A new Proposal on Analysis of the Interfragmentary Displacements in the Fracture Gap

Research activities in the field of modern Biomedical engineering show a more intense trend towards the use of sophisticated engineering measurement tools in order to optimize existing medical devices. External fixators are such an example of the above mentioned. Critical design parameters are...

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Main Authors: Elmedin Mešić, Vahid Avdić, Nedim Pervan, Adil Muminović
Format: Article
Language:English
Published: UIKTEN 2015-08-01
Series:TEM Journal
Subjects:
Online Access:http://www.temjournal.com/content/43/06/TemJournalAugust2015_270_275.pdf
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spelling doaj-abd0417ccafd425ea263a28fd3fa0c482020-11-25T00:26:43ZengUIKTENTEM Journal2217-83092217-83332015-08-0143270275A new Proposal on Analysis of the Interfragmentary Displacements in the Fracture GapElmedin Mešić0Vahid Avdić1Nedim Pervan2Adil Muminović3Mechanical Engineering Faculty, Vilsonovo šetalište br. 9, Sarajevo, Bosnia and HerzegovinaMechanical Engineering Faculty, Vilsonovo šetalište br. 9, Sarajevo, Bosnia and HerzegovinaMechanical Engineering Faculty, Vilsonovo šetalište br. 9, Sarajevo, Bosnia and HerzegovinaMechanical Engineering Faculty, Vilsonovo šetalište br. 9, Sarajevo, Bosnia and HerzegovinaResearch activities in the field of modern Biomedical engineering show a more intense trend towards the use of sophisticated engineering measurement tools in order to optimize existing medical devices. External fixators are such an example of the above mentioned. Critical design parameters are being optimized by the use of existing engineering research methodology. One of the most important parameter for external fixators that have to be tracked are the interfragmentary displacements between the proximal and distal bone segment. This is usually achieved by the use of a finite element method. Another way is the use of displacement sensors or transducers. To verify these numerical results and to gain additional real life footage of interfragmentary displacements during testing, the use of a high speed camera has been taken into consideration. This paper compares previously acquired numerical data for a specific external fixator design parallel to the same setup whilst being recorded with a high speed camera. Results indicate good superposition with previously obtained datahttp://www.temjournal.com/content/43/06/TemJournalAugust2015_270_275.pdfHigh speed cameraexternal fixatorinterfragmentary displacementsfinite element method
collection DOAJ
language English
format Article
sources DOAJ
author Elmedin Mešić
Vahid Avdić
Nedim Pervan
Adil Muminović
spellingShingle Elmedin Mešić
Vahid Avdić
Nedim Pervan
Adil Muminović
A new Proposal on Analysis of the Interfragmentary Displacements in the Fracture Gap
TEM Journal
High speed camera
external fixator
interfragmentary displacements
finite element method
author_facet Elmedin Mešić
Vahid Avdić
Nedim Pervan
Adil Muminović
author_sort Elmedin Mešić
title A new Proposal on Analysis of the Interfragmentary Displacements in the Fracture Gap
title_short A new Proposal on Analysis of the Interfragmentary Displacements in the Fracture Gap
title_full A new Proposal on Analysis of the Interfragmentary Displacements in the Fracture Gap
title_fullStr A new Proposal on Analysis of the Interfragmentary Displacements in the Fracture Gap
title_full_unstemmed A new Proposal on Analysis of the Interfragmentary Displacements in the Fracture Gap
title_sort new proposal on analysis of the interfragmentary displacements in the fracture gap
publisher UIKTEN
series TEM Journal
issn 2217-8309
2217-8333
publishDate 2015-08-01
description Research activities in the field of modern Biomedical engineering show a more intense trend towards the use of sophisticated engineering measurement tools in order to optimize existing medical devices. External fixators are such an example of the above mentioned. Critical design parameters are being optimized by the use of existing engineering research methodology. One of the most important parameter for external fixators that have to be tracked are the interfragmentary displacements between the proximal and distal bone segment. This is usually achieved by the use of a finite element method. Another way is the use of displacement sensors or transducers. To verify these numerical results and to gain additional real life footage of interfragmentary displacements during testing, the use of a high speed camera has been taken into consideration. This paper compares previously acquired numerical data for a specific external fixator design parallel to the same setup whilst being recorded with a high speed camera. Results indicate good superposition with previously obtained data
topic High speed camera
external fixator
interfragmentary displacements
finite element method
url http://www.temjournal.com/content/43/06/TemJournalAugust2015_270_275.pdf
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