The accuracy of 3D fluoroscopy-navigated screw insertion in the upper and subaxial cervical spine
详细信息    查看全文
  • 作者:J. Bredow ; J. Oppermann ; B. Kraus ; P. Schiller ; G. Schiffer…
  • 关键词:Navigated screw insertion ; Cervical spine ; Accuracy of screw insertion ; Spine surgery ; Complications in cervical spine surgery
  • 刊名:European Spine Journal
  • 出版年:2015
  • 出版时间:December 2015
  • 年:2015
  • 卷:24
  • 期:12
  • 页码:2967-2976
  • 全文大小:1,486 KB
  • 参考文献:1.Abumi K, Itoh H, Taneichi H, Kaneda K (1994) Transpedicular screw fixation for traumatic lesions of the middle and lower cervical spine: description of the techniques and preliminary report. J Spinal Disord 7(1):19鈥?8CrossRef PubMed
    2.Abumi K, Kaneda K (1997) Pedicle screw fixation for nontraumatic lesions of the cervical spine. Spine 22(16):1853鈥?863CrossRef PubMed
    3.Abumi K, Shono Y, Ito M, Taneichi H, Kotani Y, Kaneda K (2000) Complications of pedicle screw fixation in reconstructive surgery of the cervical spine. Spine 25(8):962鈥?69CrossRef PubMed
    4.Barnes AH, Eguizabal JA, Acosta FL Jr, Lotz JC, Buckley JM, Ames CP (2009) Biomechanical pullout strength and stability of the cervical artificial pedicle screw. Spine 34(1):E16鈥揈20. doi:10.鈥?097/鈥婤RS.鈥?b013e3181891772鈥?/span> CrossRef PubMed
    5.Blauth M, Richter M, Lange U (1999) Trans-articular screw fixation of C1/C2 in atlanto-axial instability. Comparison between percutaneous and open procedures. Der Orthopade 28(8):651鈥?61PubMed
    6.Dunlap BJ, Karaikovic EE, Park HS, Sokolowski MJ, Zhang LQ (2010) Load sharing properties of cervical pedicle screw-rod constructs versus lateral mass screw-rod constructs. Eur Spine J 19(5):803鈥?08. doi:10.鈥?007/鈥媠00586-010-1278-0 PubMedCentral CrossRef PubMed
    7.Ebraheim NA, Xu R, Knight T, Yeasting RA (1997) Morphometric evaluation of lower cervical pedicle and its projection. Spine 22(1):1鈥?CrossRef PubMed
    8.Gebauer M, Barvencik F, Briem D, Kolb JP, Seitz S, Rueger JM, Puschel K, Amling M (2010) Evaluation of anatomic landmarks and safe zones for screw placement in the atlas via the posterior arch. Eur Spine J 19(1):85鈥?0. doi:10.鈥?007/鈥媠00586-009-1181-8 PubMedCentral CrossRef PubMed
    9.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(2):247鈥?55. doi:10.鈥?007/鈥媠00586-011-2011-3 PubMedCentral CrossRef PubMed
    10.Gertzbein SD, Robbins SE (1990) Accuracy of pedicular screw placement in vivo. Spine 15(1):11鈥?4CrossRef PubMed
    11.Glossop ND, Hu RW, Randle JA (1996) Computer-aided pedicle screw placement using frameless stereotaxis. Spine 21(17):2026鈥?034CrossRef PubMed
    12.Haid RW Jr (2001) C1鈥揅2 transarticular screw fixation: technical aspects. Neurosurgery 49(1):71鈥?4PubMed
    13.Ishikawa Y, Kanemura T, Yoshida G, Ito Z, Muramoto A, Ohno S (2010) Clinical accuracy of three-dimensional fluoroscopy-based computer-assisted cervical pedicle screw placement: a retrospective comparative study of conventional versus computer-assisted cervical pedicle screw placement. J Neurosurg Spine 13(5):606鈥?11. doi:10.鈥?171/鈥?010.鈥?.鈥婼PINE09993 CrossRef PubMed
    14.Ishikawa Y, Kanemura T, Yoshida G, Matsumoto A, Ito Z, Tauchi R, Muramoto A, Ohno S, Nishimura Y (2011) Intraoperative, full-rotation, three-dimensional image (O-arm)-based navigation system for cervical pedicle screw insertion. J Neurosurg Spine 15(5):472鈥?78. doi:10.鈥?171/鈥?011.鈥?.鈥婼PINE10809 CrossRef PubMed
