Interventional Radiology in the Management of Metastases and Bone Tumors

Ferruccio Sgalambro, Luigi Zugaro, Federico Bruno, Pierpaolo Palumbo, Nicola Salducca, Carmine Zoccali, Antonio Barile, Carlo Masciocchi, Francesco Arrigoni, Ferruccio Sgalambro, Luigi Zugaro, Federico Bruno, Pierpaolo Palumbo, Nicola Salducca, Carmine Zoccali, Antonio Barile, Carlo Masciocchi, Francesco Arrigoni

Abstract

Interventional Radiology (IR) has experienced an exponential growth in recent years. Technological advances of the last decades have made it possible to use new treatments on a larger scale, with good results in terms of safety and effectiveness. In musculoskeletal field, painful bone metastases are the most common target of IR palliative treatments; however, in selected cases of bone metastases, IR may play a curative role, also in combination with other techniques (surgery, radiation and oncology therapies, etc.). Primary malignant bone tumors are extremely rare compared with secondary bone lesions: osteosarcoma, Ewing sarcoma, and chondrosarcoma are the most common; however, the role of interventional radiology in this fiels is marginal. In this review, the main techniques used in interventional radiology were examined, and advantages and limitations illustrated. Techniques of ablation (Radiofrequency, Microwaves, Cryoablation as also magnetic resonance imaging-guided high-intensity focused ultrasound), embolization, and Cementoplasty will be described. The techniques of ablation work by destruction of pathological tissue by thermal energy (by an increase of temperature up to 90 °C with the exception of the Cryoablation that works by freezing the tissue up to -40 °C). Embolization creates an ischemic necrosis by the occlusion of the arterial vessels that feed the tumor. Finally, cementoplasty has the aim of strengthening bone segment weakened by the growth of pathological tissue through the injection of cement. The results of the treatments performed so far were also assessed and presented focused the attention on the management of bone metastasis.

Keywords: bone metastases; electrochemotherapy; interventional radiology; magnetic resonance imaging-guided high-intensity focused ultrasound; thermal ablation; tumour embolization.

Conflict of interest statement

The authors declare no conflict of interest.

Figures

Figure 1
Figure 1
Flowchart summarizing the selection of studies in the literature.

References

    1. Cazzato R.L., Arrigoni F., Boatta E., Bruno F., Chiang J.B., Garnon J., Zugaro L., Giordano A.V., Carducci S., Varrassi M., et al. Percutaneous management of bone metastases: State of the art, interventional strategies and joint position statement of the Italian College of MSK Radiology (ICoMSKR) and the Italian College of Interventional Radiology (ICIR) Radiol. Med. 2019;124:34–49. doi: 10.1007/s11547-018-0938-8.
    1. Shimohira M., Nagai K., Hashizume T., Nakagawa M., Ozawa Y., Sakurai K., Matsushita Y., Yamada S., Otsuka T., Shibamoto Y. Preoperative transarterial embolization using gelatin sponge for hypervascular bone and soft tissue tumors in the pelvis or extremities. Acta Radiol. 2016;57:457–462. doi: 10.1177/0284185115590435.
    1. Kickuth R., Waldherr C., Hoppe H., Bonel H.M., Ludwig K., Beck M., Triller J. Interventional Management of Hypervascular Osseous Metastasis: Role of Embolotherapy Before Orthopedic Tumor Resection and Bone Stabilization. AJR Am. J. Roentgenol. 2008;191:W240–W247. doi: 10.2214/AJR.07.4037.
    1. Kato S., Hozumi T., Takaki Y., Yamakawa K., Goto T., Kondo T. Optimal Schedule of Preoperative Embolization for Spinal Metastasis Surgery. Spine. 2013;38:1964–1969. doi: 10.1097/BRS.0b013e3182a46576.
    1. Rossi G., Mavrogenis A.F., Rimondi E., Braccaioli L., Calabrò T., Ruggieri P. Selective Embolization with N-butyl Cyanoacrylate for Metastatic Bone Disease. J. Vasc. Interv. Radiol. 2011;22:462–470. doi: 10.1016/j.jvir.2010.12.023.
    1. Chen-Xu S., Martel-Villagrán J., Bueno-Horcajadas Á. Percutaneous management of bone metastases: State of the art. Radiología. 2021;63:345–357. doi: 10.1016/j.rx.2021.02.006.
    1. Dalili D., Isaac A., Bazzocchi A., Åström G., Bergh J., Lalam R., Weber M.-A., Fritz J., Mansour R. Interventional Techniques for Bone and Musculoskeletal Soft Tissue Tumors: Current Practices and Future Directions—Part I. Ablation. Semin. Musculoskelet. Radiol. 2020;24:692–709. doi: 10.1055/s-0040-1719103.
    1. Barile A., Arrigoni F., Bruno F., Palumbo P., Floridi C., Cazzato R.L., Reginelli A., Zappia M., Brunese L., Zugaro L., et al. Present role and future perspectives of interventional radiology in the treatment of painful bone lesions. Future Oncol. 2018;14:2945–2955. doi: 10.2217/fon-2017-0657.
    1. Callstrom M.R., Charboneau J.W. Image-Guided Palliation of Painful Metastases Using Percutaneous Ablation. Tech. Vasc. Interv. Radiol. 2007;10:120–131. doi: 10.1053/j.tvir.2007.09.003.
    1. Rosenthal D., Callstrom M.R. Critical Review and State of the Art in Interventional Oncology: Benign and Metastatic Disease Involving Bone. Radiology. 2012;262:765–780. doi: 10.1148/radiol.11101384.
    1. Arrigoni F., De Cataldo C., Bruno F., Palumbo P., Zugaro L., Di Staso M., Gravina G.L., Barile A., Masciocchi C. Ablation, consolidation and radiotherapy for the management of metastatic lesions of the spine: Impact on the quality of life in a mid-term clinical and diagnostic follow-up in a pilot study. Med. Oncol. 2020;37:53. doi: 10.1007/s12032-020-01378-6.
    1. Di Staso M., Zugaro L., Gravina G.L., Bonfili P., Marampon F., Di Nicola L., Conchiglia A., Ventura L., Franzese P., Gallucci M., et al. A feasibility study of percutaneous radiofrequency ablation followed by radiotherapy in the management of painful osteolytic bone metastases. Eur. Radiol. 2011;21:2004–2010. doi: 10.1007/s00330-011-2133-3.
    1. Wallace A., Tomasian A., Vaswani D., Vyhmeister R., Chang R., Jennings J. Radiographic Local Control of Spinal Metastases with Percutaneous Radiofrequency Ablation and Vertebral Augmentation. Am. J. Neuroradiol. 2016;37:759–765. doi: 10.3174/ajnr.A4595.
    1. Levy J., Hopkins T., Morris J., Tran N.D., David E., Massari F., Farid H., Vogel A., O’Connell W.G., Sunenshine P., et al. Radiofrequency Ablation for the Palliative Treatment of Bone Metastases: Outcomes from the Multicenter OsteoCool Tumor Ablation Post-Market Study (OPuS One Study) in 100 Patients. J. Vasc. Interv. Radiol. 2020;31:1745–1752. doi: 10.1016/j.jvir.2020.07.014.
    1. Gardner C.S., Ensor J.E., Ahrar K., Huang S.Y., Sabir S.H., Tannir N.M., Lewis V.O., Tam A.L. Cryoablation of Bone Metastases from Renal Cell Carcinoma for Local Tumor Control. J. Bone Jt. Surg. Am. 2017;99:1916–1926. doi: 10.2106/JBJS.16.01182.
    1. Wang F., Gu J., Xu C., Li G., Lv P. The combination of radiofrequency ablation and vertebroplasty shows advantages over single vertebroplasty in treating vertebral neoplastic lesions. Skelet. Radiol. 2022;51:565–571. doi: 10.1007/s00256-021-03788-7.
    1. Pusceddu C., Dessì G., Melis L., Fancellu A., Ruggiu G., Sailis P., Congia S., Derudas D., Cau R., Senis I., et al. Combined Microwave Ablation and Osteosynthesis for Long Bone Metastases. Medicina. 2021;57:825. doi: 10.3390/medicina57080825.
    1. Jiao D., Yao Y., Li Z., Ren J., Han X. Simultaneous C-arm Computed Tomography-Guided Microwave Ablation and Cementoplasty in Patients with Painful Osteolytic Bone Metastases: A Single-center Experience. Acad. Radiol. 2022;29:42–50. doi: 10.1016/j.acra.2020.09.026.
