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Research Article

Computer modelling of RF ablation in cortical osteoid osteoma: Assessment of the insulating effect of the reactive zone

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Pages 221-230 | Received 28 Sep 2015, Accepted 21 Dec 2015, Published online: 10 Feb 2016

References

  • Allen SD, Saifuddin A. Imaging of intra-articular osteoid osteoma. Clin Radiol 2003;58;11:845–52
  • Al-Omari MH, Ata KJ, Al-Muqbel KM, Mohaidat ZM, Haddad WH, Rousan LA. Radiofrequency ablation of osteoid osteoma using tissue impedance as a parameter of osteonecrosis. J Med Imaging Radiat Oncol 2012;56:384–9
  • Scott SJ, Salgaonkar V, Prakash P, Burdette EC, Diederich CJ. Interstitial ultrasound ablation of vertebral and paraspinal tumours: Parametric and patient-specific simulations. Int J Hyperthermia 2014;30:228–44
  • Martel J, Bueno A, Nieto-Morales ML, Ortiz EJ. Osteoid osteoma of the spine: CT-guided monopolar radiofrequency ablation. Eur J Radiol 2009;71:564–9
  • Rimondi E, Mavrogenis AF, Rossi G, Ciminari R, Malaguti C, Tranfaglia C, et al. Radiofrequency ablation for non-spinal osteoid osteomas in 557 patients. Eur Radiol 2012;22:181–8
  • Rosenthal D, Callstrom MR. Critical review and state of the art in interventional oncology: Benign and metastatic disease involving bone. Radiology 2012;262:765–80
  • Bitsch RG, Rupp R, Bernd L, Ludwig K. Osteoid osteoma in an ex vivo animal model: Temperature changes in surrounding soft tissue during CT-guided radiofrequency ablation. Radiology 2006;238:107–12
  • Dupuy SN, Hong DE, Oliver R, Goldberg B. Radiofrequency ablation of spinal tumors: Temperature distribution in the spinal canal. Am J Roentgenol 2000;175:1263–6
  • Martel J, Bueno A, Domínguez MP, Llorens P, Quirós J, Delgado C. Percutaneous radiofrequency ablation: Relationship between different probe types and procedure time on length and extent of osteonecrosis in dog long bones. Skeletal Radiol 2008;37:147–52
  • Irastorza R M, Trujillo M, Martel Villagrán J, Berjano E. Radiofrequency ablation of osteoma osteoide: A finite element study. IFMBE Proc 2015;49:858–62
  • Hall SK, Ooi EH, Payne SJ. Cell death, perfusion and electrical parameters are critical in models of hepatic radiofrequency ablation. Int J Hyperthermia 2015;31:538–50
  • Cantwell CP, O’Byrne J, Eustace S. Radiofrequency ablation of osteoid osteoma with cooled probes and impedance-control energy delivery. Am J Roentgenol 2006;186:244–8
  • Rana RS, Wu JS, Eisenberg RL. Periosteal reaction. Am J Roentgenol 2009;193;4:259–72
  • Abraham JP, Sparrow EM. A thermal-ablation bioheat model including liquid-to-vapor phase change, pressure-and necrosis-dependent perfusion, and moisture-dependent properties. Int J Heat Mass Transfer 2007;50:2537–44
  • Schutt DJ, Haemmerich D. Effects of variation in perfusion rates and of perfusion models in computational models of radio frequency tumor ablation. Med Phys 2008;35:3462–70
  • Doss JD. Calculation of electric fields in conductive media. Med Phys 1982;9:566–73
  • Hadjipavlou P, Tzermiadianos AG, Kakavelakis MN, Lander KN. Percutaneous core excision and radiofrequency thermo-coagulation for the ablation of osteoid osteoma of the spine. Eur Spine J 2009;18:345–51
  • Lindner K, Ozaki NJ, Roedl T, Gosheger R, Winkelmann G, Wörtler W. Percutaneous radiofrequency ablation in osteoid osteoma. J Bone Joint Surg Br 2001;83:391–6
  • Pinto WR, Taminiau CH, Vanderschueren AHM, Hogendoorn GM, Bloem PCW, Obermann JL. Perspective: Technical considerations in CT-guided radiofrequency thermal ablation of osteoid osteoma: Tricks of the trade. Am J Roentgenol 2002;179:1633–42
  • Rybak LD, Gangi A, Buy X, La Rocca Vieira R, Wittig J. Thermal ablation of spinal osteoid osteomas close to neural elements: Technical considerations. Am J Roentgenol 2010;195:293–8
  • Haemmerich D, Webster JG. Automatic control of finite element models for temperature-controlled radiofrequency ablation. Biomed Eng Online 2005;4:42
  • Hasgall PA, Di Gennaro F, Baumgartner C, Neufeld E, Gosselin MC, Payne D, et al. IT’IS database for thermal and electromagnetic parameters of biological tissues, Version 2.6. Available at www.itis.ethz.ch/database/ (acessed 13 January 2015)
  • Tungjitkusolmun S, Staelin T, Haemmerich D, Tsai JZ, Cao H, Webster JG, et al. Three-dimensional finite-element analyses for radio-frequency hepatic tumor ablation. IEEE Trans Biomed Eng 2002;49:3–9
  • Haemmerich D, Wood BJ. Hepatic radiofrequency ablation at low frequencies preferentially heats tumour tissue. Int J Hyperthermia 2006;22:563–74
  • Pätz T, Kröger T, Preusser T. Simulation of radiofrequency ablation including water evaporation. IFMBE Proc 2009;25:1287–90
  • Rossmanna C, Haemmerich D. Review of temperature dependence of thermal properties, dielectric properties, and perfusion of biological tissues at hyperthermic and ablation temperatures. Crit Rev Biomed Eng 2014;42:467–92
  • Valvano JW, Cochran JR, Diller KR. Thermal conductivity and diffusivity of biomaterials measured with self-heated thermistors. Int J Thermophys 1985;6:301–11
  • Surowiec AJ, Stuchly SS, Barr JR, Swarup A. Dielectric properties of breast carcinoma and the surrounding tissues. IEEE Trans Biomed Eng 1988;35:257–63
  • Klein MJ, Parisien MV, Schneider-Stock R. Osteoid osteoma. In: Fleetcher CDM, Unni KK, Mertens F, Pathology and Genetics of Tumours of Soft Tissue and Bone, World Health Organization Classification of Tumours. Lyon: IARC Press, 2002, pp. 260–61
  • Mcintosh RL, Anderson V. A comprehensive tissue properties database provided for the thermal assessment of a human at rest. Biophys Rev Lett 2010;5:129–51
  • Song CW, Choi IB, Nah BS, Sahu SK, Osborn JL. Microvasculature and perfusion in normal tissues and tumors. In: Seegenschmiedt MH, Fessenden P, Vernon CC, Thermoradiotherapy and Thermochemotherapy, Medical Radiology. Berlin: Springer, 1995, pp. 139–56
  • Sierpowska J, Hakulinen MA, Day JS, Weinans H, Jurvelin JS, Lappalainen R. Prediction of mechanical properties of human trabecular bone by electrical measurements. Physiol Meas 2005;26:S119–31
  • Motamedi D, Learch TJ, Ishimitsu DN, Motamedi K, Katz MD, Brien EW, Menendez L. Thermal ablation of osteoid osteoma: Overview and step-by-step guide. Radiographics 2009;29:2127–41

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