Skip to main content
Top
Published in: BMC Musculoskeletal Disorders 1/2018

Open Access 01-12-2018 | Research article

Vertebral column decancellation in Pott’s deformity: use of Surgimap Spine for preoperative surgical planning, retrospective review of 18 patients

Authors: Wenhao Hu, Xuesong Zhang, Jiayi Yu, Fanqi Hu, Hao Zhang, Yan Wang

Published in: BMC Musculoskeletal Disorders | Issue 1/2018

Login to get access

Abstract

Background

In the late stage of Spinal tuberculosis, the bony destruction and vertebral collapse often leads to significant kyphosis, presenting clinically as a painful gibbus deformity, with increased instability, vertebral body translations and increased risk of neurologic involvement. Vertebral column decancellation is thought to be suitable for most patients with severe rigid kyphosis. Surgimap Spine, could offer a pragmatic graphical method for the surgical planning of osteotomies. The aim of this study was to evaluate the efficacy of Vertebral column decancellation planned preoperatively with the computer software-assistance in the patients with Pott’s kyphosis.

Methods

Between May 2012 and May 2015, 18 patients with Pott’s kyphosis underwent the Vertebral column decancellation using Surgimap Spine for preoperative surgical planning. Preoperative and postoperative Konstam’s angle, sagittal vertical angle, lumbar lordosis, thoracic kyphosis, pelvic tilt and pelvic incidence were measured. Visual analog scale and American Spinal Injury Association were documented.

Results

The Konstam’s angles decreased from 88.1° (range, 70–105°) preoperatively to 18.5° (range, 7–31°) (P < 0.01). All patients reached the physiological limits at the final follow-up. The mean VAS score was reduced from preoperative 7.1 (range, 6–8) to 1.8 (range, 1–3, P < 0.01) and the ODI improved from 65.8% (range, 58–74%) to 20.2% (range, 12–38%, P < 0.01). At final follow-up, there was radiographic evidence of solid fusion at the osteotomy site and fixed segments in all patients. Neurological function improved from ASIA scale D to E in 5 patients. The patients were followed up for 30.4 months on average.