    1. Caracciolo J.T., Letson G.D. Radiologic Approach to Bone and Soft Tissue Sarcomas. Surg. Clin. N. Am. 2016;96:963–976. doi: 10.1016/j.suc.2016.05.007.
    1. Dea N., Gokaslan Z., Choi D., Fisher C. Spine Oncology–Primary Spine Tumors. Neurosurgery. 2017;80:S124–S130. doi: 10.1093/neuros/nyw064.
    1. Chen W., Zhu H., Zhang L., Li K., Su H., Jin C., Zhou K., Bai J., Wu F., Wang Z. Primary Bone Malignancy: Effective Treatment with High-Intensity Focused Ultrasound Ablation. Radiology. 2010;255:967–978. doi: 10.1148/radiol.10090374.
    1. Barton P.P., Waneck R.E., Karnel F.J., Ritschl P., Kramer J., Lechner G.L. Embolization of Bone Metastases. J. Vasc. Interv. Radiol. 1996;7:81–88. doi: 10.1016/S1051-0443(96)70738-8.
    1. Rybak L.D. Fire and Ice: Thermal Ablation of Musculoskeletal Tumors. Radiol. Clin. N. Am. 2009;47:455–469. doi: 10.1016/j.rcl.2008.12.006.
    1. Tomasian A., Wallace A., Jennings J. Benign Spine Lesions: Advances in Techniques for Minimally Invasive Percutaneous Treatment. AJNR Am. J. Neuroradiol. 2017;38:852–861. doi: 10.3174/ajnr.A5084.
    1. Dupuy D.E., Liu D., Rn D.H., Hanna L., Blume J.D., Ahrar K., Lopez R.R., Safran H., A DiPetrillo T. Percutaneous radiofrequency ablation of painful osseous metastases: A multicenter American College of Radiology Imaging Network trial. Cancer. 2010;116:989–997. doi: 10.1002/cncr.24837.
    1. Zhao W., Wang H., Hu J.-H., Peng Z.-H., Chen J.-Z., Huang J.-Q., Jiang Y.-N., Luo G., Yi G.-F., Shen J., et al. Palliative pain relief and safety of percutaneous radiofrequency ablation combined with cement injection for bone metastasis. Jpn. J. Clin. Oncol. 2018;48:753–759. doi: 10.1093/jjco/hyy090.
    1. Madaelil T.P., Wallace A.N., Jennings J.W. Radiofrequency ablation alone or in combination with cementoplasty for local control and pain palliation of sacral metastases: Preliminary results in 11 patients. Skelet. Radiol. 2016;45:1213–1219. doi: 10.1007/s00256-016-2404-9.
    1. Cazzato R.L., Auloge P., De Marini P., Rousseau C., Chiang J.B., Koch G., Caudrelier J., Rao P., Garnon J., Gangi A. Percutaneous image-guided ablation of bone metastases: Local tumor control in oligometastatic patients. Int. J. Hyperth. 2018;35:493–499. doi: 10.1080/02656736.2018.1508760.
    1. Callstrom M.R., Charboneau J.W., Goetz M.P., Rubin J., Atwell T.D., Farrell M.A., Welch T.J., Maus T.P. Image-guided ablation of painful metastatic bone tumors: A new and effective approach to a difficult problem. Skelet. Radiol. 2006;35:1–15. doi: 10.1007/s00256-005-0003-2.
    1. Barral M., Auperin A., Hakime A., Cartier V., Tacher V., Otmezguine Y., Tselikas L., de Baere T., Deschamps F. Percutaneous Thermal Ablation of Breast Cancer Metastases in Oligometastatic Patients. Cardiovasc. Interv. Radiol. 2016;39:885–893. doi: 10.1007/s00270-016-1301-x.
    1. Simon C.J., Dupuy D.E. Percutaneous Minimally Invasive Therapies in the Treatment of Bone Tumors: Thermal Ablation. Semin. Musculoskelet. Radiol. 2006;10:137–144. doi: 10.1055/s-2006-939031.
    1. Erickson J.K., Rosenthal D.I., Zaleske D.J., Gebhardt M.C., Cates J.M. Primary Treatment of Chondroblastoma with Percutaneous Radio-frequency Heat Ablation: Report of Three Cases. Radiology. 2001;221:463–468. doi: 10.1148/radiol.2212010262.
    1. Munk P.L., Malfair D., Rashid F., Torreggiani W.C. Radiofrequency Ablation of Solitary Eosinophilic Granuloma of Bone. Am. J. Roentgenol. 2008;191:W320. doi: 10.2214/AJR.08.1450.
    1. Kujak J.L., Liu P.T., Johnson G., Callstrom M.R. Early experience with percutaneous cryoablation of extra-abdominal desmoid tumors. Skelet. Radiol. 2010;39:175–182. doi: 10.1007/s00256-009-0801-z.
    1. Janjan N.A., Payne R., Gillis T., Podoloff D., Libshitz H., Lenzi R., Theriault R., Martin C., Yasko A. Presenting Symptoms in Patients Referred to a Multidisciplinary Clinic for Bone Metastases. J. Pain Symptom Manag. 1998;16:171–178. doi: 10.1016/S0885-3924(98)00069-4.
    1. Breckheimer A., Bruners P., Mahnken A. Interventional management of a rare complication in radiofrequency ablation of an osteosclerotic bone metastasis. Rofo. 2010;182:433. doi: 10.1055/s-0029-1245138.
    1. Goetz M.P., Callstrom M.R., Charboneau J.W., Farrell M.A., Maus T.P., Welch T.J., Wong G.Y., Sloan J.A., Novotny P.J., Petersen I.A., et al. Percutaneous Image-Guided Radiofrequency Ablation of Painful Metastases Involving Bone: A Multicenter Study. J. Clin. Oncol. 2004;22:300–306. doi: 10.1200/JCO.2004.03.097.
    1. Mohan H., Nicholson P., Winter D.C., O’Shea D., O’Toole D., Geoghegan J., Maguire D., Hoti E., Traynor O., Cantwell C.P. Radiofrequency Ablation for Neuroendocrine Liver Metastases: A Systematic Review. J. Vasc. Interv. Radiol. 2015;26:935–942.e1. doi: 10.1016/j.jvir.2014.12.009.
    1. Connors J.C., Boike A.M., Rao N., Kingsley J.D. Radiofrequency Ablation for the Treatment of Painful Neuroma. J. Foot Ankle Surg. 2020;59:457–461. doi: 10.1053/j.jfas.2019.09.003.
    1. Brace C.L., Laeseke P.F., Sampson L.A., Frey T.M., van der Weide D.W., Lee F.T. Microwave Ablation with Multiple Simultaneously Powered Small-gauge Triaxial Antennas: Results from an in Vivo Swine Liver Model. Radiology. 2007;244:151–156. doi: 10.1148/radiol.2441052054.
    1. Wright A.S., Sampson L.A., Warner T.F., Mahvi D.M., Lee J.F.T. Radiofrequency versus Microwave Ablation in a Hepatic Porcine Model. Radiology. 2005;236:132–139. doi: 10.1148/radiol.2361031249.
    1. Ringe K.I., Lutat C., Rieder C., Schenk A., Wacker F., Raatschen H.-J. Experimental Evaluation of the Heat Sink Effect in Hepatic Microwave Ablation. PLoS ONE. 2015;10:e0134301. doi: 10.1371/journal.pone.0134301.
    1. Ringe K.I., Panzica M., von Falck C. Thermoablation of Bone Tumors. Rofo. 2016;188:539–550. doi: 10.1055/s-0042-100477.
    1. Hinshaw J.L., Lubner M.G., Ziemlewicz T.J., Lee F.T., Jr., Brace C.L. Percutaneous Tumor Ablation Tools: Microwave, Radiofrequency, or Cryoablation—What Should You Use and Why? Radiographics. 2014;34:1344–1362. doi: 10.1148/rg.345140054.
    1. Carrafiello G., Laganà D., Mangini M., Fontana F., Dionigi G., Boni L., Rovera F., Cuffari S., Fugazzola C. Microwave tumors ablation: Principles, clinical applications and review of preliminary experiences. Int. J. Surg. 2008;6((Suppl. S1)):S65–S69. doi: 10.1016/j.ijsu.2008.12.028.
