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Original Articles

Feasibility and safety assessment of magnetic resonance-guided high-intensity focused ultrasound (MRgHIFU)-mediated mild hyperthermia in pelvic targets evaluated using an in vivo porcine model

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Pages 1146-1158 | Received 25 Jun 2019, Accepted 23 Oct 2019, Published online: 21 Nov 2019

References

  • Chicheł A, Skowronek J, Kanikowski M. Thermal boost combined with interstitial brachytherapy in breast conserving therapy - assessment of early toxicity. Rep Pract Oncol Radiother. 2011;16:87–94.
  • Rao W, Deng ZS, Liu J. A review of hyperthermia combined with radiotherapy/chemotherapy on malignant tumors. Crit Rev Biomed Eng. 2010;38:101–116.
  • Longo TA, Gopalakrishna A, Tsivian M, et al. A systematic review of regional hyperthermia therapy in bladder cancer. Int J Hyperth. 2016;32:381–389.
  • Toraya-Brown S, Fiering S. Local tumour hyperthermia as immunotherapy for metastatic cancer. Int J Hyperthermia. 2014;30:531–539.
  • Stauffer PR. Evolving technology for thermal therapy of cancer. Int J Hyperthermia. 2005;21:731–744.
  • Stauffer PR, van Rhoon GC. Overview of bladder heating technology: matching capabilities with clinical requirements. Int J Hyperth. 2016;32:407–416.
  • Hedayatnasab Z, Abnisa F, Daud W. Review on magnetic nanoparticles for magnetic nanofluid hyperthermia application. Mater Des. 2017;123:174–196.
  • Habash RWY. Therapeutic hyperthermia. In: Romanovsky AJ, editor. Handbook of clinical neurology. Amsterdam (Netherlands): Elsevier; 2018. p. 853–868.
  • Mellal I, Oukaira A, Kengene E, et al. Thermal therapy modalities for cancer treatment: a review and future perspectives. Int J Appl Sci. 2017;4:14.
  • Gupta R, Sharma D. Evolution of magnetic hyperthermia for glioblastoma multiforme therapy. ACS Chem Neurosci. 2019;10:1157–1172.
  • Habash RWY, Bansal R, Krewski D, et al. Thermal therapy, part 2: hyperthermia techniques. Crit Rev Biomed Eng. 2006;34:491–542.
  • Cabuy E. Hyperthermia in cancer treatment hyperthermia in cancer treatment. Natl Cancer Inst. 2016;1:1–48.
  • Johannsen M, Thiesen B, Wust P, et al. Magnetic nanoparticle hyperthermia for prostate cancer. Int J Hyperth. 2010;26:790–795.
  • Lutgens L, van der Zee J, Pijls-Johannesma M, et al. Combined use of hyperthermia and radiation therapy for treating locally advanced cervix carcinoma. Cochrane Database of Systematic Reviews 2010, Issue 1. Art. No.: CD006377.
  • De Haas‐Kock DFM, Buijsen J, Pijls-Johannesma M, et al. Concomitant hyperthermia and radiation therapy for treating locally advanced rectal cancer. Cochrane Database Syst Rev. 2009;CD006269.
  • van der Zee J, González González D, van Rhoon GC, et al. 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.
  • Wittlinger M, Rödel CM, Weiss C, et al. Quadrimodal treatment of high-risk T1 and T2 bladder cancer: transurethral tumor resection followed by concurrent radiochemotherapy and regional deep hyperthermia. Radiother Oncol. 2009;93:358–363.
  • Uchibayashi T, Yamamoto H, Kunimi K, et al. Radiofrequency capacitive hyperthermia combined with irradiation of chemotherapy for patients with invasive bladder cancers. Int Urol Nephrol. 1995;27:735–741.
  • You QS, Wang RZ, Suen GQ, et al. Combination preoperative radiation and endocavitary hyperthermia for rectal cancer: long-term results of 44 patients. Int J Hyperth. 1993;9:19–24.
