626
Views
16
CrossRef citations to date
0
Altmetric
Research Article

Approaches for modelling interstitial ultrasound ablation of tumours within or adjacent to bone: Theoretical and experimental evaluations

, , , , , , , & show all
Pages 629-642 | Received 06 Jun 2013, Accepted 02 Sep 2013, Published online: 09 Oct 2013

References

  • Coleman R. Metastatic bone disease: Clinical features, pathophysiology and treatment strategies. Cancer Treat Rev 2001;27:165–76
  • Mundy GR. Metastasis to bone: Causes, consequences and therapeutic opportunities. Nat Rev Cancer 2002;2:584–93
  • SEER Cancer Statistics Review, 1975–2009 (Vintage 2009 populations). In: Howlander N, Noone AM, Krapcho M, Neyman N, Aminou R, Altekruse SF, et al., eds. Bethesda, MD: National Cancer Institute, 2012
  • Klimo P Jr, Schmidt MH. Surgical management of spinal metastases. Oncologist 2004;9:188–96
  • Callstrom MR, Charboneau JW, Goetz MP, Rubin J, Atwell TD, Farrell MA, et al. Image-guided ablation of painful metastatic bone tumors: A new and effective approach to a difficult problem. Skeletal Radiol 2006;35:1–15
  • Georgy BA. Metastatic spinal lesions: State-of-the-art treatment options and future trends. Am J Neuroradiol 2008;29:1605–11
  • Healey JH, Brown HK. Complications of bone metastases. Cancer 2000;88:2940–51
  • Schwab JH, Springfield DS, Raskin KA, Mankin HJ, Hornicek FJ. What’s new in primary bone tumors. J Bone Joint Surg Am 2012;94:1913–9
  • 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
  • Pinto CH, Taminiau AHM, Vanderschueren1 GM, Hogendoorn PCW, Bloem JL, Obermann WR. Technical considerations in CT-guided radiofrequency thermal ablation of osteoid osteoma: Tricks of the trade. Am J Roentgenol 2002;179:1633–42
  • Tins B, Cassar-Pullicino V, McCall I, Cool P, Williams D, Mangham D. Radiofrequency ablation of chondroblastoma using a multi-tined expandable electrode system: Initial results. Eur Radiol 2006;16:804–10
  • Schaefer O, Lohrmann C, Markmiller M, Uhrmeister P, Langer M. Combined treatment of a spinal metastasis with radiofrequency heat ablation and vertebroplasty. Am J Roentgenol 2003;180:1075–7
  • Nakatsuka A, Yamakado K, Maeda M, Yasuda M, Akeboshi M, Takaki H, et al. Radiofrequency ablation combined with bone cement injection for the treatment of bone malignancies. J Vasc Interv Radiol 2004;15:707–12
  • Liberman B, Gianfelice D, Inbar Y, Beck A, Rabin T, Shabshin N, et al. Pain palliation in patients with bone metastases using MR-guided focused ultrasound surgery: A multicenter study. Ann Surg Oncol 2009;16:140–6
  • Catane R, Beck A, Inbar Y, Rabin R, Shabshin N, Hengst S, et al. MR-guided focused ultrasound surgery (MRgFUS) for the palliation of pain in patients with bone metastases – Preliminary clinical experience. Ann Oncol 2007;18:163–7
  • Gianfelice D, Gupta C, Kucharczyk W, Bret P, Havill D, Clemons M. Palliative treatment of painful bone metastases with MR imaging-guided focused ultrasound. Radiology 2008;249:355–63
  • Simon CJ, Dupuy DE, Mayo-Smith WW. Microwave ablation: Principles and applications. Radiographics 2005;25:S69–83
  • Gangi A, Dietemann J, Gasser B, Mortazavi R, Brunner P, Mourou M, et al. Interstitial laser photocoagulation of osteoid osteomas with use of CT guidance. Radiology 1997;203:843–8
  • Callstrom MR, Atwell TD, Charboneau JW, Farrell MA, Goetz MP, Rubin J, et al. Painful metastases involving bone: Percutaneous image-guided cryoablation – Prospective trial interim analysis. Radiology 2006;241:572–80
  • Diederich CJ. Ultrasound applicators with integrated catheter-cooling for interstitial hyperthermia: Theory and preliminary experiments. Int J Hyperthermia 1996;12:279–97
  • Nau WH, Diederich CJ, Burdette EC. Evaluation of multielement catheter-cooled interstitial ultrasound applicators for high-temperature thermal therapy. Med Phys 2001;28:1525–34
