Semin intervent Radiol 2018; 35(04): 261-267
DOI: 10.1055/s-0038-1673363
Review Article
Thieme Medical Publishers 333 Seventh Avenue, New York, NY 10001, USA.

HIFU for Bone Metastases and other Musculoskeletal Applications

Roberto Scipione
1   Department of Radiological, Oncological and Pathological Sciences, Policlinico Umberto I, Sapienza University of Rome, Rome, Italy
,
Michele Anzidei
1   Department of Radiological, Oncological and Pathological Sciences, Policlinico Umberto I, Sapienza University of Rome, Rome, Italy
,
Alberto Bazzocchi
2   Department of Radiology, Rizzoli Orthopedic Institute, University of Bologna, Bologna, Italy
,
Cesare Gagliardo
3   Section of Radiological Sciences, Department of Biopathology and Medical Biotechnologies, University of Palermo, Palermo, Italy
,
Carlo Catalano
1   Department of Radiological, Oncological and Pathological Sciences, Policlinico Umberto I, Sapienza University of Rome, Rome, Italy
,
Alessandro Napoli
1   Department of Radiological, Oncological and Pathological Sciences, Policlinico Umberto I, Sapienza University of Rome, Rome, Italy
› Author Affiliations
Further Information

Publication History

Publication Date:
05 November 2018 (online)

Abstract

High-intensity focused ultrasound (HIFU) is a totally noninvasive procedure that has shown promising results in the management of numerous malignant and nonmalignant conditions. Under magnetic resonance or ultrasound guidance, high-intensity ultrasound waves are focused on a small, well-defined target region, inducing biologic tissue heating and coagulative necrosis, thus resulting in a precise and localized ablation. This treatment has shown both great safety and efficacy profiles, and may offer a multimodal approach to different diseases, providing pain palliation, potential local tumor control, and, in some cases, remineralization of trabecular bone. In musculoskeletal field, HIFU received FDA approval for treating bone metastasis, but its application has also been extended to other conditions, such as osteoid osteoma, desmoid tumor, low-flow vascular malformation, and facet joint osteoarthritis. This article illustrates the basic principles of HIFU and its main effects on biologic tissues with particular attention on bone, provides a step-by-step description of the HIFU procedure, and discusses the commonly treated conditions, in particular bone metastases.