Conclusion

Vertebral column decancellation is an effective treatment option for severe Pott’s kyphosis. The surgical planning software Surgimap Spine can be a reliable and helpful tool that provides a simplified method to evaluate and analyze the spino-pelvic parameters and simulate the osteotomy procedure. According to individual character, the appropriate surgery strategy should be selected.
Literature
1.
go back to reference Wang HT, Zhang J, Ji LC, You SH, Bai Y, Dai W, Wang ZY. Frequency of tuberculosis among diabetic patients in the People's Republic of China. Ther Clin Risk Manag. 2014;10:45–9.CrossRefPubMedPubMedCentral Wang HT, Zhang J, Ji LC, You SH, Bai Y, Dai W, Wang ZY. Frequency of tuberculosis among diabetic patients in the People's Republic of China. Ther Clin Risk Manag. 2014;10:45–9.CrossRefPubMedPubMedCentral
2.
go back to reference Yao DC, Sartoris DJ. Musculoskeletal tuberculosis. Radiol Clin N Am. 1995;33(4):679–89.PubMed Yao DC, Sartoris DJ. Musculoskeletal tuberculosis. Radiol Clin N Am. 1995;33(4):679–89.PubMed
3.
go back to reference Cheung WY, Luk KD. Clinical and radiological outcomes after conservative treatment of TB spondylitis: is the 15 years’ follow-up in the MRC study long enough? European Spine J. 2013;22(Suppl 4):594–602.CrossRef Cheung WY, Luk KD. Clinical and radiological outcomes after conservative treatment of TB spondylitis: is the 15 years’ follow-up in the MRC study long enough? European Spine J. 2013;22(Suppl 4):594–602.CrossRef
4.
go back to reference Jain AK, Aggarwal PK, Arora A, Singh S. Behaviour of the kyphotic angle in spinal tuberculosis. Int Orthop. 2004;28(2):110–4.CrossRefPubMed Jain AK, Aggarwal PK, Arora A, Singh S. Behaviour of the kyphotic angle in spinal tuberculosis. Int Orthop. 2004;28(2):110–4.CrossRefPubMed
5.
go back to reference Song JF, Jing ZZ, Chen B, Ai ZS, Hu W. One-stage anterolateral surgical treatment for lumbosacral segment tuberculosis. Int Orthop. 2012;36(2):339–44.CrossRefPubMed Song JF, Jing ZZ, Chen B, Ai ZS, Hu W. One-stage anterolateral surgical treatment for lumbosacral segment tuberculosis. Int Orthop. 2012;36(2):339–44.CrossRefPubMed
6.
go back to reference Pang X, Wu P, Shen X, Li D, Luo C, Wang X. One-stage posterior transforaminal lumbar debridement, 360 degrees interbody fusion, and posterior instrumentation in treating lumbosacral spinal tuberculosis. Arch Orthop Trauma Surg. 2013;133(8):1033–9.CrossRefPubMed Pang X, Wu P, Shen X, Li D, Luo C, Wang X. One-stage posterior transforaminal lumbar debridement, 360 degrees interbody fusion, and posterior instrumentation in treating lumbosacral spinal tuberculosis. Arch Orthop Trauma Surg. 2013;133(8):1033–9.CrossRefPubMed
7.
go back to reference He Q, Xu J. Comparison between the antero-posterior and anterior approaches for treating L5-S1 vertebral tuberculosis. Int Orthop. 2012;36(2):345–51.CrossRefPubMed He Q, Xu J. Comparison between the antero-posterior and anterior approaches for treating L5-S1 vertebral tuberculosis. Int Orthop. 2012;36(2):345–51.CrossRefPubMed
8.
go back to reference Boachie-Adjei O, Papadopoulos EC, Pellise F, Cunningham ME, Perez-Grueso FS, Gupta M, Lonner B, Paonessa K, King A, Sacramento C, et al. Late treatment of tuberculosis-associated kyphosis: literature review and experience from a SRS-GOP site. European Spine J. 2013;22(Suppl 4):641–6.CrossRef Boachie-Adjei O, Papadopoulos EC, Pellise F, Cunningham ME, Perez-Grueso FS, Gupta M, Lonner B, Paonessa K, King A, Sacramento C, et al. Late treatment of tuberculosis-associated kyphosis: literature review and experience from a SRS-GOP site. European Spine J. 2013;22(Suppl 4):641–6.CrossRef
9.
go back to reference Kawahara N, Tomita K, Kobayashi T, Abdel-Wanis ME, Murakami H, Akamaru T. Influence of acute shortening on the spinal cord: an experimental study. Spine. 2005;30(6):613–20.CrossRefPubMed Kawahara N, Tomita K, Kobayashi T, Abdel-Wanis ME, Murakami H, Akamaru T. Influence of acute shortening on the spinal cord: an experimental study. Spine. 2005;30(6):613–20.CrossRefPubMed
10.
go back to reference Suk SI, Kim JH, Kim WJ, Lee SM, Chung ER, Nah KH. Posterior vertebral column resection for severe spinal deformities. Spine. 2002;27(21):2374–82.CrossRefPubMed Suk SI, Kim JH, Kim WJ, Lee SM, Chung ER, Nah KH. Posterior vertebral column resection for severe spinal deformities. Spine. 2002;27(21):2374–82.CrossRefPubMed
11.
go back to reference Schwab FJ, Patel A, Shaffrey CI, Smith JS, Farcy JP, Boachie-Adjei O, Hostin RA, Hart RA, Akbarnia BA, Burton DC, et al. Sagittal realignment failures following pedicle subtraction osteotomy surgery: are we doing enough?: clinical article. J Neurosurg Spine. 2012;16(6):539–46.CrossRefPubMed Schwab FJ, Patel A, Shaffrey CI, Smith JS, Farcy JP, Boachie-Adjei O, Hostin RA, Hart RA, Akbarnia BA, Burton DC, et al. Sagittal realignment failures following pedicle subtraction osteotomy surgery: are we doing enough?: clinical article. J Neurosurg Spine. 2012;16(6):539–46.CrossRefPubMed