  • Fuwa N, Morita K, Kimura C, et al. Clinical experience of 8MHz RF hyperthermia with radiotherapy of cancer of the uterine cervix. Gan No Rinsho. 1987;33:799–806.
  • Overgaard J. Hyperthermia as an adjuvant to radiotherapy. Review of the randomized multicenter studies of the European society for hyperthermic oncology. Strahlenther Onkol. 1987;163:453.
  • Harima Y, Nagata K, Harima K, et al. A randomized clinical trial of radiation therapy versus thermoradiotherapy in stage IIIB cervical carcinoma. 2001. Int J Hyperthermia. 2009;25:338–343.
  • Hornback NB, Shupe RE, Shidnia H, et al. Advanced stage IIIB cancer of the cervix treatment by hyperthermia and radiation. Gynecol Oncol. 1986;23:160–167.
  • Hurwitz MD, Hansen JL, Prokopios-Davos S, et al. Hyperthermia combined with radiation for the treatment of locally advanced prostate cancer. Cancer. 2011;117:510–516.
  • Enholm JK, Köhler MO, Quesson B, et al. Improved volumetric MR-HIFU ablation by robust binary feedback control. IEEE Trans Biomed Eng. 2010;57:103–113.
  • Chu W, Staruch RM, Pichardo S, et al. Magnetic resonance-guided high-intensity focused ultrasound hyperthermia for recurrent rectal cancer: MR thermometry evaluation and preclinical validation. Int J Radiat Oncol Biol Phys. 2016;95:1259–1267.
  • Tillander M, Hokland S, Koskela J, et al. High intensity focused ultrasound induced in vivo large volume hyperthermia under 3D MRI temperature control. Med Phys. 2016;43:1539.
  • Schooneveldt G, Bakker A, Balidemaj E, et al. Thermal dosimetry for bladder hyperthermia treatment. An overview. Int J Hyperth. 2016;32:417–433.
  • Kothapalli S, Partanen A, Zhu L, et al. A convenient, reliable, and fast acoustic pressure field measurement method for magnetic resonance-guided high-intensity focused ultrasound systems with phased array transducers. J Ther Ultrasound. 2018;6:1–8.
  • V. V. N. Kothapalli S, Altman MB, Zhu L, et al. Evaluation and selection of anatomic sites for magnetic resonance imaging-guided mild hyperthermia therapy: a healthy volunteer study. Int J Hyperth. 2018;34:1381–1389.
  • Ishihara Y, Calderon A, Watanabe H, et al. A precise and fast temperature mapping using water proton chemical shift. Magn Reson Med. 1995;34:814–823.
  • Bing C, Staruch RM, Tillander M, et al. Drift correction for accurate PRF-shift MR thermometry during mild hyperthermia treatments with MR-HIFU. Int J Hyperth. 2016;32:673–687.
  • Civale J, Rivens I, Shaw A, et al. Focused ultrasound transducer spatial peak intensity estimation: a comparison of methods. Phys Med Biol. 2018;63:055015.
  • Delchar TA. Physics in medical diagnosis. Vol. 11. Berlin (Germany): Springer; 1997. p. 185–186.
  • Yarmolenko PS, Moon EJ, Landon C, et al. Thresholds for thermal damage to normal tissues: an update. Int J Hyperth. 2011;27:320–343.
  • Jones EL, Oleson JR, Prosnitz LR, et al. Randomized trial of hyperthermia and radiation for superficial tumors. J Clin Oncol. 2005;23:3079–3085.
  • Craciunescu OI, Stauffer PR, Soher BJ, et al. Accuracy of real time noninvasive temperature measurements using magnetic resonance thermal imaging in patients treated for high grade extremity soft tissue sarcomas. Med Phys. 2009;36:4848–4858.
  • Winter L, Oberacker E, Paul K, et al. Magnetic resonance thermometry: methodology, pitfalls and practical solutions. Int J Hyperth. 2016;32:63–75.
