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Erschienen in: European Spine Journal 9/2018

09.01.2018 | Original Article

Accuracy of pedicle screw insertion by AIRO® intraoperative CT in complex spinal deformity assessed by a new classification based on technical complexity of screw insertion

verfasst von: S. Rajasekaran, Manindra Bhushan, Siddharth Aiyer, Rishi Kanna, Ajoy Prasad Shetty

Erschienen in: European Spine Journal | Ausgabe 9/2018

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Abstract

Purpose

To develop a classification based on the technical complexity encountered during pedicle screw insertion and to evaluate the performance of AIRO® CT navigation system based on this classification, in the clinical scenario of complex spinal deformity.

Materials and methods

31 complex spinal deformity correction surgeries were prospectively analyzed for performance of AIRO® mobile CT-based navigation system. Pedicles were classified according to complexity of insertion into five types. Analysis was performed to estimate the accuracy of screw placement and time for screw insertion. Breach greater than 2 mm was considered for analysis.

Results

452 pedicle screws were inserted (T1–T6: 116; T7–T12: 171; L1–S1: 165). The average Cobb angle was 68.3° (range 60°–104°). We had 242 grade 2 pedicles, 133 grade 3, and 77 grade 4, and 44 pedicles were unfit for pedicle screw insertion. We noted 27 pedicle screw breach (medial: 10; lateral: 16; anterior: 1). Among lateral breach (n = 16), ten screws were planned for in–out–in pedicle screw insertion. Among lateral breach (n = 16), ten screws were planned for in–out–in pedicle screw insertion. Average screw insertion time was 1.76 ± 0.89 min. After accounting for planned breach, the effective breach rate was 3.8% resulting in 96.2% accuracy for pedicle screw placement.