    1. Thacker P.G., Callstrom M.R., Curry T.B., Mandrekar J.N., Atwell T.D., Goetz M.P., Rubin J. Palliation of Painful Metastatic Disease Involving Bone with Imaging-Guided Treatment: Comparison of Patients’ Immediate Response to Radiofrequency Ablation and Cryoablation. AJR Am. J. Roentgenol. 2011;197:510–515. doi: 10.2214/AJR.10.6029.
    1. Susa M., Kikuta K., Nakayama R., Nishimoto K., Horiuchi K., Oguro S., Inoue M., Yashiro H., Nakatsuka S., Nakamura M., et al. CT guided cryoablation for locally recurrent or metastatic bone and soft tissue tumor: Initial experience. BMC Cancer. 2016;16:798. doi: 10.1186/s12885-016-2852-6.
    1. Bang H.J., Littrup P.J., Currier B.P., Goodrich D.J., Aoun H.D., Klein L.C., Kuo J.C., Heilbrun L.K., Gadgeel S., Goodman A.C. Percutaneous Cryoablation of Metastatic Lesions from Non–Small-Cell Lung Carcinoma: Initial Survival, Local Control, and Cost Observations. J. Vasc. Interv. Radiol. 2012;23:761–769. doi: 10.1016/j.jvir.2012.02.013.
    1. Cazzato R.L., Garnon J., Ramamurthy N., Koch G., Tsoumakidou G., Caudrelier J., Arrigoni F., Zugaro L., Barile A., Masciocchi C., et al. Percutaneous image-guided cryoablation: Current applications and results in the oncologic field. Med. Oncol. 2016;33:140. doi: 10.1007/s12032-016-0848-3.
    1. Gangi A., Buy X. Percutaneous Bone Tumor Management. Semin. Interv. Radiol. 2010;27:124–136. doi: 10.1055/s-0030-1253511.
    1. Bazzocchi A., Napoli A., Sacconi B., Battista G., Guglielmi G., Catalano C., Albisinni U. MRI-guided focused ultrasound surgery in musculoskeletal diseases: The hot topics. Br. J. Radiol. 2016;89:20150358. doi: 10.1259/bjr.20150358.
    1. Napoli A., Anzidei M., Marincola B.C., Brachetti G., Noce V., Boni F., Bertaccini L., Passariello R., Catalano C. MR Imaging–guided Focused Ultrasound for Treatment of Bone Metastasis. Radiographics. 2013;33:1555–1568. doi: 10.1148/rg.336125162.
    1. Masciocchi C., Conchiglia A., Gregori L.M., Arrigoni F., Zugaro L., Barile A. Critical role of HIFU in musculoskeletal interventions. Radiol. Med. 2014;119:470–475. doi: 10.1007/s11547-014-0414-z.
    1. Liberman B., Gianfelice D., Inbar Y., Beck A., Rabin T., Shabshin N., Chander G., Hengst S., Pfeffer R., Chechick A., et al. Pain Palliation in Patients with Bone Metastases Using MR-Guided Focused Ultrasound Surgery: A Multicenter Study. Ann. Surg. Oncol. 2009;16:140–146. doi: 10.1245/s10434-008-0011-2.
    1. Catane R., Beck A., Inbar Y., Rabin T., Shabshin N., Hengst S., Pfeffer R., Hanannel A., Dogadkin O., Liberman B., et al. MR-guided focused ultrasound surgery (MRgFUS) for the palliation of pain in patients with bone metastases—Preliminary clinical experience. Ann. Oncol. Off. J. Eur. Soc. Med. Oncol. 2007;18:163–167. doi: 10.1093/annonc/mdl335.
    1. Masciocchi C., Arrigoni F., La Marra A., Mariani S., Zugaro L., Barile A. Treatment of focal benign lesions of the bone: MRgFUS and RFA. Br. J. Radiol. 2016;89:20150356. doi: 10.1259/bjr.20150356.
    1. Arrigoni F., Barile A., Zugaro L., Splendiani A., di Cesare E., Caranci F., Ierardi A.M., Floridi C., Angileri A.S., Reginelli A., et al. Intra-articular benign bone lesions treated with Magnetic Resonance-guided Focused Ultrasound (MRgFUS): Imaging follow-up and clinical results. Med. Oncol. 2017;34:55. doi: 10.1007/s12032-017-0904-7.
    1. Mercadante S., Fulfaro F. Management of painful bone metastases. Curr. Opin. Oncol. 2007;19:308–314. doi: 10.1097/CCO.0b013e3281214400.
    1. Health Quality Ontario Vertebral Augmentation Involving Vertebroplasty or Kyphoplasty for Cancer-Related Vertebral Compression Fractures: A Systematic Review. [(accessed on 20 March 2022)];Ont. Health Technol. Assess Ser. 2016 16:1–34. Available online:
    1. Masala S., Chiocchi M., Taglieri A., Bindi A., Nezzo M., De Vivo D., Simonetti G. Combined use of percutaneous cryoablation and vertebroplasty with 3D rotational angiograph in treatment of single vertebral metastasis: Comparison with vertebroplasty. Neuroradiology. 2013;55:193–200. doi: 10.1007/s00234-012-1096-7.
    1. van der Linden E., Kroft L.J., Dijkstra P.S. Treatment of Vertebral Tumor with Posterior Wall Defect Using Image-guided Radiofrequency Ablation Combined with Vertebroplasty: Preliminary Results in 12 Patients. J. Vasc. Interv. Radiol. 2007;18:741–747. doi: 10.1016/j.jvir.2007.02.018.
    1. Tsoumakidou G., Too C.W., Koch G., Caudrelier J., Cazzato R.L., Garnon J., Gangi A. CIRSE Guidelines on Percutaneous Vertebral Augmentation. Cardiovasc. Interv. Radiol. 2017;40:331–342. doi: 10.1007/s00270-017-1574-8.
    1. Saliou G., Kocheida E.M., Lehmann P., Depriester C., Paradot G., Le Gars D., Balut A., Deramond H. Percutaneous Vertebroplasty for Pain Management in Malignant Fractures of the Spine with Epidural Involvement. Radiology. 2010;254:882–890. doi: 10.1148/radiol.09081698.
    1. Cazzato R.L., Buy X., Eker O., Fabre T., Palussiere J. Percutaneous long bone cementoplasty of the limbs: Experience with fifty-one non-surgical patients. Eur. Radiol. 2014;24:3059–3068. doi: 10.1007/s00330-014-3357-9.
    1. Le Clair A., Gangi A., Lacaze F., Javier R.-M., Bonidan O., Kempf J.-F., Bonnomet F., Limbach F.-X., Kuntz J.-L., Dietmann J.-L., et al. Rapid chondrolysis after an intra-articular leak of bone cement in treatment of a benign acetabular subchondral cyst: An unusual complication of percutaneous injection of acrylic cement. Skelet. Radiol. 2000;29:275–278. doi: 10.1007/s002560050607.
    1. Kassamali R.H., Ganeshan A., Hoey E.T.D., Crowe P.M., Douis H., Henderson J. Pain management in spinal metastases: The role of percutaneous vertebral augmentation. Ann. Oncol. Off. J. Eur. Soc. Med. Oncol. 2011;22:782–786. doi: 10.1093/annonc/mdq605.
    1. Halpin R.J., Bendok B.R., Sato K.T., Liu J.C., Patel J.D., Rosen S.T. Combination treatment of vertebral metastases using image-guided percutaneous radiofrequency ablation and vertebroplasty: A case report. Surg. Neurol. 2005;63:469–474. doi: 10.1016/j.surneu.2004.04.025.
    1. 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;180:1075–1077. doi: 10.2214/ajr.180.4.1801075.
    1. Barragán-Campos H.M., Vallée J.-N., Lo D., Cormier E., Jean B., Rose M., Astagneau P., Chiras J. Percutaneous Vertebroplasty for Spinal Metastases: Complications. Radiology. 2006;238:354–362. doi: 10.1148/radiol.2381040841.
    1. Cazzato R.L., Koch G., Buy X., Ramamurthy N., Tsoumakidou G., Caudrelier J., Catena V., Garnon J., Palussiere J., Gangi A. Percutaneous Image-Guided Screw Fixation of Bone Lesions in Cancer Patients: Double-Centre Analysis of Outcomes including Local Evolution of the Treated Focus. Cardiovasc. Interv. Radiol. 2016;39:1455–1463. doi: 10.1007/s00270-016-1389-z.