 
  • References

  • 1 Napoli A, Anzidei M, Ciolina F. , et al. MR-guided high-intensity focused ultrasound: current status of an emerging technology. Cardiovasc Intervent Radiol 2013; 36 (05) 1190-1203
  • 2 Dick EA, Gedroyc WM. ExAblate magnetic resonance-guided focused ultrasound system in multiple body applications. Expert Rev Med Devices 2010; 7 (05) 589-597
  • 3 Ciolina F, Manganaro L, Scipione R, Napoli A. Alternatives to surgery for the treatment of myomas. Minerva Ginecol 2016; 68 (03) 364-379
  • 4 Bazzocchi A, Napoli A, Sacconi B. , et al. MRI-guided focused ultrasound surgery in musculoskeletal diseases: the hot topics. Br J Radiol 2016; 89 (1057): 20150358
  • 5 Napoli A, Anzidei M, Marincola BC. , et al. MR imaging-guided focused ultrasound for treatment of bone metastasis. Radiographics 2013; 33 (06) 1555-1568
  • 6 Napoli A, Bazzocchi A, Scipione R. , et al. Noninvasive therapy for osteoid osteoma: a prospective developmental study with MR imaging-guided high-intensity focused ultrasound. Radiology 2017; 285 (01) 186-196
  • 7 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 (06) 351-358
  • 8 Marrocchio C, Dababou S, Catalano C, Napoli A. Nonoperative ablation of pancreatic neoplasms. Surg Clin North Am 2018; 98 (01) 127-140
  • 9 Cavallo Marincola B, Pediconi F, Anzidei M. , et al. High-intensity focused ultrasound in breast pathology: non-invasive treatment of benign and malignant lesions. Expert Rev Med Devices 2015; 12 (02) 191-199
  • 10 Napoli A, Anzidei M, De Nunzio C. , et al. Real-time magnetic resonance-guided high-intensity focused ultrasound focal therapy for localised prostate cancer: preliminary experience. Eur Urol 2013; 63 (02) 395-398
  • 11 Anzidei M, Marincola BC, Bezzi M. , et al. Magnetic resonance-guided high-intensity focused ultrasound treatment of locally advanced pancreatic adenocarcinoma: preliminary experience for pain palliation and local tumor control. Invest Radiol 2014; 49 (12) 759-765
  • 12 Anzidei M, Napoli A, Sandolo F. , et al. Magnetic resonance-guided focused ultrasound ablation in abdominal moving organs: a feasibility study in selected cases of pancreatic and liver cancer. Cardiovasc Intervent Radiol 2014; 37 (06) 1611-1617
  • 13 Iacopino DG, Gagliardo C, Giugno A. , et al. Preliminary experience with a transcranial magnetic resonance-guided focused ultrasound surgery system integrated with a 1.5-T MRI unit in a series of patients with essential tremor and Parkinson's disease. Neurosurg Focus 2018; 44 (02) E7
  • 14 Gagliardo C, Geraci L, Napoli A. , et al. [Non-invasive trans-cranial magnetic resonance imaging-guided focused ultrasounds surgery to treat neurologic disorders]. Recenti Prog Med 2016; 107 (05) 242-245
  • 15 Simon CJ, Dupuy DE, Mayo-Smith WW. Microwave ablation: principles and applications. Radiographics 2005; 25 (01) (Suppl. 01) S69-S83
  • 16 Jolesz FA, Hynynen K. Magnetic resonance image-guided focused ultrasound surgery. Cancer J 2002; 8 (Suppl. 01) S100-S112
  • 17 Sapareto SA, Dewey WC. Thermal dose determination in cancer therapy. Int J Radiat Oncol Biol Phys 1984; 10 (06) 787-800
  • 18 Catane R, Beck A, Inbar Y. , 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 (01) 163-167
  • 19 Chen W, Zhu H, Zhang L. , et al. Primary bone malignancy: effective treatment with high-intensity focused ultrasound ablation. Radiology 2010; 255 (03) 967-978
  • 20 Dababou S, Marrocchio C, Scipione R. , et al. High-intensity focused ultrasound for pain management in patients with cancer. Radiographics 2018; 38 (02) 603-623
  • 21 Hurwitz MD, Ghanouni P, Kanaev SV. , et al. Magnetic resonance-guided focused ultrasound for patients with painful bone metastases: phase III trial results. J Natl Cancer Inst 2014; 106 (05) dju082
  • 22 Napoli A, Mastantuono M, Cavallo Marincola B. , et al. Osteoid osteoma: MR-guided focused ultrasound for entirely noninvasive treatment. Radiology 2013; 267 (02) 514-521
  • 23 Masciocchi C, Zugaro L, Arrigoni F. , et al. Radiofrequency ablation versus magnetic resonance guided focused ultrasound surgery for minimally invasive treatment of osteoid osteoma: a propensity score matching study. Eur Radiol 2016; 26 (08) 2472-2481
  • 24 Rovella MS, Martins GL, Cavalcanti CF. , et al. Magnetic resonance-guided high-intensity focused ultrasound ablation of osteoid osteoma: a case series report. Ultrasound Med Biol 2016; 42 (04) 919-923
  • 25 Temple MJ, Waspe AC, Amaral JG. , et al. Establishing a clinical service for the treatment of osteoid osteoma using magnetic resonance-guided focused ultrasound: overview and guidelines. J Ther Ultrasound 2016; 4: 16
  • 26 Bonvalot S, Desai A, Coppola S. , et al. The treatment of desmoid tumors: a stepwise clinical approach. Ann Oncol 2012; 23 (Suppl. 10) x158-x166
  • 27 Ghanouni P, Dobrotwir A, Bazzocchi A. , et al. Magnetic resonance-guided focused ultrasound treatment of extra-abdominal desmoid tumors: a retrospective multicenter study. Eur Radiol 2017; 27 (02) 732-740
  • 28 Avedian RS, Bitton R, Gold G, Butts-Pauly K, Ghanouni P. Is MR-guided high-intensity focused ultrasound a feasible treatment modality for desmoid tumors?. Clin Orthop Relat Res 2016; 474 (03) 697-704
  • 29 Judith N, Ulrike E, Siegmar R, Matthias N, Jürgen H. Current concepts in diagnosis and treatment of venous malformations. J Craniomaxillofac Surg 2014; 42 (07) 1300-1304
  • 30 Hynynen K, Colucci V, Chung A, Jolesz F. Noninvasive arterial occlusion using MRI-guided focused ultrasound. Ultrasound Med Biol 1996; 22 (08) 1071-1077
  • 31 Voogt MJ, van Stralen M, Ikink ME. , et al. Targeted vessel ablation for more efficient magnetic resonance-guided high-intensity focused ultrasound ablation of uterine fibroids. Cardiovasc Intervent Radiol 2012; 35 (05) 1205-1210
  • 32 Cohen SP, Raja SN. Pathogenesis, diagnosis, and treatment of lumbar zygapophysial (facet) joint pain. Anesthesiology 2007; 106 (03) 591-614
  • 33 Weeks EM, Platt MW, Gedroyc W. MRI-guided focused ultrasound (MRgFUS) to treat facet joint osteoarthritis low back pain--case series of an innovative new technique. Eur Radiol 2012; 22 (12) 2822-2835