Applied Sciences (Jan 2022)

Biomechanical Analysis of Staples for Epiphysiodesis

  • Karel Frydrýšek,
  • Daniel Čepica,
  • Tomáš Halo,
  • Ondřej Skoupý,
  • Leopold Pleva,
  • Roman Madeja,
  • Jana Pometlová,
  • Monika Losertová,
  • Jan Koutecký,
  • Pavel Michal,
  • Vojtěch Havlas,
  • Šimon Kraus,
  • Dominik Ďurica,
  • Kateřina Peterek Dědková,
  • Marek Pagáč,
  • Pavel Krpec,
  • Paweł Osemlak

DOI
https://doi.org/10.3390/app12020614
Journal volume & issue
Vol. 12, no. 2
p. 614

Abstract

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Limb asymmetry can, and often does, cause various health problems. Blount bone staples (clips) are used to correct such uneven growth. This article analyzes the performance of a biomechanical staple during bone (tibia) growth arrest. The staples considered in this study were made of 1.4441 stainless steel, the model of tibia consisted of two materials representing corticalis and spongiosis. Hooke’s law was used for modeling materials’ behaviors for finite element analysis (FEA). The maxima of stress and total staple displacement were evaluated using the finite element method and verification of the results, along with the determination of the maximum loading (growing) force that the staples are capable of withstanding, was performed experimentally. The presented method can be used to determine the safety and usability of staples for bone growth arrest. According to our results, the design of Blount staples considered in this paper is safe and suitable for orthopedic treatment.

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