    1. Mirels H. The Classic: Metastatic Disease in Long Bones A Proposed Scoring System for Diagnosing Impending Pathologic Fractures. Clin. Orthop. Relat. Res. 2003;415:S4–S13. doi: 10.1097/01.blo.0000093045.56370.dd.
    1. Cazzato R.L., Garnon J., Tsoumakidou G., Koch G., Palussière J., Gangi A., Buy X. 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. doi: 10.1016/j.ejrad.2017.02.022.
    1. Garnon J., Koch G., Ramamurthy N., Caudrelier J., Rao P., Tsoumakidou G., Cazzato R.L., Gangi A. Percutaneous CT and Fluoroscopy-Guided Screw Fixation of Pathological Fractures in the Shoulder Girdle: Technical Report of 3 Cases. Cardiovasc. Interv. Radiol. 2016;39:1332–1338. doi: 10.1007/s00270-016-1333-2.
    1. Deschamps F., de Baere T., Hakime A., Pearson E., Farouil G., Teriitehau C., Tselikas L. Percutaneous osteosynthesis in the pelvis in cancer patients. Eur. Radiol. 2016;26:1631–1639. doi: 10.1007/s00330-015-3971-1.
    1. Gangi A., Tsoumakidou G., Buy X., Quoix E. Quality Improvement Guidelines for Bone Tumour Management. Cardiovasc. Interv. Radiol. 2010;33:706–713. doi: 10.1007/s00270-009-9738-9.
    1. Pusceddu C., Sotgia B., Fele R.M., Melis L. Treatment of Bone Metastases with Microwave Thermal Ablation. J. Vasc. Interv. Radiol. 2013;24:229–233. doi: 10.1016/j.jvir.2012.10.009.
    1. Cazzato R.L., De Marini P., Leonard-Lorant I., Dalili D., Koch G., Autrusseau P.A., Mayer T., Weiss J., Auloge P., Garnon J., et al. Percutaneous thermal ablation of sacral metastases: Assessment of pain relief and local tumor control. Diagn. Interv. Imaging. 2021;102:355–361. doi: 10.1016/j.diii.2020.12.008.
    1. Ma Y., Wallace A.N., Waqar S.N., Morgensztern D., Madaelil T.P., Tomasian A., Jennings J.W. Percutaneous Image-Guided Ablation in the Treatment of Osseous Metastases from Non-small Cell Lung Cancer. Cardiovasc. Interv. Radiol. 2018;41:726–733. doi: 10.1007/s00270-017-1843-6.
    1. Vaswani D., Wallace A.N., Eiswirth P.S., Madaelil T.P., Chang R.O., Tomasian A., Jennings J.W. Radiographic Local Tumor Control and Pain Palliation of Sarcoma Metastases within the Musculoskeletal System with Percutaneous Thermal Ablation. Cardiovasc. Interv. Radiol. 2018;41:1223–1232. doi: 10.1007/s00270-018-1932-1.
    1. Erie A.J., Morris J.M., Welch B.T., Kurup A.N., Weisbrod A.J., Atwell T.D., Schmit G.D., Kwon E.D., Callstrom M.R. Retrospective Review of Percutaneous Image-Guided Ablation of Oligometastatic Prostate Cancer: A Single-Institution Experience. J. Vasc. Interv. Radiol. 2017;28:987–992. doi: 10.1016/j.jvir.2017.03.012.
    1. Aubry S., Dubut J., Nueffer J.-P., Chaigneau L., Vidal C., Kastler B. Prospective 1-year follow-up pilot study of CT-guided microwave ablation in the treatment of bone and soft-tissue malignant tumours. Eur. Radiol. 2016;27:1477–1485. doi: 10.1007/s00330-016-4528-7.
    1. Tomasian A., Wallace A., Northrup B., Hillen T., Jennings J. Spine Cryoablation: Pain Palliation and Local Tumor Control for Vertebral Metastases. AJNR Am. J. Neuroradiol. 2015;37:189–195. doi: 10.3174/ajnr.A4521.
    1. Deschamps F., Farouil G., Ternes N., Gaudin A., Hakime A., Tselikas L., Teriitehau C., Baudin E., Auperin A., De Baere T. Thermal ablation techniques: A curative treatment of bone metastases in selected patients? Eur. Radiol. 2014;24:1971–1980. doi: 10.1007/s00330-014-3202-1.
    1. McMenomy B.P., Kurup A.N., Johnson G., Carter R.E., McWilliams R.R., Markovic S.N., Atwell T.D., Schmit G.D., Morris J.M., Woodrum D.A., et al. Percutaneous Cryoablation of Musculoskeletal Oligometastatic Disease for Complete Remission. J. Vasc. Interv. Radiol. 2013;24:207–213. doi: 10.1016/j.jvir.2012.10.019.
    1. Littrup P.J., Bang H.J., Currier B.P., Goodrich D.J., Aoun H.D., Heilbrun L.K., Adam B.A. Soft-Tissue Cryoablation in Diffuse Locations: Feasibility and Intermediate Term Outcomes. J. Vasc. Interv. Radiol. 2013;24:1817–1825. doi: 10.1016/j.jvir.2013.06.025.
    1. Bang H.J., Littrup P.J., Goodrich D.J., Currier B.P., Aoun H.D., Heilbrun L.K., Vaishampayan U., Adam B., Goodman A.C. Percutaneous Cryoablation of Metastatic Renal Cell Carcinoma for Local Tumor Control: Feasibility, Outcomes, and Estimated Cost-effectiveness for Palliation. J. Vasc. Interv. Radiol. 2012;23:770–777. doi: 10.1016/j.jvir.2012.03.002.
    1. Arrigoni F., Bianchi G., Formiconi F., Palumbo P., Zugaro L., Gravina G.L., Barile A., Masciocchi C. CT-guided cryoablation for management of bone metastases: A single center experience and review of the literature. Radiol. Med. 2022;127:199–205. doi: 10.1007/s11547-021-01437-6.
    1. Jennings J.W., Prologo J.D., Garnon J., Gangi A., Buy X., Palussière J., Kurup A.N., Callstrom M., Genshaft S., Abtin F., et al. Cryoablation for Palliation of Painful Bone Metastases: The Motion Multicenter Study. Radiol. Imaging Cancer. 2021;3:16–18. doi: 10.1148/rycan.2021200101.
    1. Madani K., Najafi A., Boticella A., Roux C., Tselikas L., Delpla A., Al Ahmar M., de Baere T., Deschamps F. Combined local treatments for vertebral metastases with limited epidural extension. Support. Care Cancer. 2022;30:337–345. doi: 10.1007/s00520-021-06443-y.
    1. Kastler A., Barbé D.-A., Alemann G., Hadjidekov G., Cornelis F.H., Kastler B. Bipolar Radiofrequency Ablation of Painful Spinal Bone Metastases Performed under Local Anesthesia: Feasibility Regarding Patient’s Experience and Pain Outcome. Medicina. 2021;57:966. doi: 10.3390/medicina57090966.
    1. Pusceddu C., De Francesco D., Melis L., Ballicu N., Fancellu A. The Role of a Navigational Radiofrequency Ablation Device and Concurrent Vertebral Augmentation for Treatment of Difficult-to-Reach Spinal Metastases. Curr. Oncol. 2021;28:4004–4015. doi: 10.3390/curroncol28050340.
    1. Yang Y., Li Y., Wu Y., Qiu S., Liu C., Wang Q., Hong Y., Lyu J., Zhang Y., Du D. Retrospective analysis of CT-guided percutaneous cryoablation for treatment of painful osteolytic bone metastasis. Cryobiology. 2020;92:203–207. doi: 10.1016/j.cryobiol.2020.01.012.
    1. Yang X.-G., Wu G., Sun Y.-Y., Pang H.-R., Huang X.-Q., Xu G.-H. Vesselplasty using the Mesh-Hold™ bone-filling container for the treatment of pathological vertebral fractures due to osteolytic metastases: A retrospective study. Eur. J. Radiol. 2020;126:108962. doi: 10.1016/j.ejrad.2020.108962.
    1. De Marini P., Cazzato R.L., Auloge P., Koch G., Dalili D., Garnon J., Gangi A. Percutaneous image-guided thermal ablation of bone metastases: A retrospective propensity study comparing the safety profile of radio-frequency ablation and cryo-ablation. Int. J. Hyperth. 2020;37:1386–1394. doi: 10.1080/02656736.2020.1859628.
