Biomechanical evaluation of intraosseous distal radioulnar joint prosthesis: A prosthesis designed based on Sauvé-Kapandji procedure

Orthop Traumatol Surg Res. 2021 Sep;107(5):102975. doi: 10.1016/j.otsr.2021.102975. Epub 2021 Jun 1.

Abstract

Introduction: To avoid the DRUJ surgical procedures disadvantages, a new intraosseous distal radioulnar prosthesis designed on Sauvé-Kapandji procedure has been introduced. Stability of the prosthesis and biomechanics are to be evaluated in this article.

Materials and methods: On a cadaveric study, during placement of the prosthesis, biometry of the bones, prosthesis stability (in axial and lateral tractions, wrist pronation and supination, and squeeze test), wrist range of motion before and after implantation, and radiographic evaluation were done on 16 cadavers.

Results: Range of motion of the wrist joint before and after the insertion of the prosthesis, had no significant difference in all six directions. Stability of the prosthesis, when rotational pronation force was exerted, was greater than when rotational supination force was exerted. The prosthesis showed significant stability against longitudinal traction forces in a way that no prosthesis dislocation was observed up to 150N forces. Stability of the prosthesis was investigated when lateral force was applied to different wrist positions. The most stable position of the prosthesis was in the case of lateral traction forces in supination where no case of dislocation was observed.

Conclusions: The intraosseous distal radioulnar prosthesis demonstrated stable structure with no effect on wrist range of motion.

Level of evidence: IV.

Keywords: Cadaver study; Distal radioulnar prosthesis; Kapandji procedure.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Artificial Limbs*
  • Humans
  • Joint Prosthesis*
  • Range of Motion, Articular
  • Supination
  • Wrist Joint / diagnostic imaging
  • Wrist Joint / surgery