Facet joint changes after application of lumbar nonfusion dynamic stabilization

Neurosurg Focus. 2016 Jan;40(1):E6. doi: 10.3171/2015.10.FOCUS15456.

Abstract

OBJECTIVE The long-term effects on adjacent-segment pathology after nonfusion dynamic stabilization is unclear, and, in particular, changes at the adjacent facet joints have not been reported in a clinical study. This study aims to compare changes in the adjacent facet joints after lumbar spinal surgery. METHODS Patients who underwent monosegmental surgery at L4-5 with nonfusion dynamic stabilization using the Dynesys system (Dynesys group) or transforaminal lumbar interbody fusion with pedicle screw fixation (fusion group) were retrospectively compared. Facet joint degeneration was evaluated at each segment using the CT grading system. RESULTS The Dynesys group included 15 patients, while the fusion group included 22 patients. The preoperative facet joint degeneration CT grades were not different between the 2 groups. Compared with the preoperative CT grades, 1 side of the facet joints at L3-4 and L4-5 had significantly more degeneration in the Dynesys group. In the fusion group, significant facet joint degeneration developed on both sides at L2-3, L3-4, and L5-S1. The subjective back and leg pain scores were not different between the 2 groups during follow-up, but functional outcome based on the Oswestry Disability Index improved less in the fusion group than in the Dynesys group. CONCLUSIONS Nonfusion dynamic stabilization using the Dynesys system had a greater preventative effect on facet joint degeneration in comparison with that obtained using fusion surgery. The Dynesys system, however, resulted in facet joint degeneration at the instrumented segments and above. An improved physiological nonfusion dynamic stabilization system for lumbar spinal surgery should be developed.

Keywords: ASP = adjacent-segment pathology; COR = center of rotation; FEM = finite elements modeling; ODI = Oswestry Disability Index; PSF = pedicle screw fixation; ROM = range of motion; TLIF = transforaminal lumbar interbody fusion; VAS = visual analog scale; adjacent-segment pathology; dynamic stabilization; facet joint degeneration; nonfusion.

MeSH terms

  • Aged
  • Bone Screws
  • Female
  • Follow-Up Studies
  • Humans
  • Internal Fixators*
  • Lumbar Vertebrae / diagnostic imaging
  • Lumbar Vertebrae / surgery*
  • Male
  • Middle Aged
  • Radiography
  • Retrospective Studies
  • Spinal Fusion / instrumentation
  • Spinal Fusion / methods*
  • Spinal Stenosis / diagnostic imaging
  • Spinal Stenosis / surgery*
  • Zygapophyseal Joint / diagnostic imaging
  • Zygapophyseal Joint / surgery*