  • Lafon C, Melodelima D, Salomir R, Chapelon JY. Interstitial devices for minimally invasive thermal ablation by high-intensity ultrasound. Int J Hyperthermia 2007;23:153–63
  • Deardorff DL, Diederich CJ, Nau WH. Control of interstitial thermal coagulation: Comparative evaluation of microwave and ultrasound applicators. Med Phys 2000;28:104–17
  • Nau WH, Diederich CJ, Stauffer PR. Directional power deposition from direct-coupled and catheter-cooled interstitial ultrasound applicators. Int J Hyperthermia 2000;16:129–44
  • Fujii M, Sakamoto K, Toda Y, Negishi A, Kanai H. Study of the cause of the temperature rise at the muscle–bone interface during ultrasound hyperthermia. IEEE Trans Biomed Eng 1999;46:494–504
  • Chan AK, Sigelmann RA, Guy AW. Calculations of therapeutic heat generated by ultrasound in fat–muscle–bone layers. IEEE Trans Biomed Eng 1974;BME-21:280–4
  • Duck F. Physical properties of tissue: A comprehensive reference book. London: Academic Press, 1990
  • Hynynen K, DeYoung D. Temperature elevation at muscle–bone interface during scanned, focused ultrasound hyperthermia. Int J Hyperthermia 1988;4:267–79
  • Bossy E, Padilla F, Peyrin F, Laugier P. Three-dimensional simulation of ultrasound propagation through trabecular bone structures measured by synchrotron microtomography. Phys Med Biol 2005;50:5545–56
  • Kaufman JJ, Luo G, Siffert RS. Ultrasound simulation in bone. IEEE Trans Ultrason, Ferroelectr, Freq Control 2008;55:1205–18
  • Behnia S, Jafari A, Ghalichi F, Bonabi A. Finite-element simulation of ultrasound brain surgery: Effects of frequency, focal pressure, and scanning path in bone-heating reduction. Cent Eur J Phys 2008;6:211–22
  • Burtnyk M, Chopra R, Bronskill M. Simulation study on the heating of the surrounding anatomy during transurethral ultrasound prostate therapy: A 3D theoretical analysis of patient safety. Med Phys 2010;37:2862–75
  • Wootton JH, Ross AB, Diederich CJ. Prostate thermal therapy with high intensity transurethral ultrasound: The impact of pelvic bone heating on treatment delivery. Int J Hyperthermia 2007;23:609–22
  • Moros EG, Straube WL, Myerson RJ, Fan X. The impact of ultrasonic parameters on chest wall hyperthermia. Int J Hyperthermia 2000;16:523–38
  • Lin W-L, Liauh C-T, Chen Y-Y, Liu H-C, Shieh M-J. Theoretical study of temperature elevation at muscle/bone interface during ultrasound hyperthermia. Med Phys 2000;27:1131–40
  • Sun J, Hynynen K. Focusing of therapeutic ultrasound through a human skull: A numerical study. J Acoust Soc Am 1998;104:1705–15
  • Moros EG, Fan X, Straube WL. Ultrasound power deposition model for the chest wall. Ultrasound Med Biol 1999;25:1275–87
  • Wu J, Du G. Temperature elevation generated by a focused Gaussian ultrasonic beam at a tissue–bone interface. J Acoust Soc Am 1990;87:2748–55
  • Lu B-Y, Yang R-S, Lin W-L, Cheng K-S, Wang C-Y, Kuo T-S. Theoretical study of convergent ultrasound hyperthermia for treating bone tumors. Med Eng Phys 2000;22:253–63
  • Pennes HH. Analysis of tissue and arterial blood temperatures in the resting human forearm. J Appl Physiol 1948;1:93–122
  • Prakash P, Diederich CJ. Considerations for theoretical modelling of thermal ablation with catheter-based ultrasonic sources: Implications for treatment planning, monitoring and control. Int J Hyperthermia 2012;28:69–86
  • Sapareto SA, Dewey WC. Thermal dose determination in cancer therapy. Int J Radiat Oncol Biol Phys 1984;10:787–800
  • Diederich CJ, Hynynen K. Induction of hyperthermia using an intracavitary multielement ultrasonic applicator. IEEE Trans Biomed Eng 1989;36:432–8
  • Tyréus PD, Diederich CJ. Theoretical model of internally cooled interstitial ultrasound applicators for thermal therapy. Phys Med Biol 2002;47:1073–89
  • Chen X, Diederich CJ, Wootton JH, Pouliot J, Hsu I-C. Optimisation-based thermal treatment planning for catheter-based ultrasound hyperthermia. Int J Hyperthermia 2010;26:39–55
