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MECHANICAL ADVANTAGES OF A TRUSS-STRUCTURE-BASED FRACTURE FIXATION SYSTEM – A NOVEL FRACTURE FIXATION DEVICE "PINFIX" –

A small, light, ball-joint device called PinFix, which can instantly convert a simple percutaneous cross pin fracture fixation system into a rigid external fracture fixation system based on truss structure, was developed. The purpose of this study was to compare the mechanical load and breaking stre...

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Autores principales: ARAI, TETSUYA, YAMAMOTO, MICHIRO, IWATSUKI, KATSUYUKI, NATSUME, TADAHIRO, SHINOHARA, TAKAAKI, TATEBE, MASAHIRO, KURIMOTO, SHIGERU, OTA, HIDEYUKI, KATO, SHUICHI, HIRATA, HITOSHI
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nagoya University 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4345674/
https://www.ncbi.nlm.nih.gov/pubmed/24640174
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author ARAI, TETSUYA
YAMAMOTO, MICHIRO
IWATSUKI, KATSUYUKI
NATSUME, TADAHIRO
SHINOHARA, TAKAAKI
TATEBE, MASAHIRO
KURIMOTO, SHIGERU
OTA, HIDEYUKI
KATO, SHUICHI
HIRATA, HITOSHI
author_facet ARAI, TETSUYA
YAMAMOTO, MICHIRO
IWATSUKI, KATSUYUKI
NATSUME, TADAHIRO
SHINOHARA, TAKAAKI
TATEBE, MASAHIRO
KURIMOTO, SHIGERU
OTA, HIDEYUKI
KATO, SHUICHI
HIRATA, HITOSHI
author_sort ARAI, TETSUYA
collection PubMed
description A small, light, ball-joint device called PinFix, which can instantly convert a simple percutaneous cross pin fracture fixation system into a rigid external fracture fixation system based on truss structure, was developed. The purpose of this study was to compare the mechanical load and breaking strength of this truss-structure-based fixation system to that of the conventionally used external cantilever structure-based fixation system. Three types of mechanical loading tests, axial, bending, and torsion, were performed on an artificial fractured bone treated with either three-dimensional PinFix fixation, two-dimensional PinFix fixation, or conventional external fixation. The three- and two-dimensional PinFix fixations showed significantly more stiffness than conventional fixation on all three loading tests. Finite element analysis was next performed to calculate the stress distribution of the parts in PinFix and in the conventional fixator. The applied stress to the rod and connectors of PinFix was much less than that of the conventional external fixator. These results reflected the physical characteristic of truss structure in which applied load is converted to pure tension or compression forces along the members of the PinFix. In conclusion, PinFix is a simple fracture fixation system that has a truss-structure with a high rigidity.
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spelling pubmed-43456742015-03-04 MECHANICAL ADVANTAGES OF A TRUSS-STRUCTURE-BASED FRACTURE FIXATION SYSTEM – A NOVEL FRACTURE FIXATION DEVICE "PINFIX" – ARAI, TETSUYA YAMAMOTO, MICHIRO IWATSUKI, KATSUYUKI NATSUME, TADAHIRO SHINOHARA, TAKAAKI TATEBE, MASAHIRO KURIMOTO, SHIGERU OTA, HIDEYUKI KATO, SHUICHI HIRATA, HITOSHI Nagoya J Med Sci Original Paper A small, light, ball-joint device called PinFix, which can instantly convert a simple percutaneous cross pin fracture fixation system into a rigid external fracture fixation system based on truss structure, was developed. The purpose of this study was to compare the mechanical load and breaking strength of this truss-structure-based fixation system to that of the conventionally used external cantilever structure-based fixation system. Three types of mechanical loading tests, axial, bending, and torsion, were performed on an artificial fractured bone treated with either three-dimensional PinFix fixation, two-dimensional PinFix fixation, or conventional external fixation. The three- and two-dimensional PinFix fixations showed significantly more stiffness than conventional fixation on all three loading tests. Finite element analysis was next performed to calculate the stress distribution of the parts in PinFix and in the conventional fixator. The applied stress to the rod and connectors of PinFix was much less than that of the conventional external fixator. These results reflected the physical characteristic of truss structure in which applied load is converted to pure tension or compression forces along the members of the PinFix. In conclusion, PinFix is a simple fracture fixation system that has a truss-structure with a high rigidity. Nagoya University 2013-08 /pmc/articles/PMC4345674/ /pubmed/24640174 Text en http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an Open Access article distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License. To view the details of this license, please visit (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Paper
ARAI, TETSUYA
YAMAMOTO, MICHIRO
IWATSUKI, KATSUYUKI
NATSUME, TADAHIRO
SHINOHARA, TAKAAKI
TATEBE, MASAHIRO
KURIMOTO, SHIGERU
OTA, HIDEYUKI
KATO, SHUICHI
HIRATA, HITOSHI
MECHANICAL ADVANTAGES OF A TRUSS-STRUCTURE-BASED FRACTURE FIXATION SYSTEM – A NOVEL FRACTURE FIXATION DEVICE "PINFIX" –
title MECHANICAL ADVANTAGES OF A TRUSS-STRUCTURE-BASED FRACTURE FIXATION SYSTEM – A NOVEL FRACTURE FIXATION DEVICE "PINFIX" –
title_full MECHANICAL ADVANTAGES OF A TRUSS-STRUCTURE-BASED FRACTURE FIXATION SYSTEM – A NOVEL FRACTURE FIXATION DEVICE "PINFIX" –
title_fullStr MECHANICAL ADVANTAGES OF A TRUSS-STRUCTURE-BASED FRACTURE FIXATION SYSTEM – A NOVEL FRACTURE FIXATION DEVICE "PINFIX" –
title_full_unstemmed MECHANICAL ADVANTAGES OF A TRUSS-STRUCTURE-BASED FRACTURE FIXATION SYSTEM – A NOVEL FRACTURE FIXATION DEVICE "PINFIX" –
title_short MECHANICAL ADVANTAGES OF A TRUSS-STRUCTURE-BASED FRACTURE FIXATION SYSTEM – A NOVEL FRACTURE FIXATION DEVICE "PINFIX" –
title_sort mechanical advantages of a truss-structure-based fracture fixation system – a novel fracture fixation device "pinfix" –
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4345674/
https://www.ncbi.nlm.nih.gov/pubmed/24640174
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