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Articles

Percutaneous image-guided ablation of bone metastases: local tumor control in oligometastatic patients

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Pages 493-499 | Received 30 May 2018, Accepted 01 Aug 2018, Published online: 11 Oct 2018

References

  • Hage WD, Aboulafia AJ, Aboulafia DM. Incidence, location, and diagnostic evaluation of metastatic bone disease. Orthop Clin North Am. 2000;31:515–528.
  • Kelly M, Lee M, Clarkson P, et al. Metastatic disease of the long bones: a review of the health care burden in a major trauma centre. Can J Surg. 2012;55:95–98.
  • Saad F, Lipton A, Cook R, et al. Pathologic fractures correlate with reduced survival in patients with malignant bone disease. Cancer. 2007;110:1860–1867.
  • Cazzato RL, Bonichon F, Buy X, et al. Over ten years of single-institution experience in percutaneous image-guided treatment of bone metastases from differentiated thyroid cancer. Eur J Surg Oncol. 2015;41:1247–1255.
  • Cazzato RL, Buy X, Grasso RF, et al. Interventional Radiologist's perspective on the management of bone metastatic disease. Eur J Surg Oncol. 2015;41:967–974.
  • Gangi A, Buy X. Percutaneous bone tumor management. Semin Intervent Radiol. 2010;27:124–136.
  • Gangi A, Tsoumakidou G, Buy X, et al. Quality improvement guidelines for bone tumour management. Cardiovasc Intervent Radiol. 2010;33:706–713.
  • Barile A, Arrigoni F, Zugaro L, et al. Minimally invasive treatments of painful bone lesions: state of the art. Med Oncol. 2017;34:53
  • Barile A, Arrigoni F, Bruno F, et al. Present role and future perspectives of interventional radiology in the treatment of painful bone lesions. Future Oncol. 2018. doi: 10.2217/fon-2017-0657.
  • Goetz MP, Callstrom MR, Charboneau JW, et al. Percutaneous image-guided radiofrequency ablation of painful metastases involving bone: a multicenter study. JCO. 2004; 22:300–306.
  • Callstrom MR, Dupuy DE, Solomon SB, et al. Percutaneous image-guided cryoablation of painful metastases involving bone: multicenter trial. Cancer. 2013;119:1033–1041.
  • Cazzato RL, Garnon J, Caudrelier J, et al. Percutaneous radiofrequency ablation of painful spinal metastasis: a systematic literature assessment of analgesia and safety. Int J Hyperthermia. 2018;1. doi: 10.1080/02656736.2018.1425918.
  • Cazzato RL, Garnon J, Caudrelier J, et al. Low-power bipolar radiofrequency ablation and vertebral augmentation for the palliative treatment of spinal malignancies. Int J Hyperthermia. 2018;1. doi: 10.1080/02656736.2017.1422557.
  • Deschamps F, Farouil G, Ternes N, et al. Thermal ablation techniques: a curative treatment of bone metastases in selected patients? Eur Radiol. 2014;24:1971–1980.
  • Ma Y, Wallace AN, Waqar SN, et al. Percutaneous image-guided ablation in the treatment of osseous metastases from non-small cell lung cancer. Cardiovasc Intervent Radiol. 2018;41:726–733.
  • Tsoumakidou G, Buy X, Garnon J, et al. Percutaneous thermal ablation: how to protect the surrounding organs. Tech Vasc Interv Radiol. 2011;14:170–176.
  • Cazzato RL, Garnon J, Koch G, et al. Percutaneous bone and spine consolidation in cancer patients: who and how? Poster (awarded Magna cum Laude) session presented at: Education Exhibit 103rd Scientific Assembly and Annual Meeting of the Radiological Society of North America; Nov 26–Dec 1; Chicago, Illinois.
  • Spratt DE, Beeler WH, de Moraes FY, et al. An integrated multidisciplinary algorithm for the management of spinal metastases: an International Spine Oncology Consortium report. Lancet Oncol. 2017;18:e720–e730.
  • Quan GMY, Pointillart V, Palussière J, et al. Multidisciplinary treatment and survival of patients with vertebral metastases from thyroid carcinoma. Thyroid. 2012;22:125–130.
  • Capanna R, Piccioli A, Di Martino A, et al. Management of long bone metastases: recommendations from the Italian Orthopaedic Society bone metastasis study group. Expert Rev Anticancer Ther. 2014;14:1127–1134.