    1. Deib G., Deldar B., Hui F., Barr J.S., Khan M.A. Percutaneous Microwave Ablation and Cementoplasty: Clinical Utility in the Treatment of Painful Extraspinal Osseous Metastatic Disease and Myeloma. AJR Am. J. Roentgenol. 2019;212:1377–1384. doi: 10.2214/AJR.18.20386.
    1. Tanigawa N., Arai Y., Yamakado K., Aramaki T., Inaba Y., Kanazawa S., Matsui O., Miyazaki M., Kodama Y., Anai H., et al. Phase I/II Study of Radiofrequency Ablation for Painful Bone Metastases: Japan Interventional Radiology in Oncology Study Group. Cardiovasc. Interv. Radiol. 2018;41:1043–1048. doi: 10.1007/s00270-018-1944-x.
    1. Prologo J.D., Passalacqua M., Patel I., Bohnert N., Corn D. Image-guided cryoablation for the treatment of painful musculoskeletal metastatic disease: A single-center experience. Skelet. Radiol. 2014;43:1551–1559. doi: 10.1007/s00256-014-1939-x.
    1. Rossi G., Mavrogenis A.F., Casadei R., Bianchi G., Romagnoli C., Rimondi E., Ruggieri P. Embolisation of bone metastases from renal cancer. Radiol. Med. 2013;118:291–302. doi: 10.1007/s11547-012-0802-4.
    1. Campanacci L., Bianchi G., Cevolani L., Errani C., Ciani G., Facchini G., Spinnato P., Tognù A., Massari L., Cornelis F.H., et al. Operating procedures for electrochemotherapy in bone metastases: Results from a multicenter prospective study on 102 patients. Eur. J. Surg. Oncol. (EJSO) 2021;47:2609–2617. doi: 10.1016/j.ejso.2021.05.004.
    1. Koirala N., McLennan G. Percutaneous reinforced osteoplasty for long bone metastases: A feasibility study. Skelet. Radiol. 2019;49:375–382. doi: 10.1007/s00256-019-03288-9.
    1. Giles S.L., Brown M.R., Rivens I., Deppe M., Huisman M., Kim Y.-S., Farquhar-Smith P., Williams J.E., ter Haar G.R., Desouza N.M. Comparison of Imaging Changes and Pain Responses in Patients with Intra- or Extraosseous Bone Metastases Treated Palliatively with Magnetic Resonance-Guided High-Intensity–Focused Ultrasound. J. Vasc. Interv. Radiol. 2019;30:1351–1360.e1. doi: 10.1016/j.jvir.2019.02.019.
    1. Sundararajan S.H., Calamita S., Girgis P., Ngo G., Ranganathan S., Giglio M., Gendel V., Goyal S., Nosher J., Roychowdhury S. Sequential Interventional Management of Osseous Neoplasms via Embolization, Cryoablation, and Osteoplasty. J. Oncol. 2019;2019:5247837. doi: 10.1155/2019/5247837.
    1. Tian Q.-H., Liu H.-F., Wang T., Cheng Y.-S., Wu C.-G. Percutaneous Sacroplasty for Painful Sacral Metastases Involving Multiple Sacral Vertebral Bodies: Initial Experience with an Interpedicular Approach. Korean J. Radiol. 2019;20:939–946. doi: 10.3348/kjr.2018.0803.
    1. Liu H.-F., Wu C.-G., Tian Q.-H., Wang T., Yi F. Application of Percutaneous Osteoplasty in Treating Pelvic Bone Metastases: Efficacy and Safety. Cardiovasc. Interv. Radiol. 2019;42:1738–1744. doi: 10.1007/s00270-019-02320-8.
    1. Cazzato R.L., Garnon J., Caudrelier J., Rao P.P., Koch G., Gangi A. Low-power bipolar radiofrequency ablation and vertebral augmentation for the palliative treatment of spinal malignancies. Int. J. Hyperth. 2018;34:1282–1288. doi: 10.1080/02656736.2017.1422557.
    1. Chen Z.-Q., Wang C.-R., Ma X.-J., Sun W., Shen J.-K., Sun M.-X., Fu Z.-Z., Hua Y.-Q., Cai Z.-D. Evaluation of Quality of Life Using EORTC QLQ-BM22 in Patients with Bone Metastases after Treatment with Magnetic Resonance Guided Focused Ultrasound. Orthop. Surg. 2018;10:264–271. doi: 10.1111/os.12383.
    1. Khan M., Deib G., Deldar B., Patel A., Barr J. Efficacy and Safety of Percutaneous Microwave Ablation and Cementoplasty in the Treatment of Painful Spinal Metastases and Myeloma. AJNR Am. J. Neuroradiol. 2018;39:1376–1383. doi: 10.3174/ajnr.A5680.
    1. Couraud G., Gaston A.-P., Thuillier T., Eymard F., Hourdille A., Chevalier X.-J., Boussion H., Guignard S. Evaluation of short-term efficacy of extraspinal cementoplasty for bone metastasis: A monocenter study of 31 patients. J. Bone Oncol. 2018;13:136–142. doi: 10.1016/j.jbo.2018.09.004.
    1. Fares A., Shaaban M.H., Reyad R.M., Ragab A.S., Sami M.A. Combined percutaneous radiofrequency ablation and cementoplasty for the treatment of extraspinal painful bone metastases: A prospective study. J. Egypt. Natl. Cancer Inst. 2018;30:117–122. doi: 10.1016/j.jnci.2018.05.002.
    1. Bertrand A.-S., Iannessi A., Natale R., Beaumont H., Patriti S., Xiong-Ying J., Baudin G., Thyss A. Focused ultrasound for the treatment of bone metastases: Effectiveness and feasibility. J. Ther. Ultrasound. 2018;6:8. doi: 10.1186/s40349-018-0117-3.
    1. Coupal T.M., Pennycooke K., I Mallinson P., A Ouellette H., Clarkson P.W., Hawley P., Munk P.L. The Hopeless Case? Palliative Cryoablation and Cementoplasty Procedures for Palliation of Large Pelvic Bone Metastases. Pain Physician. 2017;20:E1053–E1061. doi: 10.36076/ppj/2017.7.E1053.
    1. Pusceddu C., Fancellu A., Ballicu N., Fele R.M., Sotgia B., Melis L. CT-guided percutaneous screw fixation plus cementoplasty in the treatment of painful bone metastases with fractures or a high risk of pathological fracture. Skelet. Radiol. 2017;46:539–545. doi: 10.1007/s00256-017-2584-y.
    1. Reyad R., Ghobrial H., Hakim S., Hashem R., Elsaman A., Shaaban M. Thick cement usage in percutaneous vertebroplasty for malignant vertebral fractures at high risk for cement leakage. Diagn. Interv. Imaging. 2017;98:721–728. doi: 10.1016/j.diii.2017.02.010.
    1. Motta A., Caltabiano G., Palmucci S., Failla G., Basile A. Feasibility of percutaneous cryoablation of vertebral metastases under local anaesthesia in ASAIII patients. Eur. J. Radiol. 2017;95:13–17. doi: 10.1016/j.ejrad.2017.07.011.
    1. McArthur T.A., Narducci C.A., Lander P.H., Lopez-Ben R. Percutane Image-Guided Cryoablation of Painful Osseous Metastases: A Retrospective Single-Center Review. Curr. Probl. Diagn. Radiol. 2017;46:282–287. doi: 10.1067/j.cpradiol.2016.11.007.
    1. Bagla S., Sayed D., Smirniotopoulos J., Brower J., Rutledge J.N., Dick B., Carlisle J., Lekht I., Georgy B. Multicenter Prospective Clinical Series Evaluating Radiofrequency Ablation in the Treatment of Painful Spine Metastases. Cardiovasc. Interv. Radiol. 2016;39:1289–1297. doi: 10.1007/s00270-016-1400-8.
    1. Facchini G., Di Tullio P., Battaglia M., Bartalena T., Tetta C., Errani C., Mavrogenis A.F., Rossi G. Palliative embolization for metastases of the spine. Eur. J. Orthop. Surg. Traumatol. 2015;26:247–252. doi: 10.1007/s00590-015-1726-y.
    1. Pusceddu C., Sotgia B., Fele R.M., Ballicu N., Melis L. Combined Microwave Ablation and Cementoplasty in Patients with Painful Bone Metastases at High Risk of Fracture. Cardiovasc. Interv. Radiol. 2015;39:74–80. doi: 10.1007/s00270-015-1151-y.
