Biomechanical effect of different plate-to-disc distance on surgical and adjacent segment in anterior cervical discectomy and fusion - a finite element analysis

BMC Musculoskelet Disord. 2021 Apr 9;22(1):340. doi: 10.1186/s12891-021-04218-4.

Abstract

Background: The plate-to-disc distance (PDD) is an important factor affecting the degeneration of adjacent segments after anterior cervical discectomy and fusion (ACDF). However, the most suitable PDD is controversial. This study examined the adjacent intervertebral disc stress, bone graft stress, titanium plate stress and screw stress to evaluate the biomechanical effect of different PDD on surgical segment and adjacent segment following C5/C6 ACDF.

Methods: We constructed 10 preoperative finite element models of intact C4-C7 segments and validated them in the present study. We simulated ACDF surgery based on the 10 intact models in software. We designed three different distance of plate-to-disc titanium plates: long PDD (10 mm), medium PDD (5 mm) and short PDD (0 mm). The changes in C4/C5 and C6/C7 intervertebral disc stress, bone graft stress, titanium plate stress and screw stress were analyzed.

Results: The von Mises stress of C4/C5 and C6/C7 intervertebral discs had no significant differences (P > 0.05) in three different PDD groups. Titanium plate stress increased as the PDD decreased. The bone graft stress and screws stress decreased as the PDD decreased. The maximum stress of each part occurred was mostly in the conditions of rotation and lateral bending.

Conclusions: The PDD has no effect on adjacent intervertebral disc stress, but it is an important factor that affecting the bone graft stress, titanium plate stress and screws stress after ACDF. Shorter PDD plate can provide better stability to reduce stress on screws and bone graft, which may be helpful to prevent cage subsidence, pseudarthrosis and instrument failure. This can serve as a reference for clinical choice of plate.

Keywords: Adjacent segment degeneration; Biomechanical effect; Cervical vertebrae; Complication; Degenerative disc disease; Finite element analysis; Plate-to-disc distance; Spinal fusion; Spine surgery.

MeSH terms

  • Biomechanical Phenomena
  • Cervical Vertebrae / surgery
  • Diskectomy / adverse effects
  • Finite Element Analysis
  • Humans
  • Intervertebral Disc Degeneration* / surgery
  • Range of Motion, Articular
  • Spinal Fusion* / adverse effects