  • Horn SR, Dhillon ES, Poorman GW, et al. Epidemiology and national trends in prevalence and surgical management of metastatic spinal disease. J Clin Neurosci. 2018;53:183–187.
  • Tseng CL, Eppinga W, Charest-Morin R, et al. Spine stereotactic body radiotherapy: indications, outcomes, and points of caution. Global Spine J. 2017;7:179–197.
  • Husain ZA, Sahgal A, De Salles A, et al. Stereotactic body radiotherapy for de novo spinal metastases: systematic review. J Neurosurg Spine. 2017;27:295–302.
  • Greco C, Pares O, Pimentel N, et al. Spinal metastases: from conventional fractionated radiotherapy to single-dose SBRT. Rep Pract Oncol Radiother. 2015;20:454–463.
  • Wang XS, Rhines LD, Shiu AS, et al. Stereotactic body radiation therapy for management of spinal metastases in patients without spinal cord compression: a phase 1–2 trial. Lancet Oncol. 2012;13:395–402.
  • de Baère T, Aupérin A, Deschamps F, et al. Radiofrequency ablation is a valid treatment option for lung metastases: experience in 566 patients with 1037 metastases. Ann Oncol. 2015;26:987–991.
  • Palussiere J, Lagarde P, Aupérin A, et al. Percutaneous lung thermal ablation of non-surgical clinical N0 non-small cell lung cancer: results of eight years’ experience in 87 patients from two centers. Cardiovasc Intervent Radiol. 2015;38:160–166.
  • Lanza E, Palussiere J, Buy X, et al. Percutaneous image-guided cryoablation of breast cancer: a systematic review. J Vasc Interv Radiol. 2015;26:1652–1657.e1.
  • Psutka SP, Feldman AS, McDougal WS, et al. Long-term oncologic outcomes after radiofrequency ablation for T1 renal cell carcinoma. Eur Urol. 2013;63:486–492.
  • Shady W, Petre EN, Gonen M, et al. Percutaneous radiofrequency ablation of colorectal cancer liver metastases: factors affecting outcomes–a 10-year experience at a single center. Radiology. 2016;278:601–611.
  • Solbiati L, Ahmed M, Cova L, et al. Small liver colorectal metastases treated with percutaneous radiofrequency ablation: local response rate and long-term survival with up to 10-year follow-up. Radiology. 2012;265:958–968.
  • Napoli A, Anzidei M, Marincola BC, et al. Primary pain palliation and local tumor control in bone metastases treated with magnetic resonance-guided focused ultrasound. Invest Radiol. 2013;48:351–358.
  • Huisman M, ter Haar G, Napoli A, et al. International consensus on use of focused ultrasound for painful bone metastases: Current status and future directions. Int J Hyperthermia. 2015;31:251–259.
  • Cazzato RL, Koch G, Buy X, et al. Percutaneous image-guided screw fixation of bone lesions in cancer patients: double-centre analysis of outcomes including local evolution of the treated focus. Cardiovasc Intervent Radiol. 2016;39:1455–1463.
  • Cazzato RL, Garnon J, Tsoumakidou G, et al. Percutaneous image-guided screws meditated osteosynthesis of impeding and pathological/insufficiency fractures of the femoral neck in non-surgical cancer patients. Eur J Radiol. 2017;90:1–5.
  • Anselmetti GC, Manca A, Ortega C, et al. Treatment of extraspinal painful bone metastases with percutaneous cementoplasty: a prospective study of 50 patients. Cardiovasc Intervent Radiol. 2008;31:1165–1173.
  • Tsoumakidou G, Too CW, Koch G, et al. CIRSE guidelines on percutaneous vertebral augmentation. Cardiovasc Intervent Radiol. 2017;40:331–342.
  • Boyce-Fappiano D, Elibe E, Schultz L, et al. Analysis of the factors contributing to vertebral compression fractures after spine stereotactic radiosurgery. Int J Radiat Oncol Biol Phys. 2017;97:236–245.
  • Jawad MS, Fahim DK, Gerszten PC, et al. on behalf of the Elekta Spine Radiosurgery Research Consortium. Vertebral compression fractures after stereotactic body radiation therapy: a large, multi-institutional, multinational evaluation. J Neurosurg Spine. 2016;24:928–936.
  • Cazzato RL, Buy X, Eker O, et al. Percutaneous long bone cementoplasty of the limbs: experience with fifty-one non-surgical patients. Eur Radiol. 2014;24:3059–3068.
  • Cazzato RL, Palussière J, Buy X, et al. Percutaneous long bone cementoplasty for palliation of malignant lesions of the limbs: a systematic review. Cardiovasc Intervent Radiol. 2015;38:1563–1572.