    1. Anzidei M., Napoli A., Sacconi B., Boni F., Noce V., Di Martino M., Saba L., Catalano C. Magnetic resonance-guided focused ultrasound for the treatment of painful bone metastases: Role of apparent diffusion coefficient (ADC) and dynamic contrast enhanced (DCE) MRI in the assessment of clinical outcome. Radiol. Med. 2016;121:905–915. doi: 10.1007/s11547-016-0675-9.
    1. Wang F.A., He S.C., Xiao E.H., Wang S.X., Sun L., Lv P.H., Huang W.N. Sequential Transarterial Embolization Followed by Percu-taneous Vertebroplasty Is Safe and Effective in Pain Management in Vertebral Metastases. Pain Physician. 2016;19:E559–E567.
    1. Chen F., Xia Y.-H., Cao W.-Z., Shan W., Gao Y., Feng C., Wang D. Percutaneous kyphoplasty for the treatment of spinal metastases. Oncol. Lett. 2016;11:1799–1806. doi: 10.3892/ol.2016.4121.
    1. Bianchi G., Campanacci L., Ronchetti M., Donati D.M. Electrochemotherapy in the Treatment of Bone Metastases: A Phase II Trial. World J. Surg. 2016;40:3088–3094. doi: 10.1007/s00268-016-3627-6.
    1. Jiao D., Wu G., Ren J., Han X. Radiofrequency ablation versus 125I-seed brachytherapy for painful metastases involving the bone. Oncotarget. 2016;7:87523–87531. doi: 10.18632/oncotarget.11983.
    1. Joo B., Park M.-S., Lee S.H., Choi H.J., Lim S.T., Rha S.Y., Rachmilevitch I., Lee Y.H., Suh J.-S. Pain Palliation in Patients with Bone Metastases Using Magnetic Resonance-Guided Focused Ultrasound with Conformal Bone System: A Preliminary Report. Yonsei Med. J. 2015;56:503–509. doi: 10.3349/ymj.2015.56.2.503.
    1. Wallace A.N., Greenwood T.J., Jennings J.W. Radiofrequency ablation and vertebral augmentation for palliation of painful spinal metastases. J. Neuro-Oncol. 2015;124:111–118. doi: 10.1007/s11060-015-1813-2.
    1. Wei Z., Zhang K., Ye X., Yang X., Zheng A., Huang G., Wang J. Computed tomography-guided percutaneous microwave ablation combined with osteoplasty for palliative treatment of painful extraspinal bone metastases from lung cancer. Skelet. Radiol. 2015;44:1485–1490. doi: 10.1007/s00256-015-2195-4.
    1. Di Staso M., Gravina G.L., Zugaro L., Bonfili P., Gregori L., Franzese P., Marampon F., Vittorini F., Moro R., Tombolini V., et al. Treatment of Solitary Painful Osseous Metastases with Radiotherapy, Cryoablation or Combined Therapy: Propensity Matching Analysis in 175 Patients. PLoS ONE. 2015;10:e0129021. doi: 10.1371/journal.pone.0129021.
    1. Cazzato R., Bonichon F., Buy X., Godbert Y., de Figuereido B., Pointillart V., Palussière J. Over ten years of single-institution experience in percutaneous image-guided treatment of bone metastases from differentiated thyroid cancer. Eur. J. Surg. Oncol. (EJSO) 2015;41:1247–1255. doi: 10.1016/j.ejso.2015.06.005.
    1. Tian Q.-H., Wu C.-G., Gu Y.-F., He C.-J., Li M.-H., Cheng Y.-D. Combination Radiofrequency Ablation and Percutaneous Osteoplasty for Palliative Treatment of Painful Extraspinal Bone Metastasis: A Single-Center Experience. J. Vasc. Interv. Radiol. 2014;25:1094–1100. doi: 10.1016/j.jvir.2014.03.018.
    1. Kastler A., Alnassan H., Aubry S., Kastler B. Microwave Thermal Ablation of Spinal Metastatic Bone Tumors. J. Vasc. Interv. Radiol. 2014;25:1470–1475. doi: 10.1016/j.jvir.2014.06.007.
    1. Hurwitz M.D., Ghanouni P., Kanaev S.V., Iozeffi D., Gianfelice D., Fennessy F.M., Kuten A., Meyer J.E., LeBlang S.D., Roberts A., et al. Magnetic Resonance–Guided Focused Ultrasound for Patients with Painful Bone Metastases: Phase III Trial Results. JNCI J. Natl. Cancer Inst. 2014;106:dju082. doi: 10.1093/jnci/dju082.
    1. Alemann G., Kastler A., Barbé D.-A., Aubry S., Kastler B. Treatment of Painful Extraspinal Bone Metastases with Percutaneous Bipolar Radiofrequency Under Local Anesthesia: Feasibility and Efficacy in Twenty-Eight Cases. J. Palliat. Med. 2014;17:947–952. doi: 10.1089/jpm.2013.0531.
    1. Botsa E., Mylona S., Koutsogiannis I., Koundouraki A., Thanos L. CT image guided thermal ablation techniques for palliation of painful bone metastases. Ann. Palliat. Med. 2014;3:47–53. doi: 10.3978/j.issn.2224-5820.2014.04.02.
    1. Li Z., Ni C., Chen L., Sun Z., Yang C., Zhao X., Wang Y. Kyphoplasty versus vertebroplasty for the treatment of malignant ver-tebral compression fractures caused by metastases: A retrospective study. Chin. Med. J. 2014;127:1493–1496.
    1. Li F., Wang W., Li L., Chang Y., Su D., Guo G., He X., Li M. An Effective Therapy to Painful Bone Metastases: Cryoablation Combined with Zoledronic Acid. Pathol. Oncol. Res. 2014;20:885–891. doi: 10.1007/s12253-014-9769-7.
    1. Sun G., Jin P., Liu X.-W., Li M., Li L. Cementoplasty for managing painful bone metastases outside the spine. Eur. Radiol. 2014;24:731–737. doi: 10.1007/s00330-013-3071-z.
    1. Callstrom M.R., Dupuy D., Solomon S.B., Beres R.A., Littrup P.J., Davis K.W., Paz-Fumagalli R., Hoffman C., Atwell T.D., Charboneau J.W., et al. Percutaneous image-guided cryoablation of painful metastases involving bone. Cancer. 2012;119:1033–1041. doi: 10.1002/cncr.27793.
    1. Napoli A., Anzidei M., Marincola B.C., Brachetti G., Ciolina F., Cartocci G., Marsecano C., Zaccagna F., Marchetti L., Cortesi E., et al. Primary Pain Palliation and Local Tumor Control in Bone Metastases Treated with Magnetic Resonance-Guided Focused Ultrasound. Investig. Radiol. 2013;48:351–358. doi: 10.1097/RLI.0b013e318285bbab.
    1. Anselmetti G.C., Manca A., Tutton S., Chiara G., Kelekis A., Facchini F.R., Russo F., Regge D., Montemurro F. Percutaneous verte-bral augmentation assisted by PEEK implant in painful osteolytic vertebral metastasis involving the vertebral wall: Experience on 40 patients. Pain Physician. 2013;16:E397–E404. doi: 10.36076/ppj.2013/16/E397.
    1. Trumm C.G., Jakobs T.F., Stahl R., Sandner T.A., Paprottka P.M., Reiser M.F., Zech C.J., Hoffmann R.-T. CT fluoroscopy-guided vertebral augmentation with a radiofrequency-induced, high-viscosity bone cement (StabiliT®): Technical results and polymethylmethacrylate leakages in 25 patients. Skelet. Radiol. 2012;42:113–120. doi: 10.1007/s00256-012-1386-5.
    1. Kastler A., Alnassan H., Pereira P.L., Alemann G., Barbé D.-A., Aubry S., Tiberghien F., Kastler B. Analgesic Effects of Microwave Ablation of Bone and Soft Tissue Tumors under Local Anesthesia. Pain Med. 2013;14:1873–1881. doi: 10.1111/pme.12242.
    1. Iannessi A., Amoretti N., Marcy P.-Y., Sedat J. Percutaneous cementoplasty for the treatment of extraspinal painful bone lesion, a prospective study. Diagn. Interv. Imaging. 2012;93:859–870. doi: 10.1016/j.diii.2012.08.001.
