Literature DB >> 31864842

Biomechanical Analysis of a Novel Syndesmotic Plate Compared With Traditional Screw and Suture Button Fixation.

Qihao Weng1, Chuanlu Lin1, Yang Liu1, Gaole Dai1, Vinesh Lutchooman2, Jianjun Hong3.   

Abstract

Many lateral malleolus fractures have been found to have syndesmosis injuries after anatomic reduction. The main methods for the treatment of syndesmosis injuries are screw fixation and suture-button flexible fixations. In pursuit of innovation, we have designed a novel syndesmotic plate (NSP) for simultaneous fixation of lateral malleolus fractures and distal tibiofibular syndesmosis injuries. The purpose of this study is to compare the biomechanical characteristics of the NSP to syndesmotic screw and suture-button fixations. Twelve adult cadaveric specimens were used in this experiment. Axial loading as well as rotation torque were applied in 3 different ankle positions: neutral, dorsiflexion, and plantarflexion. After the initial specimens were tested, they were made into a pronation-abduction III fracture model as described by Lauge-Hansen. Subsequently, the specimens were fixed sequentially using a distal fibular anatomic locking plate (DFALP) combined with syndesmotic screws, DFALP combined with suture button, and NSP. Then the above tests were repeated. The syndesmotic displacement and the strain of the tibia and fibula were recorded during the experiment. In most cases, the displacements and strains of the NSP group and the screw group were smaller than the suture button groups and the native (SBGAN) (p < .05), and the displacements and strains of the NSP group were also slightly smaller than the screw group in most cases, and there was no significant difference between the 2 groups. The NSP we developed has a fixed strength no less than the traditional syndesmotic screw fixation. This provides us a new idea for the treatment of distal tibiofibular syndesmosis injuries.
Copyright © 2019 the American College of Foot and Ankle Surgeons. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  ankle fracture; biomechanical; novel syndesmotic plate; syndesmosis

Mesh:

Year:  2019        PMID: 31864842     DOI: 10.1053/j.jfas.2019.07.025

Source DB:  PubMed          Journal:  J Foot Ankle Surg        ISSN: 1067-2516            Impact factor:   1.286


  3 in total

1.  A Novel Adjustable EndoButton Fixation Assisted by 3D Printing Technology for Tibiofibular Syndesmosis Injury: A Biomechanical Study.

Authors:  Lei Zhang; Junjie Xu; Xiangyu Tang; Xin Zhou; Bingkun Li; Guoyou Wang
Journal:  Front Bioeng Biotechnol       Date:  2022-03-10

2.  Impact of Small Incision Reduction and Suture Linked with Functional Appliance of Sufferers with Irrecoverable TMJ Anterior Disc Displacement.

Authors:  Xiaotong Wei; Wei Yan; Anjun Sun; Hao Wang; Wei Wang
Journal:  Comput Math Methods Med       Date:  2022-09-26       Impact factor: 2.809

3.  Evidence-Based Surgical Treatment Algorithm for Unstable Syndesmotic Injuries.

Authors:  Markus Regauer; Gordon Mackay; Owen Nelson; Wolfgang Böcker; Christian Ehrnthaller
Journal:  J Clin Med       Date:  2022-01-10       Impact factor: 4.241

  3 in total

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