Biomechanics of two external fixator devices used in rat femoral fractures

ABSTRACT The use of external fixators allows for the direct investigation of newly formed interfragmentary bone, and the radiographic evaluation of the fracture. We validated the results of a finite element (FE) model with the in vitro stiffness’ of two widely used external fixator devices used for...

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Veröffentlicht in:Journal of orthopaedic research 2019-02, Vol.37 (2), p.293-298
Hauptverfasser: Osagie‐Clouard, Liza, Kaufmann, Joshua, Blunn, Gordon, Coathup, Melanie, Pendegrass, Catherine, Meeson, Richard, Briggs, Timothy, Moazen, Mehran
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Sprache:eng
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Zusammenfassung:ABSTRACT The use of external fixators allows for the direct investigation of newly formed interfragmentary bone, and the radiographic evaluation of the fracture. We validated the results of a finite element (FE) model with the in vitro stiffness’ of two widely used external fixator devices used for in vivo analysis of fracture healing in rat femoral fractures with differing construction (Ti alloy ExFix1 and PEEK ExFix2). Rat femoral fracture fixation was modeled using two external fixators. For both constructs an osteotomy of 2.75 mm was used, and offset maintained at 5 mm. Tufnol, served as standardized substitutes for rat femora. Constructs were loaded under axial compression and torsion. Overall axial and torsional stiffness were compared between the in vitro models and FE results. FE models were also used to compare the fracture movement and overall pattern of von Mises stress across the external fixators. In vitro axial stiffness of ExFix1 was 29.26 N/mm ± 3.83 compared to ExFix2 6.31 N/mm ± 0.67 (p* 
ISSN:0736-0266
1554-527X
DOI:10.1002/jor.24034