Skip to main navigation Skip to search Skip to main content

Investigation of metallic and carbon fibre PEEK fracture fixation devices for three-part proximal humeral fractures

  • Emer M. Feerick
  • , Jim Kennedy
  • , Hannan Mullett
  • , David FitzPatrick
  • , Patrick McGarry
  • University of Galway
  • Cappagh Orthopaedic Hospital
  • Sports Surgery Clinic
  • College of Engineering and Architecture

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

70 Citations (Scopus)

Abstract

A computational investigation of proximal humeral fracture fixation has been conducted. Four devices were selected for the study; a locking plate, intramedullary nail (IM Nail), K-wires and a Bilboquet device. A 3D model of a humerus was created using a process of thresholding based on the grayscale values of a CT scan of an intact humerus. An idealised three part fracture was created in addition to removing a standard volume from the humeral head as a representation of bone voids that occur as a result of the injury. All finite element simulations conducted represent 90° arm abduction. Simulations were conducted to investigate the effect of filling this bone void with calcium phosphate cement for each device. The effect of constructing devices from carbon fibre polyetheretherketone (CFPEEK) was investigated. Simulations of cement reinforced devices predict greater stability for each device. The average unreinforced fracture line opening (FLO) is reduced by 48.5% for metallic devices with a lesser effect on composite devices with FLO reduced by 23.6%. Relative sliding (shear displacement) is also reduced between fracture fragments by an average of 58.34%. CFPEEK device simulations predict reduced stresses at the device-bone interface.

Original languageEnglish
Pages (from-to)712-722
Number of pages11
JournalMedical Engineering and Physics
Volume35
Issue number6
DOIs
Publication statusPublished - 2013

Keywords

  • Carbon fibre PEEK
  • Cement reinforcement
  • Finite element
  • Fracture fixation
  • Humerus
  • Inter-fragmentary micro-motion

Fingerprint

Dive into the research topics of 'Investigation of metallic and carbon fibre PEEK fracture fixation devices for three-part proximal humeral fractures'. Together they form a unique fingerprint.

Cite this