    1. Rossi G., Mavrogenis A.F., Rimondi E., Ciccarese F., Tranfaglia C., Angelelli B., Fiorentini G., Bartalena T., Errani C., Ruggieri P., et al. Selective arterial embolisation for bone tumours: Experience of 454 cases. Radiol. Med. 2011;116:793–808. doi: 10.1007/s11547-011-0670-0.
    1. Masala S.A., Guglielmi G., Petrella M.C., Mastrangeli R., Meschini A., Anselmetti G.C., A Bartolucci D., Mammucari M., Manenti G., Simonetti G. Percutaneous ablative treatment of metastatic bone tumours: Visual analogue scale scores in a short-term series. Singap. Med. J. 2011;52:182–189.
    1. Masala S., Schillaci O., Bartolucci A.D., Calabria F., Mammucari M., Simonetti G. Metabolic and clinical assessment of efficacy of cryoablation therapy on skeletal masses by 18F-FDG positron emission tomography/computed tomography (PET/CT) and visual analogue scale (VAS): Initial experience. Skelet. Radiol. 2010;40:159–165. doi: 10.1007/s00256-010-0960-y.
    1. Masala S.A., Volpi T., Fucci F.P.M., Cantonetti M., Postorino M., Simonetti G. Percutaneus osteoplasty in the treatment of extraspinal painful multiple myeloma lesions. Support. Care Cancer. 2010;19:957–962. doi: 10.1007/s00520-010-0910-1.
    1. Kashima M., Yamakado K., Takaki H., Kaminou T., Tanigawa N., Nakatsuka A., Takeda K. Radiofrequency Ablation for the Treatment of Bone Metastases from Hepatocellular Carcinoma. AJR Am. J. Roentgenol. 2010;194:536–541. doi: 10.2214/AJR.09.2975.
    1. Carrafiello G., Laganà D., Pellegrino C., Fontana F., Mangini M., Nicotera P., Petullà M., Bracchi E., Genovese E., Cuffari S., et al. Percutaneous imaging-guided ablation therapies in the treatment of symptomatic bone metastases: Preliminary experience. Radiol. Med. 2009;114:608–625. doi: 10.1007/s11547-009-0395-5.
    1. Delpla A., Tselikas L., De Baere T., Laurent S., Mezaib K., Barat M., Nguimbous O., Prudhomme C., Al-Hamar M., Moulin B., et al. Preventive Vertebroplasty for Long-Term Consolidation of Vertebral Metastases. Cardiovasc. Interv. Radiol. 2019;42:1726–1737. doi: 10.1007/s00270-019-02314-6.
    1. Thanos L., Mylona S., Galani P., Tzavoulis D., Kalioras V., Tanteles S., Pomoni M. Radiofrequency ablation of osseous metastases for the palliation of pain. Skelet. Radiol. 2008;37:189–194. doi: 10.1007/s00256-007-0404-5.
    1. 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;249:355–363. doi: 10.1148/radiol.2491071523.
    1. Basile A., Giuliano G., Scuderi V., Motta S., Crisafi R., Coppolino F., Mundo E., Banna G.L., Di Raimondo F., Patti M.T., et al. Cementoplasty in the management of painful extraspinal bone metastases: Our experience. Radiol. Med. 2008;113:1018–1028. doi: 10.1007/s11547-008-0314-1.
    1. Anselmetti G.C., Manca A., Ortega C., Grignani G., DeBernardi F., Regge D. Treatment of Extraspinal Painful Bone Metastases with Percutaneous Cementoplasty: A Prospective Study of 50 Patients. Cardiovasc. Interv. Radiol. 2008;31:1165–1173. doi: 10.1007/s00270-008-9396-3.
    1. Trumm C.G., Jakobs T.F., Zech C.J., Helmberger T.K., Reiser M.F., Hoffmann R.-T. CT Fluoroscopy–guided Percutaneous Vertebroplasty for the Treatment of Osteolytic Breast Cancer Metastases: Results in 62 Sessions with 86 Vertebrae Treated. J. Vasc. Interv. Radiol. 2008;19:1596–1606. doi: 10.1016/j.jvir.2008.08.014.
    1. Tuncali K., Morrison P.R., Winalski C.S., Carrino J.A., Shankar S., Ready J.E., Vansonnenberg E., Silverman S.G. MRI-Guided Percutaneous Cryotherapy for Soft-Tissue and Bone Metastases: Initial Experience. AJR Am. J. Roentgenol. 2007;189:232–239. doi: 10.2214/AJR.06.0588.
    1. Forauer A.R., Kent E., Cwikiel W., Esper P., Redman B. Selective palliative transcatheter embolization of bony metastases from renal cell carcinoma. Acta Oncol. 2007;46:1012–1018. doi: 10.1080/02841860701280725.
    1. Callstrom M.R., Atwell T.D., Charboneau J.W., Farrell M.A., Goetz M.P., Rubin J., Sloan J.A., Novotny P.J., Welch T.J., Maus T.P., et al. Painful Metastases Involving Bone: Percutaneous Image-guided Cryoablation—Prospective Trial Interim Analysis. Radiology. 2006;241:572–580. doi: 10.1148/radiol.2412051247.
    1. Weber C.H., Krötz M., Hoffmann R.-T., Euler E., Heining S., Pfeifer K.-J., Reiser M., Linsenmaier U. CT-gesteuerte Vertebro- und Kyphoplastie: Vergleichende Untersuchung zu technischem Erfolg und Komplikationen bei 101 Eingriffen [CT-guided vertebroplasty and kyphoplasty: Comparing technical success rate and complications in 101 cases] Rofo. 2006;178:610–617. doi: 10.1055/s-2006-926726.
    1. Callstrom M.R., Charboneau J.W. Percutaneous ablation: Safe, effective treatment of bone tumors. Oncology. 2005;19((Suppl. S4)):22–26.
    1. Cai H.-Y., Liu X.-D., Cao H.-P., Wang X.-Q., Zhang Z.-Y., Dong X.-C. Treatment effect of percutaneous vertebroplasty combined with interventional chemotherapy on vertebral metastases. Ai Zheng. 2005;24:488–493.
    1. Masala S., Schillaci O., Massari F., Danieli R., Ursone A., Fiori R., Simonetti G. MRI and bone scan imaging in the preoperative evaluation of painful vertebral fractures treated with ver-tebroplasty and kyphoplasty. In Vivo. 2005;19:1055–1060.
    1. Guzman R., Dubach-Schwizer S., Heini P., Lovblad K.-O., Kalbermatten D.F., Schroth G., Remonda L. Preoperative transarterial embolization of vertebral metastases. Eur. Spine J. 2004;14:263–268. doi: 10.1007/s00586-004-0757-6.
    1. Masala S., Lunardi P., Fiori R., Liccardo G., Massari F., Ursone A., Simonetti G. Vertebroplasty and Kyphoplasty in the Treatment of Malignant Vertebral Fractures. J. Chemother. 2004;16:30–33. doi: 10.1080/1120009X.2004.11782379.
    1. Poggi G., Gatti C., Melazzini M.G., Bernardo G., Strada M., Teragni C., Delmonte A., Tagliaferri C., Bonezzi C., Barbieri M., et al. Percutaneous ultrasound-guided radiofrequency thermal ablation of malignant osteolyses. Anticancer Res. 2004;23:4977–4983.
    1. Eustatia-Rutten C.F.A., Romijn J.A., Guijt M.J., Vielvoye G.J., Berg R.V.D., Corssmit E.P.M., Pereira A.M., Smit J.W.A. Outcome of Palliative Embolization of Bone Metastases in Differentiated Thyroid Carcinoma. J. Clin. Endocrinol. Metab. 2003;88:3184–3189. doi: 10.1210/jc.2003-030231.
    1. Fourney D.R., Schomer D.F., Nader R., Chlan-Fourney J., Suki D., Ahrar K., Rhines L.D., Gokaslan Z.L. Percutaneous vertebroplasty and kyphoplasty for painful vertebral body fractures in cancer patients. J. Neurosurg. Spine. 2003;98:21–30. doi: 10.3171/spi.2003.98.1.0021.
    1. Winking M., Stahl J.P., Oertel M., Schnettler R., Böker D.K. PMMA vertebroplasty in patients with malignant vertebral destruc-tion of the thoracic and lumbar spine. Ger. Med. Sci. 2003;1:Doc08.
    1. Alvarez L., Calvo E., Rossi R.E. Vertebroplasty in the treatment of vertebral tumors: Postprocedural outcome and quality of life. Eur. Spine J. 2003;12:356–360. doi: 10.1007/s00586-003-0525-z.
