Biomechanical evaluation of the dorsal double plating angle-stable fixator versus conventional volar plating for the fixation of intra-articular distal radius fracture
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Institute of Electrical and Electronics Engineers (IEEE)
2012
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my.unimap-214012012-10-18T07:49:39Z Biomechanical evaluation of the dorsal double plating angle-stable fixator versus conventional volar plating for the fixation of intra-articular distal radius fracture Arash Nasrollahi, Shirazi Mohammed Rafiq, Abdul Kadir arashnasrolahishirazi@gmail.com Component Distal radius fracture Angle-stable construct Dorsal angle-stable double plate Link to publisher's homepage at http://ieeexplore.ieee.org/ The conventional surgical method with volar plating has been described the good results in young patient. However, the elderly patients especially who has the osteoporotic bone may have higher risk of loss of reduction in conventional types of fixation. The aim of this study is to compare the latest treatment angle-stable construct with conventional model for unstable three fragmental intar-articular distal radius fracture (AO 23-C2.1) under various Axial-loads (10 N, 25 N, 50 N and 100 N) conditions using finite element analysis in order to find the stiffer surgical methods to facilitate the anatomic reduction and maintenance of the reduction. The fixation methods consist of 1 Ishape styloid plate and 1 intermediate dorsal plate (Group 1), single T-shape volar plate (Group 2). This study analysed the rigidity base on linear load-displacement graph. To compare the rigidity of fixation methods analysed under the applied axialloads. The displacement and von Mises stress values showed the superior stability and rigidity for dorsal angle-stable double plates construct. 2012-10-18T07:49:39Z 2012-10-18T07:49:39Z 2012-02-27 Working Paper p. 498-500 978-145771989-9 http://ieeexplore.ieee.org/xpl/articleDetails.jsp?arnumber=6179067 http://hdl.handle.net/123456789/21401 en Proceedings of the International Conference on Biomedical Engineering (ICoBE 2012) Institute of Electrical and Electronics Engineers (IEEE) |
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Component Distal radius fracture Angle-stable construct Dorsal angle-stable double plate |
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Component Distal radius fracture Angle-stable construct Dorsal angle-stable double plate Arash Nasrollahi, Shirazi Mohammed Rafiq, Abdul Kadir Biomechanical evaluation of the dorsal double plating angle-stable fixator versus conventional volar plating for the fixation of intra-articular distal radius fracture |
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Link to publisher's homepage at http://ieeexplore.ieee.org/ |
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arashnasrolahishirazi@gmail.com |
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arashnasrolahishirazi@gmail.com Arash Nasrollahi, Shirazi Mohammed Rafiq, Abdul Kadir |
format |
Working Paper |
author |
Arash Nasrollahi, Shirazi Mohammed Rafiq, Abdul Kadir |
author_sort |
Arash Nasrollahi, Shirazi |
title |
Biomechanical evaluation of the dorsal double plating angle-stable fixator versus conventional volar plating for the fixation of intra-articular distal radius fracture |
title_short |
Biomechanical evaluation of the dorsal double plating angle-stable fixator versus conventional volar plating for the fixation of intra-articular distal radius fracture |
title_full |
Biomechanical evaluation of the dorsal double plating angle-stable fixator versus conventional volar plating for the fixation of intra-articular distal radius fracture |
title_fullStr |
Biomechanical evaluation of the dorsal double plating angle-stable fixator versus conventional volar plating for the fixation of intra-articular distal radius fracture |
title_full_unstemmed |
Biomechanical evaluation of the dorsal double plating angle-stable fixator versus conventional volar plating for the fixation of intra-articular distal radius fracture |
title_sort |
biomechanical evaluation of the dorsal double plating angle-stable fixator versus conventional volar plating for the fixation of intra-articular distal radius fracture |
publisher |
Institute of Electrical and Electronics Engineers (IEEE) |
publishDate |
2012 |
url |
http://dspace.unimap.edu.my/xmlui/handle/123456789/21401 |
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1643793392843358208 |
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13.211869 |