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Biomechanical evaluation of subcortical versus bicortical screw purchase in anterior cervical plating

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Summary

The purpose of this in vitro study is to compare the stabilities provided by anterior cervical H-plating with screws purchased either subcortically or bicortically on porcine cervical spines.

Nine porcine cervical spines (C3–C4) were challenged by 12 Nm in extension followed by 6 Nm in flexion in 6 consecutive steps, i.e., (1) when disc was intact, (2) after discectomy. Subsequently, a tricortical bone graft was inserted to simulate interbody fusion. Each specimen was tested again (3) when plated with 16 mm screws to purchase subcortically and (4) after cyclic loading (f=0.5 Hz, n=1000), (5) when plated with 30 mm screws to purchase bicortically and (6) after cyclic loading. Neutral zone and range of motion were parameters normalized for comparison.

The results showed comparable stability in constructs plated with screws purchased either subcortically or bicortically before cyclic loading. Cyclic loading deteriorated construct-bone relation in both groups, yet bicortically purchased screws rendered additional stability in anterior cervical plating.

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References

  1. Böhler J, Gaudernak T (1980) Anterior plate stabilization for fracture-dislocations of the lower cervical spine. J Trauma 20: 203–205

    PubMed  Google Scholar 

  2. Brown JA, Havel P, Ebraheim N, Greenblatt SH, Jackson WT (1983) Cervical stabilization by plate and bone fusion. Spine 13: 236–240

    Google Scholar 

  3. Bremer A, Nguyen TQ (1983) Internal metal plate fixation combined with anterior interbody fusion in cases of cervical spine injury. Neurosurgery 12: 649–653

    PubMed  Google Scholar 

  4. Caspar H (1986) Anterior cervical fusion and interbody stabilization with the trapezial osteosynthetic plate technique, 7th Ed. Aesculap-Werke AO, Tuttlingen

    Google Scholar 

  5. Chen IH, Huang CI, Lee LS (1994) Biomechanical evaluation of spinal stability after disc injury in a porcine model. J Clin Neurosci 1: 121–124

    Google Scholar 

  6. Cloward RB (1968) Treatment of acute fractures and fracture-dislocations of the cervical spine by vertebral body fusion. J Neurosurg 18: 201–209

    Google Scholar 

  7. Coe JD, Warden KE, Sutterlin CE, McAfee PC (1989) Biomechanical evaluation of cervical spine stabilization methods in a human cadaveric model. Spine 14: 1122–1131

    PubMed  Google Scholar 

  8. Connoly ES, Seymore RJ, Adams JE (1965) Clinical evaluation of anterior cervical disc disease. J Neurosurg 3: 431–437

    Google Scholar 

  9. Davenport SR, Lindsey RW, Leggon R, Miclau T, Pajabi M (1988) Dynamic compression plate flexion: a biomechanical comparison of unicortical vs bicortical distal screw fixation. J Orthopaedic Trauma 2: 146–150

    Google Scholar 

  10. Hollowell JP, Reinartz J, Rintar FA, Morgese V, Maiman DJ (1994) Failure of synthes anterior cervical fixation device by fracture of Morscher screw: a biomechanical study. J Spinal Disord 7: 120–125

    PubMed  Google Scholar 

  11. Gallagher MR, Maiman DJ, Reinartz J, Pintar F, Yoganandan N (1993) Biomechanical evaluation of Caspar cervical screws: comparative stability under cyclic loading. Neurosurgery 33: 1045–1051

    PubMed  Google Scholar 

  12. Gassman J, Seligson D (1983) The anterior cervical plate. Spine 8: 700–707

    PubMed  Google Scholar 

  13. Goffin J, Plets C, Van de Bergh R (1989) Anterior cervical fusion and osteosynthetic stabilization according to Caspar. A prospective study of 41 patients with fractures and/or dislocations of the cervical spine. Neurosurgery 25: 865–871

    PubMed  Google Scholar 

  14. Kostuik JP, Connolly PJ, Esses SI, Suh P (1989) Anterior cervical plate fixation with the titanium hollow screw plate system. Spine 18: 1273–1278

    Google Scholar 

  15. Maiman DJ, Pintar FA, Yoganandan N, Reinartz J, Toselli R, Woodward E, Haid R (1992) Pull-out strength of Caspar cervical plate. Neurosurgery 31: 1097–1101

    PubMed  Google Scholar 

  16. Morscher E, Sutter F, Jennis M, Olerud S (1986) Die vordere Verplattung der Halswirbelsäule mit dem Hohlschrauben Plattensystem. Chirurg 57: 702–707

    PubMed  Google Scholar 

  17. Naito M, Kurose S, Oyama M, Sugioka Y (1993) Anterior cervical fusion with the Caspar instrumentation system. Int Orthop (SICOT) 17: 73–76

    Google Scholar 

  18. Oliveirea JC (1987) Anterior plate fixation of traumatic lesions of the lower cervical spine. Spine 12: 324–329

    PubMed  Google Scholar 

  19. Panjabi MM, White AA (1990) Physical properties and functional biomechanics of the spine. In: White AA, Panjabi MM (eds) Clinical biomechanics of the spine, 2nd Ed. Lippincott, Philadelphia, pp 1–84

    Google Scholar 

  20. Robinson RA, Smith GW (1955) Antero-lateral cervical disc removing and interbody fusion for cervical disc syndrome. Bull Johns Hopkins Hosp 96: 223–224

    Google Scholar 

  21. Schulte K, Clark CR, Goel VK (1989) Kinematics of the cervical spine following discectomy and stabilization. Spine 14: 1116–1121

    PubMed  Google Scholar 

  22. Suh PB, Kostuik JP, Esses SI (1990) Anterior cervical plate fixation with the titanium hollow screw plate system. A preliminary report. Spine 15: 1079–1081

    PubMed  Google Scholar 

  23. Sutterlin CE, McAfee PC, Warden KE, Rey RM, Farey ID (1990) A biomechanical evaluation of cervical spine stabilization method in a bovine model. Static and cyclic loading. Spine 13: 795–802

    Google Scholar 

  24. Tippets RH, Apfelbaum RI (1988) Anterior cervical fusion with the Caspar instrumentation system. Neurosurgery 22: 1008–1013

    PubMed  Google Scholar 

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Chen, I.H. Biomechanical evaluation of subcortical versus bicortical screw purchase in anterior cervical plating. Acta neurochir 138, 167–173 (1996). https://doi.org/10.1007/BF01411356

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