    1. Hierholzer J., Anselmetti G., Fuchs H., Depriester C., Koch K., Pappert D. Percutaneous Osteoplasty as a Treatment for Painful Malignant Bone Lesions of the Pelvis and Femur. J. Vasc. Interv. Radiol. 2003;14:773–777. doi: 10.1097/01.RVI.0000079987.80153.85.
    1. Grönemeyer D.H., Schirp S., Gevargez A. Image-Guided Radiofrequency Ablation of Spinal Tumors: Preliminary experience with an expandable array electrode. Cancer J. 2002;8:33–39. doi: 10.1097/00130404-200201000-00007.
    1. Chatziioannou A.N., Johnson M.E., Pneumaticos S.G., Lawrence D.D., Carrasco C.H. Preoperative embolization of bone metastases from renal cell carcinoma. Eur. Radiol. 2000;10:593–596. doi: 10.1007/s003300050969.
    1. Barr J.D., Barr M.S., Lemley T.J., McCann R.M. Percutaneous Vertebroplasty for Pain Relief and Spinal Stabilization. Spine. 2000;25:923–928. doi: 10.1097/00007632-200004150-00005.
    1. Martin J., Jean B., Sugiu K., Ruíz D.S.M., Piotin M., Murphy K., Rüfenacht B., Muster M., Rüfenacht D. Vertebroplasty: Clinical experience and follow-up results. Bone. 1999;25((Suppl. S2)):11S–15S. doi: 10.1016/S8756-3282(99)00126-X.
    1. Sun S., Lang E.V. Bone Metastases from Renal Cell Carcinoma: Preoperative Embolization. J. Vasc. Interv. Radiol. 1998;9:263–269. doi: 10.1016/S1051-0443(98)70267-2.
    1. Weill A., Chiras J., Simon J.M., Rose M., Sola-Martinez T., Enkaoua E. Spinal metastases: Indications for and results of percutaneous injection of acrylic surgical cement. Radiology. 1996;199:241–247. doi: 10.1148/radiology.199.1.8633152.
    1. Cotten A., Dewatre F., Cortet B., Assaker R., Leblond D., Duquesnoy B., Chastanet P., Clarisse J. Percutaneous vertebroplasty for osteolytic metastases and myeloma: Effects of the percentage of lesion filling and the leakage of methyl methacrylate at clinical follow-up. Radiology. 1996;200:525–530. doi: 10.1148/radiology.200.2.8685351.
    1. Breslau J., Eskridge J.M. Preoperative Embolization of Spinal Tumors. J. Vasc. Interv. Radiol. 1995;6:871–875. doi: 10.1016/S1051-0443(95)71205-2.
    1. Corcos G., Dbjay J., Mastier C., Leon S., Auperin A., De Baere T., Deschamps F. Cement Leakage in Percutaneous Vertebroplasty for Spinal Metastases: A retrospective evaluation of incidence and risk factors. Spine. 2014;39:E332–E338. doi: 10.1097/BRS.0000000000000134.
    1. Nakatsuka A., Yamakado K., Uraki J., Takaki H., Yamanaka T., Fujimori M., Hasegawa T., Sakuma H. Safety and Clinical Outcomes of Percutaneous Radiofrequency Ablation for Intermediate and Large Bone Tumors Using a Multiple-Electrode Switching System: A Phase II Clinical Study. J. Vasc. Interv. Radiol. 2016;27:388–394. doi: 10.1016/j.jvir.2015.10.025.
    1. Yu W., Tang L., Lin F., Yao Y., Shen Z., Zhou X. High-intensity focused ultrasound: Noninvasive treatment for local unresectable recurrence of osteosarcoma. Surg. Oncol. 2015;24:9–15. doi: 10.1016/j.suronc.2014.10.001.
    1. Anselmetti G.C., Manca A., Montemurro F., Hirsch J., Chiara G., Grignani G., Schianca F.C., Capaldi A., Scalabrini D.R., Sardo E., et al. Percutaneous Vertebroplasty in Multiple Myeloma: Prospective Long-Term Follow-Up in 106 Consecutive Patients. Cardiovasc. Interv. Radiol. 2012;35:139–145. doi: 10.1007/s00270-011-0111-4.
    1. Li C., Zhang W., Fan W., Huang J., Zhang F., Wu P. Noninvasive treatment of malignant bone tumors using high-intensity focused ultrasound. Cancer. 2010;116:3934–3942. doi: 10.1002/cncr.25192.
    1. Kim N.J., Kim T.W., Park K.H., Chi M.P., O Kim J. The Proper Volume and Distribution of Cement Augmentation on Percutaneous Vertebroplasty. J. Korean Neurosurg. Soc. 2010;48:125–128. doi: 10.3340/jkns.2010.48.2.125.
    1. Chevalier Y., Pahr D., Charlebois M., Heini P., Schneider E., Zysset P. Cement Distribution, Volume, and Compliance in Vertebroplasty: Some answers from an anatomy-based nonlinear finite element study. Spine. 2008;33:1722–1730. doi: 10.1097/BRS.0b013e31817c750b.
    1. Laredo J.-D., Hamze B. Complications of percutaneous vertebroplasty and their prevention. Semin. Ultrasound CT MRI. 2005;26:65–80. doi: 10.1053/j.sult.2005.02.003.
    1. Shimony J.S., Gilula L.A., Zeller A.J., Brown D.B. Percutaneous Vertebroplasty for Malignant Compression Fractures with Epidural Involvement. Radiology. 2004;232:846–853. doi: 10.1148/radiol.2323030353.
    1. Johnstone C., Lutz S.T. External beam radiotherapy and bone metastases. Ann. Palliat. Med. 2014;3:175–185. doi: 10.3978/j.issn.2224-5820.2014.04.06.
    1. Steenland E., Leer J., van Houwelingen H.C., Post W.J., Hout W.B.V.D., Kievit J., de Haes H., Martijn H., Oei B., Vonk E., et al. The effect of a single fraction compared to multiple fractions on painful bone metastases: A global analysis of the Dutch Bone Metastasis Study. Radiother. Oncol. 1999;52:101–109. doi: 10.1016/S0167-8140(99)00110-3.
    1. De Felice F., Piccioli A., Musio D., Tombolini V. The role of radiation therapy in bone metastases management. Oncotarget. 2017;8:25691–25699. doi: 10.18632/oncotarget.14823.
    1. Huisman M., Bosch M.A.V.D., Wijlemans J.W., van Vulpen M., van der Linden Y., Verkooijen H.M. Effectiveness of Reirradiation for Painful Bone Metastases: A Systematic Review and Meta-Analysis. Int. J. Radiat. Oncol. Biol. Phys. 2012;84:8–14. doi: 10.1016/j.ijrobp.2011.10.080.
    1. Harvey N., Ahlmann E.R., Allison D.C., Wang L., Menendez L.R. Endoprostheses Last Longer Than Intramedullary Devices in Proximal Femur Metastases. Clin. Orthop. Relat. Res. 2012;470:684–691. doi: 10.1007/s11999-011-2038-0.
    1. Potter B.K., Chow V.E., Adams S.C., Letson G.D., Temple H.T. Endoprosthetic proximal femur replacement: Metastatic versus primary tumors. Surg. Oncol. 2009;18:343–349. doi: 10.1016/j.suronc.2008.08.007.
    1. Capanna R., De Biase P., Sensi L. Minimally invasive techniques for treatment of metastatic cancer. Orthopade. 2009;38:343–347. doi: 10.1007/s00132-008-1378-2.
    1. Carrafiello G., Laganà D., Pellegrino C., Mangini M., Fontana F., Piacentino F., Recaldini C., Rovera F., Dionigi G., Boni L., et al. Ablation of painful metastatic bone tumors: A systematic review. Int. J. Surg. 2008;6((Suppl. S1)):S47–S52. doi: 10.1016/j.ijsu.2008.12.035.
    1. Kurup A.N., Callstrom M.R. Ablation of Musculoskeletal Metastases: Pain Palliation, Fracture Risk Reduction, and Oligometastatic Disease. Tech. Vasc. Interv. Radiol. 2013;16:253–261. doi: 10.1053/j.tvir.2013.08.007.
    1. Kurup A.N., Morris J.M., Callstrom M.R. Ablation of Musculoskeletal Metastases. AJR Am. J. Roentgenol. 2017;209:713–721. doi: 10.2214/AJR.17.18527.

Source: PubMed

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