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Limiting interpedicular screw displacement increases shear forces in screws: A finite element study

Article dans une revue avec comité de lecture
Auteur
LIMA, Lucas Venancio
CHARLES, Yann-Philippe
300149 Centre Hospitalier Universitaire [Strasbourg] [CHU Strasbourg]
ccSKALLI, Wafa
ccROUCH, Philippe
484605 LBM/institute de Biomécanique humaine Georges Charpak

URI
http://hdl.handle.net/10985/18099
DOI
10.1016/j.otsr.2017.05.004
Date
2017
Journal
Revue de Chirurgie Orthopédique et Traumatologique

Résumé

Background context: Screw loosening has been reported for non-fusion devices. Forces on pedicle screwscould be related to kinematic parameters as the interpedicular displacement (ID), which consists of thedisplacement between superior and inferior screw heads from full extension to full flexion.Purpose: To investigate the relationship between ID and screw loosening for different designs of posteriorimplants using a finite element model.Methods: An L3-sacrum previously validated spine FE model was used. Three-rod designs were consid-ered in L4-L5 segment: a rigid screw-rod implant, a flexible one and a specific design with a sliding rodproviding limited restrain in ID. In order to simulate intermediate configurations, the friction coefficientbetween the sliding rods and connectors were varied. The sacrum was rigidly fixed. Rotations (flexion-extension, lateral bending and axial rotation) were applied to L3, for each modeled configuration: intact,injured, injured with different implants. Model consistency was checked with existing experimentalin vitro data on intact and instrumented segments. Screw loads were computed as well as ID.Results: In flexion-extension, the ID was less than 2 mm for rigid (R) and flexible (F) constructs and 5.5 mmfor intact spine and the sliding implant (S3). Screw’s shear forces were 272 N, 153 N, 43 N respectivelyfor R, F and S3 constructs.Conclusions: Implants that allow ID presented lower screws loads. A compromise between the abilityof the implant to withstand compressive forces, which requires longitudinal stiffness, and its ability toallow ID could be important for future implant designs in order to prevent screw loosening.

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  • Institut de Biomécanique Humaine Georges Charpak (IBHGC)

Documents liés

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  • The effect of posterior non-fusion instrumentation on segmental shear loading of the lumbar spine 
    Article dans une revue avec comité de lecture
    CHARLES, Yann-Philippe; PERSOHN, Sylvain; STEIB, Jean-Paul; SAULEAU, E.A.; ccSKALLI, Wafa; ccROUCH, Philippe (Elsevier BV, 2014)
    Background : Lumbar stenosis and facet osteoarthritis represent indications for decompression and instrumentation. It is unclear if degenerative spondylolisthesis grade I with a remaining disc height could be an indication ...
  • Clinical Outcomes and Complications After Pedicle-anchored Dynamic or Hybrid Lumbar Spine Stabilization : A Systematic Literature Review 
    Article dans une revue avec comité de lecture
    PRUD'HOMME, Marion; BARRIOS, Carlos; CHARLES, Yann-Philippe; STEIB, Jean-Paul; ccSKALLI, Wafa; ccROUCH, Philippe (Lippincott, Williams & Wilkins, 2015)
    Fusion is the standard in-strumentation for many pathologies of the lumbar spine. Wor-rying rates of failure, including adjacent segment degeneration (ASD), have consistently been reported. The interest for dy-namic ...
  • Contribution to FE modeling for intraoperative pedicle screw strength prediction 
    Article dans une revue avec comité de lecture
    VAN DEN ABBEELE, Maxim; VALIADIS, Jean-Marc; LIMA, Lucas Venancio; KHALIFE, Pascal; ccSKALLI, Wafa; ccROUCH, Philippe (Taylor & Francis, 2017)
    Although the use of pedicle screws is considered safe, mechanical issues still often occur. Commonly reported issues are screw loosening, screw bending and screw fracture. The aim of this study was to develop a Finite ...
  • Influence of double rods and interbody cages on quasistatic range of motion of the spine after lumbopelvic instrumentation 
    Article dans une revue avec comité de lecture
    NTILIKINA, Yves; CHARLES, Yann Philippe; PERSOHN, Sylvain; ccSKALLI, Wafa (Springer Verlag, 2020)
    Purpose This in vitro biomechanical study compares residual lumbar range of motion (ROM) and rod strain after lumbopelvic instrumentation using 2 rods, 4 rods and interbody cages. Methods Seven human cadaveric specimens ...
  • Semi-automated stereoradiographic upper limb 3D reconstructions using a combined parametric and statistical model: a preliminary study 
    Article dans une revue avec comité de lecture
    LEBAILLY, Fréderic; LIMA, Lucas; CLAIREMIDI, Alain; AUBERT, Benjamin; ccGUÉRARD, Sandra; CHAÏBI, Yasmina; DE GUISE, Jacques; FONTAINE, Christian; ccSKALLI, Wafa (Springer Verlag (Germany), 2012)
    PURPOSE: Quantitative assessment of 3D clinical indices may be crucial for elbow surgery planning. 3D parametric modeling from bi-planar radiographs was successfully proposed for spine and lower limb clinical investigation ...

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