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Articles

Feasibility of microwave ablation of the vertebral growth plate for spine growth regulation: a preliminary study

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Pages 1233-1241 | Received 15 Feb 2021, Accepted 31 Jul 2021, Published online: 15 Aug 2021

References

  • Wessell NM, Martus JE, Halanski MA, et al. What's new in pediatric spine growth modulation and implant technology for early-onset scoliosis? J Pediatr Orthop. 2018;38(1):e3–e13.
  • Harris LR, Andras LM, Sponseller PD, et al. Comparison of percentile weight gain of growth-friendly constructs in early-onset scoliosis. Spine Deform. 2018;6(1):43–47.
  • Redding GJ, Hurn H, White KK, et al. Persistence and progression of airway obstruction in children with early onset scoliosis. J. Pediatr. Orthop. 2020;40(4):190–195.
  • Thakar C, Kieser DC, Mardare M, et al. Systematic review of the complications associated with magnetically controlled growing rods for the treatment of early onset scoliosis. Eur Spine J. 2018;27(9):2062–2071.
  • Fedorak GT, Garg S, Heflin JA, et al. Management of early-onset scoliosis-from Mehta casts to magnetically expandable rods: state of the art in 2019. Instr Course Lect. 2020;69:641–650.
  • Huynh AM, Aubin CE, Rajwani T, et al. Pedicle growth asymmetry as a cause of adolescent idiopathic scoliosis: a biomechanical study. Eur Spine J. 2007;16(4):523–529.
  • Li QY, Zhong GB, Liu ZD, et al. Effect of asymmetric tension on biomechanics and metabolism of vertebral epiphyseal plate in a rodent model of scoliosis. Orthop Surg. 2017;9(3):311–318.
  • Labrom FR, Izatt MT, Contractor P, et al. Sequential MRI reveals vertebral body wedging significantly contributes to coronal plane deformity progression in adolescent idiopathic scoliosis during growth. Spine Deform. 2020;8(5):901–910.
  • Stokes IA, Gardner-Morse M. Muscle activation strategies and symmetry of spinal loading in the lumbar spine with scoliosis. Spine. 2004;29(19):2103–2107.
  • Bylski-Austrow DI, Glos DL, Wall EJ, et al. Scoliosis vertebral growth plate histomorphometry: comparisons to controls, growth rates, and compressive stresses. J Orthop Res. 2018;36(9):2450–2459.
  • Driscoll M, Aubin CE, Moreau A, et al. Spinal growth modulation using a novel intravertebral epiphyseal device in an immature porcine model. Eur Spine J. 2012;21(1):138–144.
  • Stevens PM, Klatt JB. Guided growth for pathological physes: radiographic improvement during realignment. J Pediatr Orthop. 2008;28(6):632–639.
  • Sunni N, Askin GN, Labrom RD, et al. The effect of vertebral body stapling on spine biomechanics and structure using a bovine model. Clin Biomech. 2020;74:73–78.
  • Bogie R, Roth AK, Willems PC, et al. The development of a representative porcine early-onset scoliosis model with a standalone posterior spinal tether. Spine Deform. 2017;5(1):2–10.
  • Newton PO. Spinal growth tethering: indications and limits. Ann Transl Med. 2020;8(2):27.
  • Cheung ZB, Selverian S, Cho BH, et al. Idiopathic scoliosis in children and adolescents: emerging techniques in surgical treatment. World Neurosurg. 2019;130:e737–e742.
  • Di Martino M, Rompianesi G, Mora-Guzmán I, et al. Systematic review and meta-analysis of local ablative therapies for resectable colorectal liver metastases. Eur J Surg Oncol. 2020;46(5):772–781.
  • Choi Y, Jung SL. Efficacy and safety of thermal ablation techniques for the treatment of primary papillary thyroid microcarcinoma: a systematic review and meta-analysis. Thyroid. 2020;30(5):720–731.
  • Facciorusso AG, Serviddio G, Muscatiello N. Local ablative treatments for hepatocellular carcinoma: an updated review. World J Gastrointest Pharmacol Ther. 2016;7(4):477–489.
  • Aufranc V, Farouil G, Abdel-Rehim M, et al. Percutaneous thermal ablation of primary and secondary lung tumors: comparison between microwave and radiofrequency ablation. Diagn Interv Imaging. 2019;100(12):781–791.
  • Bohlman HH, Bahniuk E, Raskulinecz G, et al. Mechanical factors affecting recovery from incomplete cervical spinal cord injury: a preliminary report. Johns Hopkins Med J. 1979;145(3):115–125.
  • Tarlov IM, Klinger H. Spinal cord compression studies: II. Time limits for recovery after acute compression in dogs. AMA Arch Neurol Psychiatry. 1954;71(3):271–290.
  • Novanta A, Herpe G, Vesselle G, et al. Chart for renal tumor microwave ablation from human study. Diagn Interv Imaging. 2018;99(10):609–614.
  • Khan MA, Deib G, Deldar B, et al. Efficacy and safety of percutaneous microwave ablation and cementoplasty in the treatment of painful spinal metastases and myeloma. Am J Neuroradiol. 2018;39(7):1376–1383.
  • Carlander J, Koch C, Brudin L, et al. Heat production, nerve function, and morphology following nerve close dissection with surgical instruments. World J Surg. 2012;36(6):1361–1367.
  • Haveman J, Sminia P, Wondergem J, et al. Effects of hyperthermia on the central nervous system: what was learnt from animal studies? Int J Hyperthermia. 2005;21(5):473–487.
  • Zhou P, Liang P, Yu X, et al. Percutaneous microwave ablation of liver cancer adjacent to the gastrointestinal tract. J Gastrointest Surg. 2009;13(2):318–324.
  • Hell AK, von Laer L. [Growth behaviour after fractures of the proximal radius: differences to the rest of the skeleton]. Unfallchirurg. 2014;117(12):1085–1091.
  • Wang KK, Novacheck TF, Rozumalski A, et al. Anterior guided growth of the distal femur for knee flexion contracture: clinical, radiographic, and motion analysis results. J. Pediatr Orthop. 2019;39(5):e360–e365.