  • Lam MK, Huisman M, Nijenhuis RJ, et al. Quality of MR thermometry during palliative MR-guided high-intensity focused ultrasound (MR-HIFU) treatment of bone metastases. J Ther Ultrasound. 2015;3:5.
  • Chu W, Staruch R, Pichardo S, et al. MR-HIFU mild hyperthermia for locally recurrent rectal cancer: temperature mapping and heating quality in first patient. Proceedings of the 12th International congress of hyperthermic oncology; New Orleans, LA. 2016. p. 144.
  • Ohguri T, Harima Y, Imada H, et al. Relationships between thermal dose parameters and the efficacy of definitive chemoradiotherapy plus regional hyperthermia in the treatment of locally advanced cervical cancer: data from a multicentre randomised clinical trial. Int J Hyperth. 2018;34:461–468.
  • Franckena M, Fatehi D, Bruijne M. D, et al. Hyperthermia dose-effect relationship in 420 patients with cervical cancer treated with combined radiotherapy and hyperthermia. Eur J Cancer. 2009;45:1969–1978.
  • Craciunescu OI, Blackwell KL, Jones EL, et al. DCE-MRI parameters have potential to predict response of locally advanced breast cancer patients to neoadjuvant chemotherapy and hyperthermia: a pilot study. Int J Hyperth. 2009;25:405–415.
  • Trefná HD, Crezee H, Schmidt M, et al. Quality assurance guidelines for superficial hyperthermia clinical trials: I. Clinical requirements. Int J Hyperth. 2017;33:471–482.
  • Daub CA, Sepmeyer JA, Hathuc V, et al. Endometrial ablation: normal imaging appearance and delayed complications. Am J Roentgenol. 2015;205:W451–W460.
  • Fan TY, Zhang L, Chen W, et al. Feasibility of MRI-guided high intensity focused ultrasound treatment for adenomyosis. Eur J Radiol. 2012;81:3624–3630.
  • Zhang W, He M, Huang G, et al. A comparison of ultrasound-guided high intensity focused ultrasound for the treatment of uterine fibroids in patients with an anteverted uterus and a retroverted uterus. Int J Hyperth. 2016;32:623–629.
  • Gong C, Yang B, Shi Y, et al. Factors influencing the ablative efficiency of high intensity focused ultrasound (HIFU) treatment for adenomyosis: a retrospective study. Int J Hyperth. 2016;32:496–503.
  • Emami B, Nussbaum GH, Hahn N, et al. Histopathological study on the effects of hyperthermia on microvasculature. Int J Radiat Oncol. 1981;7:343–348.
  • Song CW. Effect of hyperthermia on vascular functions of normal tissues and experimental tumors. J Natl Cancer Inst. 1978;60:711–713.
  • Brady LW, Heilmann HP, Seegenschmiedt MH, et al. Molecular and cellular mechanisms of hyperthermia. In: Seegenschmiedt MH, Fessenden P, Vernon CC, editors. Thermoradiotherapy and thermochemotherapy. Vol. 173. Berlin: Springer; 2012. p. 295–308.
  • Jolesch A, Elmer K, Bendz H, et al. Hsp70, a messenger from hyperthermia for the immune system. Eur J Cell Biol. 2012;91:48–52.
  • Milani V, Noessner E, Ghose S, et al. Heat shock protein 70: role in antigen presentation and immune stimulation. Int J Hyperth. 2002;18:563–575.
  • Payne J, Nair MPN, Ambrus JL, et al. Mild hyperthermia modulates biological activities of interferons. Int J Hyperth. 2000;16:492–507.
  • Calderwood SK, Theriault JR, Gong J. How is the immune response affected by hyperthermia and heat shock proteins? Int J Hyperth. 2005;21:713–716.
  • Torigoe T, Tamura Y, Sato N. Heat shock proteins and immunity: application of hyperthermia for immunomodulation. Int J Hyperth. 2009;25:610–616.
  • Zhang H, Mehta K, Cohen P, et al. Hyperthermia on immune regulation: a temperature’s story. Cancer Lett. 2008;271:191–204.