Computer modeling of the system "bone — hybrid anchor" for proximal humerus fracture and scientific numeral outcomes for basic loads
<p>The aim: to study the indices of stress-deforming state of biomechanical system «bone — hybrid anchor» in proximal humerus fractures. Material and Methods. The study of anchorage stiffness in juxta-articular fracture (type 11A3 by AO/ASIF) through applying three load types: axial (200 N), t...
Main Authors: | , , , , , |
---|---|
Format: | Article |
Language: | Russian |
Published: |
Saratov State Medical University
2017-09-01
|
Series: | Саратовский научно-медицинский журнал |
Subjects: | |
Online Access: | http://www.ssmj.ru/system/files/2017_03-2_738-742.pdf |
_version_ | 1819089640991227904 |
---|---|
author | Kauts О.A. Barabash А.Р. Barabash Ju.A. Grazhdanov К.А. Rusanov A.G. Ivanov D.V. |
author_facet | Kauts О.A. Barabash А.Р. Barabash Ju.A. Grazhdanov К.А. Rusanov A.G. Ivanov D.V. |
author_sort | Kauts О.A. |
collection | DOAJ |
description | <p>The aim: to study the indices of stress-deforming state of biomechanical system «bone — hybrid anchor» in proximal humerus fractures. Material and Methods. The study of anchorage stiffness in juxta-articular fracture (type 11A3 by AO/ASIF) through applying three load types: axial (200 N), transverse (30 N) and torsional (5 N*m) was conducted followed by CAD modeling in SolidWorks and the analysis of stress-deforming state of the system «bone — anchor». Results. While studying the stability of «bone — anchor» system it was found that a new device for proximal humerus fracture ostheosynthesis under the applied loads do not decompose with maximal translocations of bone fragments and maximums of equivalent stress being present under torsional load and comprise 1.6 mm. and 152 Mpa respectively. Conclusion. The application of hybrid devices for juxta-articular fractures of humerus allows carrying out minimally traumatic anchorage with the following early functionality of the injured segment.</p> |
first_indexed | 2024-12-21T22:11:09Z |
format | Article |
id | doaj.art-ea5a9ff9584443318c248ef921ce7b08 |
institution | Directory Open Access Journal |
issn | 2076-2518 |
language | Russian |
last_indexed | 2024-12-21T22:11:09Z |
publishDate | 2017-09-01 |
publisher | Saratov State Medical University |
record_format | Article |
series | Саратовский научно-медицинский журнал |
spelling | doaj.art-ea5a9ff9584443318c248ef921ce7b082022-12-21T18:48:35ZrusSaratov State Medical UniversityСаратовский научно-медицинский журнал2076-25182017-09-011337387424850Computer modeling of the system "bone — hybrid anchor" for proximal humerus fracture and scientific numeral outcomes for basic loadsKauts О.A.Barabash А.Р.Barabash Ju.A.Grazhdanov К.А.Rusanov A.G.Ivanov D.V.<p>The aim: to study the indices of stress-deforming state of biomechanical system «bone — hybrid anchor» in proximal humerus fractures. Material and Methods. The study of anchorage stiffness in juxta-articular fracture (type 11A3 by AO/ASIF) through applying three load types: axial (200 N), transverse (30 N) and torsional (5 N*m) was conducted followed by CAD modeling in SolidWorks and the analysis of stress-deforming state of the system «bone — anchor». Results. While studying the stability of «bone — anchor» system it was found that a new device for proximal humerus fracture ostheosynthesis under the applied loads do not decompose with maximal translocations of bone fragments and maximums of equivalent stress being present under torsional load and comprise 1.6 mm. and 152 Mpa respectively. Conclusion. The application of hybrid devices for juxta-articular fractures of humerus allows carrying out minimally traumatic anchorage with the following early functionality of the injured segment.</p>http://www.ssmj.ru/system/files/2017_03-2_738-742.pdfbiomechanicshybrid anchorjuxta-articular fracturemodeling |
spellingShingle | Kauts О.A. Barabash А.Р. Barabash Ju.A. Grazhdanov К.А. Rusanov A.G. Ivanov D.V. Computer modeling of the system "bone — hybrid anchor" for proximal humerus fracture and scientific numeral outcomes for basic loads Саратовский научно-медицинский журнал biomechanics hybrid anchor juxta-articular fracture modeling |
title | Computer modeling of the system "bone — hybrid anchor" for proximal humerus fracture and scientific numeral outcomes for basic loads |
title_full | Computer modeling of the system "bone — hybrid anchor" for proximal humerus fracture and scientific numeral outcomes for basic loads |
title_fullStr | Computer modeling of the system "bone — hybrid anchor" for proximal humerus fracture and scientific numeral outcomes for basic loads |
title_full_unstemmed | Computer modeling of the system "bone — hybrid anchor" for proximal humerus fracture and scientific numeral outcomes for basic loads |
title_short | Computer modeling of the system "bone — hybrid anchor" for proximal humerus fracture and scientific numeral outcomes for basic loads |
title_sort | computer modeling of the system bone hybrid anchor for proximal humerus fracture and scientific numeral outcomes for basic loads |
topic | biomechanics hybrid anchor juxta-articular fracture modeling |
url | http://www.ssmj.ru/system/files/2017_03-2_738-742.pdf |
work_keys_str_mv | AT kautsoa computermodelingofthesystembonehybridanchorforproximalhumerusfractureandscientificnumeraloutcomesforbasicloads AT barabashar computermodelingofthesystembonehybridanchorforproximalhumerusfractureandscientificnumeraloutcomesforbasicloads AT barabashjua computermodelingofthesystembonehybridanchorforproximalhumerusfractureandscientificnumeraloutcomesforbasicloads AT grazhdanovka computermodelingofthesystembonehybridanchorforproximalhumerusfractureandscientificnumeraloutcomesforbasicloads AT rusanovag computermodelingofthesystembonehybridanchorforproximalhumerusfractureandscientificnumeraloutcomesforbasicloads AT ivanovdv computermodelingofthesystembonehybridanchorforproximalhumerusfractureandscientificnumeraloutcomesforbasicloads |