Literature DB >> 27611508

The effect of posterior polyester tethers on the biomechanics of proximal junctional kyphosis: a finite element analysis.

Shay Bess1, Jeffrey E Harris2, Alexander W L Turner2, Virginie LaFage3, Justin S Smith4, Christopher I Shaffrey4, Frank J Schwab3, Regis W Haid5.   

Abstract

OBJECTIVE Proximal junctional kyphosis (PJK) remains problematic following multilevel instrumented spine surgery. Previous biomechanical studies indicate that providing less rigid fixation at the cranial aspect of a long posterior instrumented construct, via transition rods or hooks at the upper instrumented vertebra (UIV), may provide a gradual transition to normal motion and prevent PJK. The purpose of this study was to evaluate the ability of posterior anchored polyethylene tethers to distribute proximal motion segment stiffness in long instrumented spine constructs. METHODS A finite element model of a T7-L5 spine segment was created to evaluate range of motion (ROM), intradiscal pressure, pedicle screw loads, and forces in the posterior ligament complex within and adjacent to the proximal terminus of an instrumented spine construct. Six models were tested: 1) intact spine; 2) bilateral, segmental pedicle screws (PS) at all levels from T-11 through L-5; 3) bilateral pedicle screws from T-12 to L-5 and transverse process hooks (TPH) at T-11 (the UIV); 4) pedicle screws from T-11 to L5 and 1-level tethers from T-10 to T-11 (TE-UIV+1); 5) pedicle screws from T-11 to L-5 and 2-level tethers from T-9 to T-11 (TE-UIV+2); and 6) pedicle screws and 3-level tethers from T-8 to T-11 (TE-UIV+3). RESULTS Proximal-segment range of motion (ROM) for the PS construct increased from 16% at UIV-1 to 91% at UIV. Proximal-segment ROM for the TPH construct increased from 27% at UIV-1 to 92% at UIV. Posterior tether constructs distributed ROM at the UIV and cranial adjacent segments most effectively; ROM for TE-UIV+1 was 14% of the intact model at UIV-1, 76% at UIV, and 98% at UIV+1. ROM for TE-UIV+2 was 10% at UIV-1, 51% at UIV, 69% at UIV+1, and 97% at UIV+2. ROM for TE-UIV+3 was 7% at UIV-1, 33% at UIV, 45% at UIV+1, and 64% at UIV+2. Proximal segment intradiscal pressures, pedicle screw loads, and ligament forces in the posterior ligament complex were progressively reduced with increasing number of posterior tethers used. CONCLUSIONS Finite element analysis of long instrumented spine constructs demonstrated that posterior tethers created a more gradual transition in ROM and adjacent-segment stress from the instrumented to the noninstrumented spine compared with all PS and TPH constructs. Posterior tethers may limit the biomechanical risk factor for PJK; however, further clinical research is needed to evaluate clinical efficacy.

Entities:  

Keywords:  ISL = interspinous ligament; PJF = proximal junctional failure; PJK = proximal junctional kyphosis; ROM = range of motion; SSL = supraspinous ligament; TPH = transverse process hooks; UIV = upper instrumented vertebra; biomechanics; proximal junctional kyphosis; spine deformity

Mesh:

Year:  2016        PMID: 27611508     DOI: 10.3171/2016.6.SPINE151477

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


  19 in total

1.  The influence of spinal fusion length on proximal junction biomechanics: a parametric computational study.

Authors:  Dominika Ignasiak; Tobias Peteler; Tamás F Fekete; Daniel Haschtmann; Stephen J Ferguson
Journal:  Eur Spine J       Date:  2018-07-23       Impact factor: 3.134

Review 2.  Incidence and risk factors of proximal junctional kyphosis after internal fixation for adult spinal deformity: a systematic evaluation and meta-analysis.

Authors:  Jian Zhao; Kai Chen; Xiao Zhai; Kai Chen; Ming Li; Yanghu Lu
Journal:  Neurosurg Rev       Date:  2020-05-19       Impact factor: 3.042

Review 3.  Realignment surgery in adult spinal deformity : Prevalence and risk factors for proximal junctional kyphosis.

Authors:  B G Diebo; N V Shah; S G Stroud; C B Paulino; F J Schwab; V Lafage
Journal:  Orthopade       Date:  2018-04       Impact factor: 1.087

4.  Effect of sagittal shape on proximal junctional kyphosis following thoracopelvic corrective fusion for adult spinal deformity: postoperative inflection vertebra cranial to T12 is a significant risk factor.

Authors:  Sreenath Jakinapally; Yu Yamato; Tomohiko Hasegawa; Daisuke Togawa; Go Yoshida; Tomohiro Banno; Hideyuki Arima; Shin Oe; Tatsuya Yasuda; Hiroki Ushirozako; Tomohiro Yamada; Koichirou Ide; Yuh Watanabe; Yukihiro Matsuyama
Journal:  Spine Deform       Date:  2020-06-23

5.  Proximal junctional failure after surgical instrumentation in adult spinal deformity: biomechanical assessment of proximal instrumentation stiffness.

Authors:  Maeva Lopez Poncelas; Luigi La Barbera; Jeremy Rawlinson; Dennis Crandall; Carl-Eric Aubin
Journal:  Spine Deform       Date:  2022-09-09

6.  Clinically relevant biomechanical properties of three different fixation techniques of the upper instrumented vertebra in deformity surgery.

Authors:  Edin Nevzati; Manuel Moser; Nick Dietz; Burt Yaszay; Lawrence G Lenke; Mazda Farshad; Varun Arvind; Samuel K Cho; Alexander Spiessberger
Journal:  Spine Deform       Date:  2022-04-15

7.  Posterior Ligamentous Reinforcement of the Upper Instrumented Vertebrae +1 Does Not Decrease Proximal Junctional Kyphosis in Adult Spinal Deformity.

Authors:  Sravisht Iyer; Francis Lovecchio; Jonathan Charles Elysée; Renaud Lafage; Michael Steinhaus; Frank J Schwab; Virginie Lafage; Han Jo Kim
Journal:  Global Spine J       Date:  2019-08-15

8.  Effect of Serious Adverse Events on Health-related Quality of Life Measures Following Surgery for Adult Symptomatic Lumbar Scoliosis.

Authors:  Justin S Smith; Christopher I Shaffrey; Michael P Kelly; Elizabeth L Yanik; Jon D Lurie; Christine R Baldus; Charles Edwards; Steven D Glassman; Lawrence G Lenke; Oheneba Boachie-Adjei; Jacob M Buchowski; Leah Y Carreon; Charles H Crawford; Thomas J Errico; Stephen J Lewis; Tyler Koski; Stefan Parent; Han Jo Kim; Christopher P Ames; Shay Bess; Frank J Schwab; Keith H Bridwell
Journal:  Spine (Phila Pa 1976)       Date:  2019-09-01       Impact factor: 3.241

Review 9.  State of the art: proximal junctional kyphosis-diagnosis, management and prevention.

Authors:  Zeeshan M Sardar; Yongjung Kim; Virginie Lafage; Frank Rand; Lawrence Lenke; Eric Klineberg
Journal:  Spine Deform       Date:  2021-01-15

10.  Biomechanical study of rod stress after pedicle subtraction osteotomy versus anterior column reconstruction: A finite element study.

Authors:  Jacob Januszewski; Joshua M Beckman; Jeffrey E Harris; Alexander W Turner; Chun Po Yen; Juan S Uribe
Journal:  Surg Neurol Int       Date:  2017-09-06
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