    15.Kantelhardt SR, Keric N, Giese A (2012) Management of C2 fractures using Iso-C(3D) guidance: a single institution鈥檚 experience. Acta Neurochir (Wien) 154(10):1781鈥?787. doi:10.鈥?007/鈥媠00701-012-1443-9 CrossRef
    16.Karaikovic EE, Kunakornsawat S, Daubs MD, Madsen TW, Gaines RW Jr (2000) Surgical anatomy of the cervical pedicles: landmarks for posterior cervical pedicle entrance localization. J Spinal Disord 13(1):63鈥?2CrossRef PubMed
    17.Kosmopoulos V, Schizas C (2007) Pedicle screw placement accuracy: a meta-analysis. Spine 32(3):E111鈥揈120. doi:10.鈥?097/鈥?1.鈥媌rs.鈥?000254048.鈥?9024.鈥?b CrossRef PubMed
    18.Lee DH, Lee SW, Kang SJ, Hwang CJ, Kim NH, Bae JY, Kim YT, Lee CS, Daniel Riew K (2011) Optimal entry points and trajectories for cervical pedicle screw placement into subaxial cervical vertebrae. Eur Spine J 20(6):905鈥?11. doi:10.鈥?007/鈥媠00586-010-1655-8 PubMedCentral CrossRef PubMed
    19.Liu YJ, Tian W, Liu B, Li Q, Hu L, Li ZY, Yuan Q, Lu YW, Sun YZ (2010) Comparison of the clinical accuracy of cervical (C2鈥揅7) pedicle screw insertion assisted by fluoroscopy, computed tomography-based navigation, and intraoperative three-dimensional C-arm navigation. Chin Med J 123(21):2995鈥?998PubMed
    20.Ludwig SC, Kramer DL, Vaccaro AR, Albert TJ (1999) Transpedicle screw fixation of the cervical spine. Clin Orthop Relat Res 359:77鈥?8CrossRef PubMed
    21.Luther N, Iorgulescu JB, Geannette C, Gebhard H, Saleh T, Tsiouris AJ, Hartl R (2013) Comparison of navigated versus non-navigated pedicle screw placement in 260 patients and 1434 screws: screw accuracy, screw size, and the complexity of surgery. J Spinal Disord Tech. doi:10.鈥?097/鈥婤SD.鈥?b013e31828af33e鈥?/span>
    22.Mueller CA, Roesseler L, Podlogar M, Kovacs A, Kristof RA (2010) Accuracy and complications of transpedicular C2 screw placement without the use of spinal navigation. Eur Spine J 19(5):809鈥?14. doi:10.鈥?007/鈥媠00586-010-1291-3 PubMedCentral CrossRef PubMed
    23.Nakashima H, Yukawa Y, Imagama S, Kanemura T, Kamiya M, Yanase M, Ito K, Machino M, Yoshida G, Ishikawa Y, Matsuyama Y, Ishiguro N, Kato F (2012) Complications of cervical pedicle screw fixation for nontraumatic lesions: a multicenter study of 84 patients. J Neurosurg Spine 16(3):238鈥?47. doi:10.鈥?171/鈥?011.鈥?1.鈥婼PINE11102 CrossRef PubMed
    24.Panjabi MM, Shin EK, Chen NC, Wang JL (2000) Internal morphology of human cervical pedicles. Spine 25(10):1197鈥?205CrossRef PubMed
    25.Richter M, Cakir B, Schmidt R (2005) Cervical pedicle screws: conventional versus computer-assisted placement of cannulated screws. Spine 30(20):2280鈥?287CrossRef PubMed
    26.Richter M, Mattes T, Cakir B (2004) Computer-assisted posterior instrumentation of the cervical and cervico-thoracic spine. Eur Spine J 13(1):50鈥?9. doi:10.鈥?007/鈥媠00586-003-0604-1 PubMedCentral CrossRef PubMed
    27.Richter M, Schmidt R, Claes L, Puhl W, Wilke HJ (2002) Posterior atlantoaxial fixation: biomechanical in vitro comparison of six different techniques. Spine 27(16):1724鈥?732CrossRef PubMed
    28.Roy-Camille R, Saillant G, Laville C, Benazet JP (1992) Treatment of lower cervical spinal injuries鈥擟3 to C7. Spine 17(10 Suppl):S442鈥揝446CrossRef PubMed
