109
Views
1
CrossRef citations to date
0
Altmetric
Original Research

Unilateral Percutaneous Kyphoplasty with O-Arm Navigation for the Treatment of Kümmell’s Disease

, ORCID Icon, , &
Pages 257-266 | Published online: 02 Feb 2022

References

  • Ehsanbakhsh AR, Akhbari H, Iraee MB, et al. The prevalence of undetected vertebral fracture in patients with back pain by Dual-Energy X-ray Absorptiometry (DXA) of the lateral thoracic and lumbar spine. Asian Spine J. 2011;5(3):139–145. doi:10.4184/asj.2011.5.3.139
  • Kim YC, Kim YH, Ha KY. Pathomechanism of intravertebral clefts in osteoporotic compression fractures of the spine. Spine J. 2014;14(4):659–666. doi:10.1016/j.spinee.2013.06.106
  • Chen GD, Lu Q, Wang GL, et al. Percutaneous kyphoplasty for Kummell disease with severe spinal canal stenosis. Pain Physician. 2015;18(6):E1021–E1028.
  • Wei H, Dong C, Zhu Y, Ma H. Analysis of two minimally invasive procedures for osteoporotic vertebral compression fractures with intravertebral cleft: a systematic review and meta-analysis. J Orthop Surg Res. 2020;15(1):401. doi:10.1186/s13018-020-01938-6
  • Huang Y, Peng M, He S, Tang X, Dai M, Tang C. Clinical efficacy of percutaneous kyphoplasty at the hyperextension position for the treatment of osteoporotic Kümmell disease. Clin Spine Surg. 2016;29(4):161–166. doi:10.1097/BSD.0000000000000259
  • Yang H, Gan M, Zou J, et al. Kyphoplasty for the treatment of Kümmell’s disease. Orthopedics. 2010;33(7):479. doi:10.3928/01477447-20100526-07
  • Feng SW, Chang MC, Wu HT, Yu JK, Wang ST, Liu CL. Are intravertebral vacuum phenomena benign lesions? Eur Spine J. 2011;20(8):1341–1348. doi:10.1007/s00586-011-1789-3
  • Peng P, Chen K, Chen H, et al. Comparison of O-arm navigation and microscope-assisted minimally invasive transforaminal lumbar interbody fusion and conventional transforaminal lumbar interbody fusion for the treatment of lumbar isthmic spondylolisthesis. J Orthop Translat. 2020;20:107–112. doi:10.1016/j.jot.2019.10.001
  • Chen K, Chen H, Zhang K, et al. O-arm navigation combined with microscope-assisted MIS-TLIF in the treatment of lumbar degenerative disease. Clin Spine Surg. 2019;32(5):E235–e240. doi:10.1097/BSD.0000000000000804
  • Phillips FM, Isaacs RE, Rodgers WB, et al. Adult degenerative scoliosis treated with XLIF: clinical and radiographical results of a prospective multicenter study with 24-month follow-up. Spine. 2013;38(21):1853–1861. doi:10.1097/BRS.0b013e3182a43f0b
  • Pflugmacher R, Schroeder RJ, Klostermann CK. Incidence of adjacent vertebral fractures in patients treated with balloon kyphoplasty: two years’ prospective follow-up. Acta Radiol. 2006;47(8):830–840. doi:10.1080/02841850600854928
  • Li K-C, Wong T-U, Kung F-C, Li A, Hsieh C-H. Staging of Kümmell’s disease. J Musculoskelet Res. 2004;8(1):43–55.
  • Zhang J, Fan Y, He X, et al. Is percutaneous kyphoplasty the better choice for minimally invasive treatment of neurologically intact osteoporotic Kümmell’s disease? A comparison of two minimally invasive procedures. Int Orthop. 2018;42(6):1321–1326. doi:10.1007/s00264-018-3832-z
  • Nakamae T, Fujimoto Y, Yamada K, Takata H, Shimbo T, Tsuchida Y. Percutaneous vertebroplasty for osteoporotic vertebral compression fracture with intravertebral cleft associated with delayed neurologic deficit. Eur Spine J. 2013;22(7):1624–1632. doi:10.1007/s00586-013-2686-8
  • Lee SH, Cho DC, Sung JK. Catastrophic intramedullary hematoma following Kümmell’s disease with large intravertebral cleft. Spine J. 2008;8(6):1007–1010. doi:10.1016/j.spinee.2007.07.397
  • Lane JI, Maus TP, Wald JT, Thielen KR, Bobra S, Luetmer PH. Intravertebral clefts opacified during vertebroplasty: pathogenesis, technical implications, and prognostic significance. AJNR Am J Neuroradiol. 2002;23(10):1642–1646.
  • Lee MJ, Dumonski M, Cahill P, Stanley T, Park D, Singh K. Percutaneous treatment of vertebral compression fractures: a meta-analysis of complications. Spine. 2009;34(11):1228–1232. doi:10.1097/BRS.0b013e3181a3c742
  • Zhan Y, Jiang J, Liao H, Tan H, Yang K. Risk factors for cement leakage after vertebroplasty or kyphoplasty: a meta-analysis of published evidence. World Neurosurg. 2017;101:633–642. doi:10.1016/j.wneu.2017.01.124
  • Wang HS, Kim HS, Ju CI, Kim SW. Delayed bone cement displacement following balloon kyphoplasty. J Korean Neurosurg Soc. 2008;43(4):212–214. doi:10.3340/jkns.2008.43.4.212
  • Tan G, Li F, Zhou D, Cai X, Huang Y, Liu F. Unilateral versus bilateral percutaneous balloon kyphoplasty for osteoporotic vertebral compression fractures: a systematic review of overlapping meta-analyses. Medicine. 2018;97(33):e11968. doi:10.1097/MD.0000000000011968
  • Chen B, Li Y, Xie D, Yang X, Zheng Z. Comparison of unipedicular and bipedicular kyphoplasty on the stiffness and biomechanical balance of compression fractured vertebrae. Eur Spine J. 2011;20(8):1272–1280. doi:10.1007/s00586-011-1744-3
  • Dalton BE, Kohm AC, Miller LE, Block JE, Poser RD. Radiofrequency-targeted vertebral augmentation versus traditional balloon kyphoplasty: radiographic and morphologic outcomes of an ex vivo biomechanical pilot study. Clin Interv Aging. 2012;7:525–531. doi:10.2147/CIA.S37025
  • Xiong XM, Sun YL, Song SM, et al. Efficacy of unilateral transverse process-pedicle and bilateral puncture techniques in percutaneous kyphoplasty for Kummell disease. Exp Ther Med. 2019;18(5):3615–3621. doi:10.3892/etm.2019.7980
  • Wang H, Hu P, Wu D, Zhang N, Wu J, Xiang L. Age, gender, level and side differences in the anatomical distinctions of unilateral percutaneous kyphoplasty through the transverse process-pedicle approach. Pain Physician. 2019;22(2):E91–e96. doi:10.36076/ppj/2019.22.E91