Conclusion

This classification helps compare the accuracy of screw insertion in range of conditions by considering the complexity of screw insertion. Considering the clinical scenario of complex pedicle anatomy in spinal deformity AIRO® navigation showed an excellent accuracy rate of 96.2%.
Literatur
1.
Zurück zum Zitat White KK, Oka R, Mahar AT, Lowry A, Garfin SR (2006) Pullout strength of thoracic pedicle screw instrumentation: comparison of the transpedicular and extrapedicular techniques. Spine 31:355–358CrossRef White KK, Oka R, Mahar AT, Lowry A, Garfin SR (2006) Pullout strength of thoracic pedicle screw instrumentation: comparison of the transpedicular and extrapedicular techniques. Spine 31:355–358CrossRef
2.
Zurück zum Zitat Castro WH, Halm H, Jerosch J, Malms J, Steinbeck J, Blasius S (1996) Accuracy of pedicle screw placement in lumbar vertebrae. Spine 21:1320–1324CrossRefPubMed Castro WH, Halm H, Jerosch J, Malms J, Steinbeck J, Blasius S (1996) Accuracy of pedicle screw placement in lumbar vertebrae. Spine 21:1320–1324CrossRefPubMed
3.
Zurück zum Zitat Helm PA, Teichman R, Hartmann SL, Simon D (2015) Spinal navigation and imaging: history, trends, and future. IEEE Trans Med Imaging 34(8):1738–1746CrossRefPubMed Helm PA, Teichman R, Hartmann SL, Simon D (2015) Spinal navigation and imaging: history, trends, and future. IEEE Trans Med Imaging 34(8):1738–1746CrossRefPubMed
4.
Zurück zum Zitat Johnson JP, Drazin D, King WA, Kim TT (2014) Image-guided navigation and video-assisted thoracoscopic spine surgery: the second generation. Neurosurg Focus 36(3):E8CrossRefPubMed Johnson JP, Drazin D, King WA, Kim TT (2014) Image-guided navigation and video-assisted thoracoscopic spine surgery: the second generation. Neurosurg Focus 36(3):E8CrossRefPubMed
5.
Zurück zum Zitat Kosmopoulos V, Schizas C (2007) Pedicle screw placement accuracy: a meta-analysis. Spine 32:111–120CrossRef Kosmopoulos V, Schizas C (2007) Pedicle screw placement accuracy: a meta-analysis. Spine 32:111–120CrossRef
6.
Zurück zum Zitat Gelalis ID, Paschos NK, Pakos EE, Politis AN, Arnaoutoglou CM, Karageorgos AC, Ploumis A, Xenakis TA (2012) Accuracy of pedicle screw placement: a systematic review of prospective in vivo studies comparing free hand, fluoroscopy guidance and navigation techniques. Eur Spine J 21:247–255CrossRefPubMed Gelalis ID, Paschos NK, Pakos EE, Politis AN, Arnaoutoglou CM, Karageorgos AC, Ploumis A, Xenakis TA (2012) Accuracy of pedicle screw placement: a systematic review of prospective in vivo studies comparing free hand, fluoroscopy guidance and navigation techniques. Eur Spine J 21:247–255CrossRefPubMed
7.
Zurück zum Zitat Tormenti MJ, Kostov DB, Gardner PA, Kanter AS, Spiro RM, Okonkwo DO (2010) Intraoperative computed tomography image-guided navigation for posterior thoracolumbar spinal instrumentation in spinal deformity surgery. Neurosurg Focus 28:11CrossRef Tormenti MJ, Kostov DB, Gardner PA, Kanter AS, Spiro RM, Okonkwo DO (2010) Intraoperative computed tomography image-guided navigation for posterior thoracolumbar spinal instrumentation in spinal deformity surgery. Neurosurg Focus 28:11CrossRef
8.
Zurück zum Zitat Shin BJ, James AR, Njoku IU, Härtl R (2012) Pedicle screw navigation: a systematic review and meta-analysis of perforation risk for computer-navigated versus freehand insertion: a review. J Neurosurg Spine 17:113–122CrossRefPubMed Shin BJ, James AR, Njoku IU, Härtl R (2012) Pedicle screw navigation: a systematic review and meta-analysis of perforation risk for computer-navigated versus freehand insertion: a review. J Neurosurg Spine 17:113–122CrossRefPubMed
9.
Zurück zum Zitat Waschke A, Walter J, Duenisch P, Reichart R, Kalff R, Ewald C (2013) CT-navigation versus fluoroscopy-guided placement of pedicle screws at the thoracolumbar spine: single center experience of 4,500 screws. Eur Spine J 22:654–660CrossRefPubMed Waschke A, Walter J, Duenisch P, Reichart R, Kalff R, Ewald C (2013) CT-navigation versus fluoroscopy-guided placement of pedicle screws at the thoracolumbar spine: single center experience of 4,500 screws. Eur Spine J 22:654–660CrossRefPubMed
10.
Zurück zum Zitat Tian W, Liu Y, Zheng S, Lv Y (2013) Accuracy of lower cervical pedicle screw placement with assistance of distinct navigation systems: a human cadaveric study. Eur Spine J 22:148–155CrossRefPubMed Tian W, Liu Y, Zheng S, Lv Y (2013) Accuracy of lower cervical pedicle screw placement with assistance of distinct navigation systems: a human cadaveric study. Eur Spine J 22:148–155CrossRefPubMed
11.
Zurück zum Zitat Watanabe K, Lenke LG, Matsumoto M, Harimaya K, Kim YJ, Hensley M, Stobbs G, Toyama Y, Chiba K (2010) A novel pedicle channel classification describing osseous anatomy: how many thoracic scoliotic pedicles have cancellous channels? Spine 35:1836–1842CrossRefPubMed Watanabe K, Lenke LG, Matsumoto M, Harimaya K, Kim YJ, Hensley M, Stobbs G, Toyama Y, Chiba K (2010) A novel pedicle channel classification describing osseous anatomy: how many thoracic scoliotic pedicles have cancellous channels? Spine 35:1836–1842CrossRefPubMed