12.
go back to reference Boulay C, Tardieu C, Hecquet J, Benaim C, Mouilleseaux B, Marty C, Prat-Pradal D, Legaye J, Duval-Beaupere G, Pelissier J. Sagittal alignment of spine and pelvis regulated by pelvic incidence: standard values and prediction of lordosis. European Spine J. 2006;15(4):415–22.CrossRef Boulay C, Tardieu C, Hecquet J, Benaim C, Mouilleseaux B, Marty C, Prat-Pradal D, Legaye J, Duval-Beaupere G, Pelissier J. Sagittal alignment of spine and pelvis regulated by pelvic incidence: standard values and prediction of lordosis. European Spine J. 2006;15(4):415–22.CrossRef
13.
go back to reference Kim YJ, Bridwell KH, Lenke LG, Rhim S, Cheh G. An analysis of sagittal spinal alignment following long adult lumbar instrumentation and fusion to L5 or S1: can we predict ideal lumbar lordosis? Spine. 2006;31(20):2343–52.CrossRefPubMed Kim YJ, Bridwell KH, Lenke LG, Rhim S, Cheh G. An analysis of sagittal spinal alignment following long adult lumbar instrumentation and fusion to L5 or S1: can we predict ideal lumbar lordosis? Spine. 2006;31(20):2343–52.CrossRefPubMed
14.
go back to reference Schwab F, Lafage V, Patel A, Farcy JP. Sagittal plane considerations and the pelvis in the adult patient. Spine. 2009;34(17):1828–33.CrossRefPubMed Schwab F, Lafage V, Patel A, Farcy JP. Sagittal plane considerations and the pelvis in the adult patient. Spine. 2009;34(17):1828–33.CrossRefPubMed
15.
go back to reference Lafage V, Schwab F, Vira S, Patel A, Ungar B, Farcy JP. Spino-pelvic parameters after surgery can be predicted: a preliminary formula and validation of standing alignment. Spine. 2011;36(13):1037–45.CrossRefPubMed Lafage V, Schwab F, Vira S, Patel A, Ungar B, Farcy JP. Spino-pelvic parameters after surgery can be predicted: a preliminary formula and validation of standing alignment. Spine. 2011;36(13):1037–45.CrossRefPubMed
16.
go back to reference Berjano P, Langella F, Ismael MF, Damilano M, Scopetta S, Lamartina C. Successful correction of sagittal imbalance can be calculated on the basis of pelvic incidence and age. European Spine J. 2014;23(Suppl 6):587–96.CrossRef Berjano P, Langella F, Ismael MF, Damilano M, Scopetta S, Lamartina C. Successful correction of sagittal imbalance can be calculated on the basis of pelvic incidence and age. European Spine J. 2014;23(Suppl 6):587–96.CrossRef
17.
go back to reference Pigge RR, Scheerder FJ, Smit TH, Mullender MG, van Royen BJ. Effectiveness of preoperative planning in the restoration of balance and view in ankylosing spondylitis. Neurosurg Focus. 2008;24(1):E7.CrossRefPubMed Pigge RR, Scheerder FJ, Smit TH, Mullender MG, van Royen BJ. Effectiveness of preoperative planning in the restoration of balance and view in ankylosing spondylitis. Neurosurg Focus. 2008;24(1):E7.CrossRefPubMed
18.
go back to reference Ondra SL, Marzouk S, Koski T, Silva F, Salehi S. Mathematical calculation of pedicle subtraction osteotomy size to allow precision correction of fixed sagittal deformity. Spine. 2006;31(25):E973–9.CrossRefPubMed Ondra SL, Marzouk S, Koski T, Silva F, Salehi S. Mathematical calculation of pedicle subtraction osteotomy size to allow precision correction of fixed sagittal deformity. Spine. 2006;31(25):E973–9.CrossRefPubMed
19.
go back to reference Van Royen BJ, De Gast A, Smit TH. Deformity planning for sagittal plane corrective osteotomies of the spine in ankylosing spondylitis. European Spine J. 2000;9(6):492–8.CrossRef Van Royen BJ, De Gast A, Smit TH. Deformity planning for sagittal plane corrective osteotomies of the spine in ankylosing spondylitis. European Spine J. 2000;9(6):492–8.CrossRef
20.
go back to reference Le Huec JC, Leijssen P, Duarte M, Aunoble S. Thoracolumbar imbalance analysis for osteotomy planification using a new method: FBI technique. European Spine J. 2011;20(Suppl 5):669–80.CrossRef Le Huec JC, Leijssen P, Duarte M, Aunoble S. Thoracolumbar imbalance analysis for osteotomy planification using a new method: FBI technique. European Spine J. 2011;20(Suppl 5):669–80.CrossRef
21.
go back to reference Akbar M, Terran J, Ames CP, Lafage V, Schwab F. Use of Surgimap spine in sagittal plane analysis, osteotomy planning, and correction calculation. Neurosurg Clin N Am. 2013;24(2):163–72.CrossRefPubMed Akbar M, Terran J, Ames CP, Lafage V, Schwab F. Use of Surgimap spine in sagittal plane analysis, osteotomy planning, and correction calculation. Neurosurg Clin N Am. 2013;24(2):163–72.CrossRefPubMed
