Literature DB >> 23127726

More is not necessarily better. A biomechanical study on distal screw numbers in volar locking distal radius plates.

Herwig Drobetz1, Patrick Weninger, Caroline Grant, Clare Heal, Reinhold Muller, Michael Schuetz, Minh Pham, Roland Steck.   

Abstract

INTRODUCTION: Currently available volar locking plates for the treatment of distal radius fractures incorporate at least two distal screw rows for fixation of the metaphyseal fragment and have a variable-angle locking mechanism which allows placement of the screws in various directions There is, however no evidence that these plates translate into better outcomes or have superior biomechanical properties to first generation plates, which had a single distal screw row and fixed-angle locking. The aim of our biomechanical study was to compare fixed-angle single-row plates with variable-angle multi-row plates to clarify the optimal number of locking screws.
MATERIALS AND METHODS: Five different plate-screw combinations of three different manufacturers were tested, each group consisting of five synthetic fourth generation distal radius bones. An AO type C2 fracture was created and the fractures were plated according to each manufacturer's recommendations. The specimens then underwent cyclic and load-to-failure testing. An optical motion analysis system was used to detect displacement of fragments.
RESULTS: No significant differences were detected after cyclic loading as well as after load-to-failure testing, neither in regard to axial deformation, implant rigidity or maximum displacement. The fixed-angle single-row plate showed the highest pre-test rigidity, least increase in post-testing rigidity and highest load-to-failure rigidity and least radial shortening. The radial shortening of plates with two distal screw rows was 3.1 and 4.3 times higher, respectively, than that of the fixed-angle single-row plate.
CONCLUSION: The results of our study indicate that two distal screw rows do not add to construct rigidity and resistance against loss of reduction. Well conducted clinical studies based on the findings of biomechanical studies are necessary to determine the optimal number of screws necessary to achieve reproducibly good results in the treatment of distal radius fractures.
Copyright © 2012 Elsevier Ltd. All rights reserved.

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Year:  2012        PMID: 23127726     DOI: 10.1016/j.injury.2012.10.012

Source DB:  PubMed          Journal:  Injury        ISSN: 0020-1383            Impact factor:   2.586


  5 in total

1.  The influence of distal screw length on the primary stability of volar plate osteosynthesis--a biomechanical study.

Authors:  Sebastian F Baumbach; Alexander Synek; Hannes Traxler; Wolf Mutschler; Dieter Pahr; Yan Chevalier
Journal:  J Orthop Surg Res       Date:  2015-09-08       Impact factor: 2.359

2.  Volar versus combined dorsal and volar plate fixation of complex intraarticular distal radius fractures with small dorsoulnar fragment - a biomechanical study.

Authors:  Mariya Hadzhinikolova; Ivan Zderic; Daniel Ciric; Jan P Barcik; Dian Enchev; Asen Baltov; Lyubomir Rusimov; Peter Varga; Karl Stoffel; Geoff Richards; Boyko Gueorguiev; Mihail Rashkov
Journal:  BMC Musculoskelet Disord       Date:  2022-01-05       Impact factor: 2.362

3.  Screw placement is everything: Risk factors for loss of reduction with volar locking distal radius plates.

Authors:  Herwig Drobetz; Alyce Black; Jonathan Davies; Petra Buttner; Clare Heal
Journal:  World J Orthop       Date:  2018-10-18

4.  How Many Screws Are Needed for Reliable Stability of Extra-articular Nonosteoporotic Distal Radius Fractures Fixed with Volar Locking Plates?

Authors:  Hyoung-Seok Jung; Han Sol Jung; Suk-Ho Baek; Jae Sung Lee
Journal:  Clin Orthop Surg       Date:  2020-02-13

5.  The Comparison of Biomechanical Volar and Dorsal Plating in Distal Part Radius Fractures; a Finite Element Analysis Study.

Authors:  Ali Ghaem-Maghami; Ehsan Fallah; Hamid Namazi; Mohammad-Taghi Karimi; Seyed Iman Hosseini
Journal:  Bull Emerg Trauma       Date:  2021-01
  5 in total

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