The influence of screw length on predicted cut-out failures for proximal humeral fracture fixations predicted by finite element simulations

Arch Orthop Trauma Surg. 2019 Aug;139(8):1069-1074. doi: 10.1007/s00402-019-03175-x. Epub 2019 Mar 20.

Abstract

Background: The aim of this study was to identify the effect of screw length on predictions of fixation failure in three-part proximal humeral fractures using a finite element-based osteosynthesis modelling toolkit.

Methods: A mal-reduced unstable three-part AO/OTA 11-B3.2 fracture with medial comminution was simulated in forty-two digitally processed proximal humeri covering a spectrum of bone densities and fixed with the PHILOS plate using three distal and six proximal locking screws. Four test groups were generated based on the screw tip to joint surface distance (TJD), with all proximal screws being shortened from 4 mm TJD to be 8, 12 or 16 mm TJD. Average bone strains around the screw tips, correlating with biomechanical cyclic cut-out-type failure, were evaluated in three physiological loading protocols representing simple shoulder motions. Six further groups were tested, where five of the proximal screws were inserted to 4 mm TJD and the sixth screw to 8 mm TJD.

Results: Exponential increases in the predicted risk of fixation failure were seen with increased tip-to-joint distances (p < 0.001). When one of the proximal screws was placed 8 mm from the joint, with the remaining five at 4 mm distance, significant increases (p < 0.001) were registered in the strains around the screw tips in all except the two superior screws. This effect was maximal around the calcar screws (p < 0.001) and for lower density samples (p < 0.001).

Conclusions: These results suggest that longer screws provide reduced risk of cut-out failure, i.e. distalisation and/or varisation of the head fragment, and thus may decrease failure rates in proximal humeral fractures treated with angular stable plates. These findings require clinical corroboration and further studies to investigate the risk of screw perforation.

Keywords: Finite element analysis; Fixation failure; Locking plate fixation; PHILOS plate; Proximal humerus fracture; Screw length.

MeSH terms

  • Aged
  • Aged, 80 and over
  • Bone Plates
  • Bone Screws*
  • Computer Simulation*
  • Female
  • Finite Element Analysis*
  • Fracture Fixation, Internal / instrumentation
  • Fracture Fixation, Internal / methods*
  • Fractures, Comminuted / diagnostic imaging
  • Fractures, Comminuted / surgery
  • Humans
  • Male
  • Middle Aged
  • Prosthesis Design
  • Shoulder Fractures / diagnostic imaging
  • Shoulder Fractures / surgery*
  • Tomography, X-Ray Computed

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