12.
Zurück zum Zitat Zhang Y, Xie J, Wang Y, Bi N, Zhao Z, Li T (2012) Clinical significance of thoracic pedicle classification by inner cortical width of pedicles on CT images in posterior vertebral column resection for treatment of rigid and severe spinal deformities. Chin J Repar Reconstr Surg 26:257–260 Zhang Y, Xie J, Wang Y, Bi N, Zhao Z, Li T (2012) Clinical significance of thoracic pedicle classification by inner cortical width of pedicles on CT images in posterior vertebral column resection for treatment of rigid and severe spinal deformities. Chin J Repar Reconstr Surg 26:257–260
13.
Zurück zum Zitat National Council of Radiation Protection and Measurements (2009) Ionizing radiation exposure of the population of the United States. NCRP Report No 160, Bethesda National Council of Radiation Protection and Measurements (2009) Ionizing radiation exposure of the population of the United States. NCRP Report No 160, Bethesda
14.
Zurück zum Zitat American Association of Physicists in Medicine (2008) The measurement, reporting, and management of radiation dose in CT. AAPM Report No. 96, College Park American Association of Physicists in Medicine (2008) The measurement, reporting, and management of radiation dose in CT. AAPM Report No. 96, College Park
15.
Zurück zum Zitat Liljenqvist UR, Halm HF, Link TM (1997) Pedicle screw instrumentation of the thoracic spine in idiopathic scoliosis. Spine 22:2239–2245CrossRefPubMed Liljenqvist UR, Halm HF, Link TM (1997) Pedicle screw instrumentation of the thoracic spine in idiopathic scoliosis. Spine 22:2239–2245CrossRefPubMed
16.
Zurück zum Zitat Kim YJ, Lenke LG, Cho SK, Bridwell KH, Sides B, Blanke K (2004) Comparative analysis of pedicle screw versus hook instrumentation in posterior spinal fusion of adolescent idiopathic scoliosis. Spine 29:2040–2048CrossRefPubMed Kim YJ, Lenke LG, Cho SK, Bridwell KH, Sides B, Blanke K (2004) Comparative analysis of pedicle screw versus hook instrumentation in posterior spinal fusion of adolescent idiopathic scoliosis. Spine 29:2040–2048CrossRefPubMed
17.
Zurück zum Zitat Tian W, Lang Z (2010) Placement of pedicle screws using three-dimensional fluoroscopy-based navigation in lumbar vertebrae with axial rotation. Eur Spine J 19:1928–1935CrossRefPubMedPubMedCentral Tian W, Lang Z (2010) Placement of pedicle screws using three-dimensional fluoroscopy-based navigation in lumbar vertebrae with axial rotation. Eur Spine J 19:1928–1935CrossRefPubMedPubMedCentral
18.
Zurück zum Zitat Rajasekaran S, Vidyadhara S, Ramesh P, Shetty AP (2007) Randomized clinical study to compare the accuracy of navigated and non-navigated thoracic pedicle screws in deformity correction surgeries. Spine 32:56–64CrossRef Rajasekaran S, Vidyadhara S, Ramesh P, Shetty AP (2007) Randomized clinical study to compare the accuracy of navigated and non-navigated thoracic pedicle screws in deformity correction surgeries. Spine 32:56–64CrossRef
19.
Zurück zum Zitat Merloz P, Troccaz J, Vouaillat H, Vasile C, Tonetti J, Eid A, Plaweski S (2007) Fluoroscopy-based navigation system in spine surgery. Proc Inst Mech Eng 221:813–820CrossRef Merloz P, Troccaz J, Vouaillat H, Vasile C, Tonetti J, Eid A, Plaweski S (2007) Fluoroscopy-based navigation system in spine surgery. Proc Inst Mech Eng 221:813–820CrossRef
20.
Zurück zum Zitat O’Brien MF, Lenke LG, Mardjetko S, Lowe TG, Kong Y, Eck K, Smith D (2000) Pedicle morphology in thoracic adolescent idiopathic scoliosis: is pedicle fixation an anatomically viable technique? Spine 25:2285–2293CrossRefPubMed O’Brien MF, Lenke LG, Mardjetko S, Lowe TG, Kong Y, Eck K, Smith D (2000) Pedicle morphology in thoracic adolescent idiopathic scoliosis: is pedicle fixation an anatomically viable technique? Spine 25:2285–2293CrossRefPubMed
21.
Zurück zum Zitat Kim HW, Weinstein SL (1997) The management of scoliosis in neurofibromatosis. Spine 22:2770–2776CrossRefPubMed Kim HW, Weinstein SL (1997) The management of scoliosis in neurofibromatosis. Spine 22:2770–2776CrossRefPubMed
22.
Zurück zum Zitat Crawford AH (2001) Neurofibromatosis. In: Weinstein SL (ed) The pediatric spine: principles and practice, vol 2. Lippincott Williams and Wilkins, Philadelphia, pp 471–490 Crawford AH (2001) Neurofibromatosis. In: Weinstein SL (ed) The pediatric spine: principles and practice, vol 2. Lippincott Williams and Wilkins, Philadelphia, pp 471–490
23.
Zurück zum Zitat Hecht N, Kamphuis M, Czabanka M, Hamm B, König S, Woitzik J, Synowitz M, Vajkoczy P (2016) Accuracy and workflow of navigated spinal instrumentation with the mobile AIRO® CT scanner. Eur Spine J 25:716–723CrossRefPubMed Hecht N, Kamphuis M, Czabanka M, Hamm B, König S, Woitzik J, Synowitz M, Vajkoczy P (2016) Accuracy and workflow of navigated spinal instrumentation with the mobile AIRO® CT scanner. Eur Spine J 25:716–723CrossRefPubMed