  • Wootton JH, Prakash P, Hsu I-CJ, Diederich CJ. Implant strategies for endocervical and interstitial ultrasound hyperthermia adjunct to HDR brachytherapy for the treatment of cervical cancer. Phys Med Biol 2011;56:3967
  • Prakash P, Salgaonkar VA, Clif Burdette E, Diederich CJ. Multiple applicator hepatic ablation with interstitial ultrasound devices: Theoretical and experimental investigation. Med Phys 2012;39:7338–49
  • Cheeke JDN. Fundamentals and Applications of Ultrasonic Waves. Boca Raton, FL: CRC Press, 2012
  • Riekkinen O, Hakulinen M, Timonen M, Töyräs J, Jurvelin J. Influence of overlying soft tissues on trabecular bone acoustic measurement at various ultrasound frequencies. Ultrasound Med Biol 2006;32:1073–83
  • Hakulinen MA, Day JS, Töyräs J, Timonen M, Kröger H, Weinans H, et al. Prediction of density and mechanical properties of human trabecular bone in vitro by using ultrasound transmission and backscattering measurements at 0.2–6.7 MHz frequency range. Phys Med Biol 2005;50:1629–42
  • Vaupel P, Kallinowski F, Okunieff P. Blood flow, oxygen and nutrient supply, and metabolic microenvironment of human tumors: A review. Cancer Res 1989;49:6449–65
  • Gerweck LE. Hyperthermia in cancer therapy: The biological basis and unresolved questions. Cancer Res 1985;45:3408–14
  • Dewey WC. Arrhenius relationships from the molecule and cell to the clinic. Int J Hyperthermia 1994;10:457–83
  • Kinsey AM, Diederich CJ, Rieke V, Nau WH, Butts Pauly K, Bouley D, et al. Transurethral ultrasound applicators with dynamic multi-sector control for prostate thermal therapy: In vivo evaluation under MR guidance. Med Phys 2008;35:2081–93
  • King RL, Liu YL, Maruvada S, Herman BA, Wear KA, Harris GR. Development and characterization of a tissue-mimicking material for high intensity focused ultrasound. IEEE Trans Ultrason, Ferroelectr, Freq Control 2011;58:1397–405
  • Rieke V, Butts Pauly K. MR thermometry. J Magn Reson Imaging 2008;27:376–90
  • Roujol S, Ries M, Quesson B, Moonen C, Denis de Senneville B. Real‐time MR‐thermometry and dosimetry for interventional guidance on abdominal organs. Magn Reson Med 2010;63:1080–7
  • Buccella C, De Santis V, Feliziani M. Prediction of temperature increase in human eyes due to RF sources. IEEE Trans Electromagn Compat 2007;49:825–33
  • Wang J, Fujiwara O. FDTD computation of temperature rise in the human head for portable telephones. IEEE Trans Microw Theory Techn 1999;47:1528–34
  • Brace CL, Diaz TA, Hinshaw JL, Lee FT. Tissue contraction caused by radiofrequency and microwave ablation: A laboratory study in liver and lung. J Vasc Interv Radiol 2010;21:1280–6
  • Dickinson RJ. Thermal conduction errors of manganin-constantan thermocouple arrays. Phys Med Biol 1985;30:445
  • Moros EG, Novak P, Straube WL, Kolluri P, Yablonskiy DA, Myerson RJ. Thermal contribution of compact bone to intervening tissue-like media exposed to planar ultrasound. Phys Med Biol 2004;49:869–86
  • Damianou C, Sanghvi N, Fry F. Dependence of ultrasonic attenuation and absorption in dog soft tissues on temperature and thermal dose. J Acoust Soc Am 1997;102:628–34
  • Werner J, Buse M. Temperature profiles with respect to inhomogeneity and geometry of the human body. J Appl Physiol 1988;65:1110–8
  • Williams LR, Leggett RW. Reference values for resting blood flow to organs of man. Clin Phys Physiol Meas 1989;10:187–217
  • Calttenburg R, Cohen J, Conner S, Cook N. Thermal properties of cancellous bone. J Biomed Mater Res 1975;9:169–82
  • McCarthy I. The physiology of bone blood flow: A review. J Bone Joint Surg Am 2006;88:4–9
  • Wu J, Cubberley F. Measurement of velocity and attenuation of shear waves in bovine compact bone using ultrasonic spectroscopy. Ultrasound Med Biol 1997;23:129–34

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.