Literature DB >> 31948331

Intramedullary screw fixation for metacarpal shaft fractures: a biomechanical human cadaver study.

Raffael Labèr1, David Jann1, Pascal Behm2, Stephen J Ferguson2, Florian S Frueh1, Maurizio Calcagni1.   

Abstract

Intramedullary cannulated compression screws have been introduced for the fixation of unstable metacarpal fractures. In the present study, this technique was compared with dorsal compression plating to evaluate its biomechanical performance in stabilizing metacarpal shaft fractures. In a first set of experiments, the biomechanical characteristics of the screws were analysed in an artificial bone model. In subsequent experiments, midshaft osteotomies were performed in human cadaver metacarpals, followed by plating or intramedullary screw osteosynthesis. The metacarpals were tested to failure in cantilever bending, following a stepwise increasing cyclic loading protocol. We found a significantly lower load at failure and a significantly lower number of cycles to failure in the intramedullary screw group, but both methods offered sufficient stability under these loads. With reference to published loads on the metacarpals during use of the hand, we conclude that intramedullary osteosynthesis yields sufficient strength and stiffness for early active motion. A difference in its fixation stability is noted compared with plate fixation, which may not be clinically relevant.

Entities:  

Keywords:  Fracture; biomechanical analysis; human cadaver; intramedullary screw; osteosynthesis

Mesh:

Year:  2020        PMID: 31948331     DOI: 10.1177/1753193419898066

Source DB:  PubMed          Journal:  J Hand Surg Eur Vol        ISSN: 0266-7681


  1 in total

1.  Metacarpal shaft fixation: a biomechanical comparison of dorsal plating, lag screws, and headless compression screws.

Authors:  Felix G E Dyrna; Daniel M Avery; Ryu Yoshida; David Lam; Simon Oeckenpöhler; Mark P Cote; Elifho Obopilwe; Craig M Rodner; Augustus D Mazzocca
Journal:  BMC Musculoskelet Disord       Date:  2021-04-07       Impact factor: 2.362

  1 in total

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