22.
go back to reference Hu W, Yu J, Liu H, Zhang X, Wang Y. Y shape Osteotomy in Ankylosing Spondylitis, a prospective case series with minimum 2 year follow-up. PLoS One. 2016;11(12):e0167792.CrossRefPubMedPubMedCentral Hu W, Yu J, Liu H, Zhang X, Wang Y. Y shape Osteotomy in Ankylosing Spondylitis, a prospective case series with minimum 2 year follow-up. PLoS One. 2016;11(12):e0167792.CrossRefPubMedPubMedCentral
23.
go back to reference Atici Y, Akman YE, Balioglu MB, Kargin D, Kaygusuz MA. Two level pedicle substraction osteotomies for the treatment of severe fixed sagittal plane deformity: computer software-assisted preoperative planning and assessing. European Spine J. 2016;25(8):2461–70.CrossRef Atici Y, Akman YE, Balioglu MB, Kargin D, Kaygusuz MA. Two level pedicle substraction osteotomies for the treatment of severe fixed sagittal plane deformity: computer software-assisted preoperative planning and assessing. European Spine J. 2016;25(8):2461–70.CrossRef
24.
go back to reference Konstam PG, Blesovsky A. The ambulant treatment of spinal tuberculosis. Br J Surg. 1962;50:26–38.CrossRefPubMed Konstam PG, Blesovsky A. The ambulant treatment of spinal tuberculosis. Br J Surg. 1962;50:26–38.CrossRefPubMed
25.
go back to reference Legaye J, Duval-Beaupere G, Hecquet J, Marty C. Pelvic incidence: a fundamental pelvic parameter for three-dimensional regulation of spinal sagittal curves. European Spine J. 1998;7(2):99–103.CrossRef Legaye J, Duval-Beaupere G, Hecquet J, Marty C. Pelvic incidence: a fundamental pelvic parameter for three-dimensional regulation of spinal sagittal curves. European Spine J. 1998;7(2):99–103.CrossRef
26.
go back to reference Charles YP, Schuller S, Sfeir G, Steib JP. Vertebral column resection for thoracic hyperkyphosis in Pott's disease. European Spine J. 2014;23(3):708–10.CrossRef Charles YP, Schuller S, Sfeir G, Steib JP. Vertebral column resection for thoracic hyperkyphosis in Pott's disease. European Spine J. 2014;23(3):708–10.CrossRef
27.
go back to reference Gertzbein SD. Scoliosis Research Society. Multicenter spine fracture study. Spine. 1992;17(5):528–40.CrossRefPubMed Gertzbein SD. Scoliosis Research Society. Multicenter spine fracture study. Spine. 1992;17(5):528–40.CrossRefPubMed
28.
go back to reference Enercan M, Ozturk C, Kahraman S, Sarier M, Hamzaoglu A, Alanay A. Osteotomies/spinal column resections in adult deformity. European Spine J. 2013;22(Suppl 2):S254–64.CrossRef Enercan M, Ozturk C, Kahraman S, Sarier M, Hamzaoglu A, Alanay A. Osteotomies/spinal column resections in adult deformity. European Spine J. 2013;22(Suppl 2):S254–64.CrossRef
29.
go back to reference Liu S, Zhang N, Song Y, Song Z, Zhang L, Liu J, Xie E, Wu Q, Hao D. Radiologic comparison of posterior release, internal distraction, final PSO and spinal fusion with one-stage posterior vertebral column resection for multi-level severe congenital scoliosis. BMC Musculoskelet Disord. 2017;18(1):270.CrossRefPubMedPubMedCentral Liu S, Zhang N, Song Y, Song Z, Zhang L, Liu J, Xie E, Wu Q, Hao D. Radiologic comparison of posterior release, internal distraction, final PSO and spinal fusion with one-stage posterior vertebral column resection for multi-level severe congenital scoliosis. BMC Musculoskelet Disord. 2017;18(1):270.CrossRefPubMedPubMedCentral
30.
go back to reference Leatherman KD, Dickson RA. Two-stage corrective surgery for congenital deformities of the spine. J Bone Joint Surg Br Vol. 1979;61-B(3):324–8. Leatherman KD, Dickson RA. Two-stage corrective surgery for congenital deformities of the spine. J Bone Joint Surg Br Vol. 1979;61-B(3):324–8.
31.
go back to reference Lenke LG, Newton PO, Sucato DJ, Shufflebarger HL, Emans JB, Sponseller PD, Shah SA, Sides BA, Blanke KM. Complications after 147 consecutive vertebral column resections for severe pediatric spinal deformity: a multicenter analysis. Spine. 2013;38(2):119–32.CrossRefPubMed Lenke LG, Newton PO, Sucato DJ, Shufflebarger HL, Emans JB, Sponseller PD, Shah SA, Sides BA, Blanke KM. Complications after 147 consecutive vertebral column resections for severe pediatric spinal deformity: a multicenter analysis. Spine. 2013;38(2):119–32.CrossRefPubMed
Metadata
Title
Vertebral column decancellation in Pott’s deformity: use of Surgimap Spine for preoperative surgical planning, retrospective review of 18 patients
Authors
Wenhao Hu
Xuesong Zhang
Jiayi Yu
Fanqi Hu
Hao Zhang
Yan Wang
Publication date
01-12-2018
Publisher
BioMed Central
Published in
BMC Musculoskeletal Disorders / Issue 1/2018
Electronic ISSN: 1471-2474
DOI
https://doi.org/10.1186/s12891-018-1929-6

Other articles of this Issue 1/2018

BMC Musculoskeletal Disorders 1/2018 Go to the issue