    29.Sakamoto T, Neo M, Nakamura T (2004) Transpedicular screw placement evaluated by axial computed tomography of the cervical pedicle. Spine 29(22):2510鈥?514 discussion 2515 CrossRef PubMed
    30.Schmidt R, Wilke HJ, Claes L, Puhl W, Richter M (2003) Pedicle screws enhance primary stability in multilevel cervical corpectomies: biomechanical in vitro comparison of different implants including constrained and nonconstrained posterior instrumentations. Spine 28(16):1821鈥?828. doi:10.鈥?097/鈥?1.鈥婤RS.鈥?000083287.鈥?3521.鈥?8 CrossRef PubMed
    31.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(1):148鈥?55. doi:10.鈥?007/鈥媠00586-012-2494-6 PubMedCentral CrossRef PubMed
    32.Wang Y, Xie J, Yang Z, Zhao Z, Zhang Y, Li T, Liu L (2013) Computed tomography assessment of lateral pedicle wall perforation by free-hand subaxial cervical pedicle screw placement. Arch Orthop Trauma Surg 133(7):901鈥?09. doi:10.鈥?007/鈥媠00402-013-1752-3 CrossRef PubMed
    33.Weinstein JN, Spratt KF, Spengler D, Brick C, Reid S (1988) Spinal pedicle fixation: reliability and validity of roentgenogram-based assessment and surgical factors on successful screw placement. Spine 13(9):1012鈥?018CrossRef PubMed
    34.Xu R, Ebraheim NA, Skie M (2008) Pedicle screw fixation in the cervical spine. Am J Orthop 37(8):403鈥?08 discussion 408 PubMed
    35.Yukawa Y, Kato F, Ito K, Nakashima H, Machino M (2009) Anterior cervical pedicle screw and plate fixation using fluoroscope-assisted pedicle axis view imaging: a preliminary report of a new cervical reconstruction technique. Eur Spine J 18(6):911鈥?16. doi:10.鈥?007/鈥媠00586-009-0949-1 PubMedCentral CrossRef PubMed
    36.Zhang HL, Zhou DS, Jiang ZS (2011) Analysis of accuracy of computer-assisted navigation in cervical pedicle screw installation. Orthop Surg 3(1):52鈥?6. doi:10.鈥?111/鈥媕.鈥?757-7861.鈥?010.鈥?0110.鈥媥 CrossRef PubMed
  • 作者单位:J. Bredow (1)
    J. Oppermann (1)
    B. Kraus (3)
    P. Schiller (4)
    G. Schiffer (5)
    R. Sobottke (2)
    P. Eysel (1)
    T. Koy (6)

    1. Department of Orthopedic and Trauma Surgery, University Hospital of Cologne, Kerpener Strasse 62, 50937, Cologne, Germany
    3. Department of Radiology, University Hospital of Cologne, Cologne, Germany
    4. Institute of Medical Statistics, Informatics and Epidemiology, University Hospital of Cologne, Cologne, Germany
    5. Department of Trauma, Orthopedic and Hand Surgery, Vinzenz-Pallotti Hospital, Bergisch Gladbach, Germany
    2. Department of Orthopedics, Medical Center City Aachen GmBH, Wuerselen, Germany
    6. Department of Spine Surgery, KLINIK am RING, Cologne, Germany
  • 刊物类别:Medicine
  • 刊物主题:Medicine & Public Health
    Surgical Orthopedics
    Neurosurgery
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1432-0932
文摘
Purpose Due to better primary stability and repositioning options, pedicle screws are increasingly used during posterior stabilization of the cervical spine. However, the serious risks generally associated with the insertion of screws in the cervical spine remain. The purpose of this study is to examine the accuracy of pedicle screw insertion with the use of 3D fluoroscopy navigation systems, also accounting for various spine levels.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700