24.
Zurück zum Zitat Jin M, Liu Z, Liu X, Yan H, Han X, Qiu Y, Zhu Z (2016) Does intraoperative navigation improve the accuracy of pedicle screw placement in the apical region of dystrophic scoliosis secondary to neurofibromatosis type I: comparison between O-arm navigation and free-hand technique. Eur Spine J 25:1729–1737CrossRefPubMed Jin M, Liu Z, Liu X, Yan H, Han X, Qiu Y, Zhu Z (2016) Does intraoperative navigation improve the accuracy of pedicle screw placement in the apical region of dystrophic scoliosis secondary to neurofibromatosis type I: comparison between O-arm navigation and free-hand technique. Eur Spine J 25:1729–1737CrossRefPubMed
25.
Zurück zum Zitat Liu Z, Jin M, Qiu Y, Yan H, Han X, Zhu Z (2016) The superiority of intraoperative O-arm navigation-assisted surgery in instrumenting extremely small thoracic pedicles of adolescent idiopathic scoliosis: a case–control study. Medicine 95:3581CrossRef Liu Z, Jin M, Qiu Y, Yan H, Han X, Zhu Z (2016) The superiority of intraoperative O-arm navigation-assisted surgery in instrumenting extremely small thoracic pedicles of adolescent idiopathic scoliosis: a case–control study. Medicine 95:3581CrossRef
26.
Zurück zum Zitat Gertzbein SD, Robbins SE (1990) Accuracy of pedicular screw placement in vivo. Spine 15:11–14CrossRefPubMed Gertzbein SD, Robbins SE (1990) Accuracy of pedicular screw placement in vivo. Spine 15:11–14CrossRefPubMed
27.
Zurück zum Zitat Kim YJ, Lenke LG, Cheh G, Riew KD (2005) Evaluation of pedicle screw placement in the deformed spine using intraoperative plain radiographs: a comparison with computerized tomography. Spine 30:2084–2088CrossRefPubMed Kim YJ, Lenke LG, Cheh G, Riew KD (2005) Evaluation of pedicle screw placement in the deformed spine using intraoperative plain radiographs: a comparison with computerized tomography. Spine 30:2084–2088CrossRefPubMed
28.
Zurück zum Zitat Cui G, Wang Y, Kao T-H, Zhang Y, Liu Z, Liu B, Li J, Zhang X, Zhu S, Lu N (2012) Application of intraoperative computed tomography with or without navigation system in surgical correction of spinal deformity: a preliminary result of 59 consecutive human cases. Spine 37:891–900CrossRefPubMed Cui G, Wang Y, Kao T-H, Zhang Y, Liu Z, Liu B, Li J, Zhang X, Zhu S, Lu N (2012) Application of intraoperative computed tomography with or without navigation system in surgical correction of spinal deformity: a preliminary result of 59 consecutive human cases. Spine 37:891–900CrossRefPubMed
29.
Zurück zum Zitat Su AW, Luo TD, McIntosh AL, Schueler BA, Winkler JA, Stans AA, Larson AN (2016) Switching to a pediatric dose O-arm protocol in spine surgery significantly reduced patient radiation exposure. J Pediatr Orthop 36:621–626CrossRefPubMed Su AW, Luo TD, McIntosh AL, Schueler BA, Winkler JA, Stans AA, Larson AN (2016) Switching to a pediatric dose O-arm protocol in spine surgery significantly reduced patient radiation exposure. J Pediatr Orthop 36:621–626CrossRefPubMed
30.
Zurück zum Zitat Pireau N, Cordemans V, Banse X, Irda N, Lichtherte S, Kaminski L (2017) Radiation dose reduction in thoracic and lumbar spine instrumentation using navigation based on an intraoperative cone beam CT imaging system: a prospective randomized clinical trial. Eur Spine J 26:2818–2827CrossRefPubMed Pireau N, Cordemans V, Banse X, Irda N, Lichtherte S, Kaminski L (2017) Radiation dose reduction in thoracic and lumbar spine instrumentation using navigation based on an intraoperative cone beam CT imaging system: a prospective randomized clinical trial. Eur Spine J 26:2818–2827CrossRefPubMed
31.
Zurück zum Zitat Putzier M, Strube P, Cecchinato R, Lamartina C, Hoff EK (2017) A new navigational tool for pedicle screw placement in patients with severe scoliosis: a pilot study to prove feasibility, accuracy, and identify operative challenges. Clin Spine Surg 30:E430–E439CrossRefPubMed Putzier M, Strube P, Cecchinato R, Lamartina C, Hoff EK (2017) A new navigational tool for pedicle screw placement in patients with severe scoliosis: a pilot study to prove feasibility, accuracy, and identify operative challenges. Clin Spine Surg 30:E430–E439CrossRefPubMed
Metadaten
Titel
Accuracy of pedicle screw insertion by AIRO® intraoperative CT in complex spinal deformity assessed by a new classification based on technical complexity of screw insertion
verfasst von
S. Rajasekaran
Manindra Bhushan
Siddharth Aiyer
Rishi Kanna
Ajoy Prasad Shetty
Publikationsdatum
09.01.2018
Verlag
Springer Berlin Heidelberg
Erschienen in
European Spine Journal / Ausgabe 9/2018
Print ISSN: 0940-6719
Elektronische ISSN: 1432-0932
DOI
https://doi.org/10.1007/s00586-017-5453-4

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