Literature DB >> 21332283

Biomechanical analysis of Goel technique for C1-2 fusion.

Jon Park1, Justin K Scheer, T Jesse Lim, Vedat Deviren, Christopher P Ames.   

Abstract

OBJECT: The Goel technique, in which C1-2 intraarticular spacers are used, may be performed to restore stability to a disrupted atlantoaxial complex in conjunction with the Harms technique of placing polyaxial screws and bilateral rods. However, it has yet to be determined biomechanically whether the addition of the C1-2 joint spacers increases the multiaxial rigidity of the fixation construct. The goal of this study was to quantify changes in multiaxial rigidity of the combined Goel-Harms technique with the addition of C1-2 intraarticular spacers.
METHODS: Seven cadaveric cervical spines (occiput-C2) were submitted to nondestructive flexion-extension, lateral bending, and axial rotation tests in a material testing machine spine tester. The authors applied 1.5 Nm at a rate of 0.1 Nm/second and held it constant for 10 seconds. The specimens were loaded 3 times, and data were collected on the third cycle. Testing of the specimens was performed for the following groups: 1) intact (I); 2) with the addition of C-1 lateral mass/C-2 pedicle screws and rod system (I+SR); 3) with C1-2 joint capsule incision, decortication (2 mm on top and bottom of each joint [that is, the C-1 and C-2 surface) and addition of bilateral C1-2 intraarticular spacers at C1-2 junction to the screws and rods (I+SR+C); 4) after removal of the posterior rods and only the bilateral spacers in place (I+C); 5) after removal of spacers and further destabilization with simulated odontoidectomy for a completely destabilized case (D); 6) with addition of posterior rods to the destabilized case (D+SR); and 7) with addition of bilateral C1-2 intraarticular spacers at C1-2 junction to the destabilized case (D+SR+C). The motion of C-1 was measured by a 3D motion tracking system and the motion of C-2 was measured by the rotational sensor of the testing system. The range of motion (ROM) and neutral zone (NZ) across C-1 and C-2 were evaluated.
RESULTS: For the intact spine test groups, the addition of screws/rods (I+SR) and screws/rods/cages (I+SR+C) significantly reduced ROM and NZ compared with the intact spine (I) for flexion-extension and axial rotation (p < 0.05) but not lateral bending (p > 0.05). The 2 groups were not significantly different from each other in any bending mode for ROM and NZ, but in the destabilized condition the addition of screws/rods (D+SR) and screws/rods/cages (D+SR+C) significantly reduced ROM and NZ compared with the destabilized spine (D) in all bending modes (p < 0.05). Furthermore, the addition of the C1-2 intraarticular spacers (D+SR+C) significantly reduced ROM (flexion-extension and axial rotation) and NZ (lateral bending) compared with the screws and rods alone (D+SR).
CONCLUSIONS: Study result indicated that both the Goel and Harms techniques alone and with the addition of the C1-2 intraarticular spacers to the Goel-Harms technique are advantageous for stabilizing the atlantoaxial segment. The Goel technique combined with placement of a screw/rod construct appears to result in additional construct rigidity beyond the screw/rod technique and appears to be more useful in very unstable cases.

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Mesh:

Year:  2011        PMID: 21332283     DOI: 10.3171/2011.1.SPINE10446

Source DB:  PubMed          Journal:  J Neurosurg Spine        ISSN: 1547-5646


  8 in total

1.  Late complication of surgically treated atlantoaxial instability: occipital bone erosion induced by protruded fixed titanium rod: a case report.

Authors:  Yaoki Nakao; Nobuyuki Shimokawa; Hiroki Morisako; Yuji Tsukazaki; Aiko Terada; Kosuke Nakajo; Yoshihiko Fu
Journal:  J Chiropr Med       Date:  2014-12

2.  Extended tulip cervical reduction screws to restore alignment in traumatic atlantoaxial dislocation after type 3 odontoid fracture: illustrative case.

Authors:  Christopher F Dibble; Saad Javeed; Justin K Zhang; Brenton Pennicooke; Wilson Z Ray; Camilo Molina
Journal:  J Neurosurg Case Lessons       Date:  2021-10-11

3.  An experience with Goel-Harms C1-C2 fixation for type II odontoid fractures.

Authors:  Amit Kumar Jain; Manish Tawari; Lavlesh Rathore; Debabrata Sahana; Harshit Mishra; Sanjeev Kumar; Rajiv Kumar Sahu
Journal:  J Craniovertebr Junction Spine       Date:  2022-06-13

4.  Biomechanical Analysis of an Anterior Cervical Discectomy and Fusion Pseudarthrosis Model Revised With Machined Interfacet Allograft Spacers.

Authors:  Raymond J Hah; Ram Alluri; Paul A Anderson
Journal:  Global Spine J       Date:  2019-10-22

5.  Machined cervical interfacet allograft spacers for the management of atlantoaxial instability.

Authors:  Mazda K Turel; Mena G Kerolus; Vincent C Traynelis
Journal:  J Craniovertebr Junction Spine       Date:  2017 Oct-Dec

Review 6.  Intraoperative image guidance for cervical spine surgery.

Authors:  Sertac Kirnaz; Harry Gebhard; Taylor Wong; Raj Nangunoori; Franziska Anna Schmidt; Kosuke Sato; Roger Härtl
Journal:  Ann Transl Med       Date:  2021-01

7.  A novel classification and algorithmic-based management of craniovertebral junction osteoarthrosis.

Authors:  Luis Eduardo Carelli Texeira da Silva; Ahsan Ali Khan; Alderico Girão Campos de Barros; Fernando Miguel Krywinski; Fabio Antonio Cabral de Araujo Fagundes; Felipe Gomes de Souza E Silva
Journal:  J Craniovertebr Junction Spine       Date:  2020-11-26

8.  Interfacetal intra-articular spacers: Emergence of a concept.

Authors:  Atul Goel
Journal:  J Craniovertebr Junction Spine       Date:  2016 Apr-Jun
  8 in total

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