  • van Haaren PM, Kok HP, Van den Berg CA, Zum Vorde Sive Vording PJ, Oldenborg S, Stalpers LJ, Schilthuis MS, de Leeuw AA, Crezee J. On verification of hyperthermia treatment planning for cervical carcinoma patients. Int J Hyperthermia 2007; 23: 303–314
  • de Leeuw AA, Crezee J, Lagendijk JJ. Temperature and SAR measurements in deepbody hyperthermia with thermocouple thermometry. Int J Hyperthermia 1993; 9: 685–697
  • Kok HP, van Haaren PM, Van de Kamer JB, Zum Vorde Sive Vording PJ, Wiersma J, Hulshof MC, Geijsen ED, van Lanschot JJ, Crezee J. Prospective treatment planning to improve locoregional hyperthermia for oesophageal cancer. Int J Hyperthermia 2006; 22: 375–389
  • Hornsleth SN, Mella O, Dahl O. A new CT segmentation algorithm for finite difference based treatment planning systems. Hyperthermic Oncology, C Franconi, G Arcangeli, R Cavaliere. Tor Vergata, Rome 1996; 2: 521–523
  • ESHO Taskgroup Committee. Treatment planning and modelling in hyperthermia, a task group report of the European society for hyperthermic oncology. Tor Vergata, Rome 1992
  • Gabriel C, Gabriel S, Corthout E. The dielectric properties of biological tissues: I. Literature survey. Phys Med Biol 1996; 41: 2231–2249
  • Pennes HH. Analysis of tissue and arterial blood temperatures in the resting human forearm. 1948. J Appl Physiol 1998; 85: 5–34
  • van Haaren PM, Kok HP, Oldenborg S, Zum Vorde Sive Vording PJ, Bel A, Geijsen ED, Hulshof MC, Fockens P, van Lanschot JJ, Crezee J. Clinical application of intraluminal hot water balloons combined with locoregional hyperthermia for treatment of oesophageal tumours. Book of Abstracts–24th annual Meeting of the European Society for Hyperthermic Oncology, Prague, 2007, 46–47
  • Sreenivasa G, Gellermann J, Rau B, Nadobny J, Schlag P, Deuflhard P, Felix R, Wust P. Clinical use of the hyperthermia treatment planning system HyperPlan to predict effectiveness and toxicity. Int J Radiat Oncol Biol Phys 2003; 55: 407–419
  • Lyng H, Monge OR, Sager EM, Rofstad EK. Prediction of treatment temperatures in clinical hyperthermia of locally advanced breast carcinoma: The use of contrast enhanced computed tomography. Int J Radiat Oncol Biol Phys 1993; 26: 451–457
  • Overgaard J, Gonzalez GD, Hulshof MC, Arcangeli G, Dahl O, Mella O, Bentzen SM. Randomised trial of hyperthermia as adjuvant to radiotherapy for recurrent or metastatic malignant melanoma. European society for hyperthermic oncology. Lancet 1995; 345: 540–543
  • van der Zee J, Gonzalez GD, van Rhoon GC, van Dijk JD, van Putten WL, Hart AA. Comparison of radiotherapy alone with radiotherapy plus hyperthermia in locally advanced pelvic tumours: A prospective, randomised, multicentre trial. Dutch deep hyperthermia group. Lancet 2000; 355: 1119–1125
  • Roemer RB. The local tissue cooling coefficient: A unified approach to thermal washout and steady-state ‘perfusion' calculations. Int J Hyperthermia 1990; 6: 421–430
  • Kress R, Roemer R. A comparative analysis of thermal blood perfusion measurement techniques. J Biomech Eng 1987; 109: 218–225
  • Sandhu TS. Measurement of blood flow using temperature decay: Effect of thermal conduction. Int J Radiat Oncol Biol Phys 1986; 12: 373–378
  • Waterman FM, Tupchong L, Matthews J, Nerlinger R. Mechanisms of heat removal during local hyperthermia. Int J Radiat Oncol Biol Phys 1989; 17: 1049–1055
  • Waterman FM, Tupchong L, Liu CR. Modified thermal clearance technique for determination of blood flow during local hyperthermia. Int J Hyperthermia 1991; 7: 719–733
  • Waterman FM, Nerlinger RE, Moylan DJ, III, Leeper DB. Response of human tumor blood flow to local hyperthermia. Int J Radiat Oncol Biol Phys 1987; 13: 75–82
  • Raaymakers BW, van Vulpen M, Lagendijk JJ, de Leeuw AA, Crezee J, Battermann JJ. Determination and validation of the actual 3D temperature distribution during interstitial hyperthermia of prostate carcinoma. Phys Med Biol 2001; 46: 3115–3131
  • van Vulpen M, Raaymakers BW, de Leeuw AA, Van de Kamer JB, van Moorselaar RJ, Hobbelink MG, Battermann JJ, Lagendijk JJ. Prostate perfusion in patients with locally advanced prostate carcinoma treated with different hyperthermia techniques. J Urol 2002; 168: 1597–1602
  • Van den Berg CA, Van de Kamer JB, de Leeuw AA, Jeukens CR, Raaymakers BW, Van VM, Lagendijk JJ. Towards patient specific thermal modelling of the prostate. Phys Med Biol 2006; 51: 809–825
  • Song CW. Effect of local hyperthermia on blood flow and microenvironment: A review. Cancer Res 1984; 44: 4721s–4730s
  • Deurenberg P, Weststrate JA, Seidell JC. Body mass index as a measure of body fatness: Age- and sex-specific prediction formulas. Br J Nutr 1991; 65: 105–114
  • Taylor RW, Jones IE, Williams SM, Goulding A. Body fat percentages measured by dual-energy X-ray absorptiometry corresponding to recently recommended body mass index cutoffs for overweight and obesity in children and adolescents aged 3–18 y. Am J Clin Nutr 2002; 76: 1416–1421

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