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Analysis on the mechanical resistance of fixation of femoral neck fractures in synthetic bone, using the dynamic hip system and an anti-rotation screw()()

OBJECTIVE: To statistically analyze the results obtained from biomechanical tests on fixation of femoral neck fractures of Pauwels III type, in synthetic bone, using the dynamic hip system with an anti-rotation screw, versus a control group. METHODS: Ten synthetic bones from a Brazilian manufacturer...

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Autores principales: Freitas, Anderson, Torres, Gustavo Melo, Souza, André Cezar de Andrade de Mello e, Maciel, Rafael Almeida, Souto, Diogo Ranier de Macedo, Ferreira, George Neri de Barros
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4487432/
https://www.ncbi.nlm.nih.gov/pubmed/26229866
http://dx.doi.org/10.1016/j.rboe.2014.01.016
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author Freitas, Anderson
Torres, Gustavo Melo
Souza, André Cezar de Andrade de Mello e
Maciel, Rafael Almeida
Souto, Diogo Ranier de Macedo
Ferreira, George Neri de Barros
author_facet Freitas, Anderson
Torres, Gustavo Melo
Souza, André Cezar de Andrade de Mello e
Maciel, Rafael Almeida
Souto, Diogo Ranier de Macedo
Ferreira, George Neri de Barros
author_sort Freitas, Anderson
collection PubMed
description OBJECTIVE: To statistically analyze the results obtained from biomechanical tests on fixation of femoral neck fractures of Pauwels III type, in synthetic bone, using the dynamic hip system with an anti-rotation screw, versus a control group. METHODS: Ten synthetic bones from a Brazilian manufacturer (model C1010) were used and divided into two groups: test and control. In the test group, fixation of an osteotomy was performed with 70° of inclination at the level of the femoral neck, using DHS with an anti-rotation screw. The resistance of this fixation was evaluated, along with its rotational deviation at 5 mm of displacement (phase 1) and at 10 mm of displacement (phase 2), which was considered to be failure of synthesis. In the control group, the models were tested in their entirety until femoral neck fracturing occurred. RESULTS: The test values in the test group (samples 1–5) in phase 1 were: 1512 N, 1439 N, 1205 N, 1251 N and 1273 N, respectively (mean = 1336 N; standard deviation [SD] = 132 N). The rotational deviations were: 4.90°, 3.27°, 2.62°, 0.66° and 0.66°, respectively (mean = 2.42°; SD = 1.81°). In phase 2, we obtained: 2064 N, 1895 N, 1682 N, 1713 N and 1354 N, respectively (mean = 1742 N; SD = 265 N). The failure loading values in the control group were: 1544 N, 1110 N, 1359 N, 1194 N and 1437 N, respectively (mean = 1329 N; SD = 177 N). The statistical analysis using the Mann–Whitney test showed that the test group presented maximum loading at a displacement of 10 mm, i.e. significantly greater than the failure loading of the control group (p = 0.047). CONCLUSION: The mechanical resistance of the test group was significantly greater than that of the control group.
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spelling pubmed-44874322015-07-30 Analysis on the mechanical resistance of fixation of femoral neck fractures in synthetic bone, using the dynamic hip system and an anti-rotation screw()() Freitas, Anderson Torres, Gustavo Melo Souza, André Cezar de Andrade de Mello e Maciel, Rafael Almeida Souto, Diogo Ranier de Macedo Ferreira, George Neri de Barros Rev Bras Ortop Original Article OBJECTIVE: To statistically analyze the results obtained from biomechanical tests on fixation of femoral neck fractures of Pauwels III type, in synthetic bone, using the dynamic hip system with an anti-rotation screw, versus a control group. METHODS: Ten synthetic bones from a Brazilian manufacturer (model C1010) were used and divided into two groups: test and control. In the test group, fixation of an osteotomy was performed with 70° of inclination at the level of the femoral neck, using DHS with an anti-rotation screw. The resistance of this fixation was evaluated, along with its rotational deviation at 5 mm of displacement (phase 1) and at 10 mm of displacement (phase 2), which was considered to be failure of synthesis. In the control group, the models were tested in their entirety until femoral neck fracturing occurred. RESULTS: The test values in the test group (samples 1–5) in phase 1 were: 1512 N, 1439 N, 1205 N, 1251 N and 1273 N, respectively (mean = 1336 N; standard deviation [SD] = 132 N). The rotational deviations were: 4.90°, 3.27°, 2.62°, 0.66° and 0.66°, respectively (mean = 2.42°; SD = 1.81°). In phase 2, we obtained: 2064 N, 1895 N, 1682 N, 1713 N and 1354 N, respectively (mean = 1742 N; SD = 265 N). The failure loading values in the control group were: 1544 N, 1110 N, 1359 N, 1194 N and 1437 N, respectively (mean = 1329 N; SD = 177 N). The statistical analysis using the Mann–Whitney test showed that the test group presented maximum loading at a displacement of 10 mm, i.e. significantly greater than the failure loading of the control group (p = 0.047). CONCLUSION: The mechanical resistance of the test group was significantly greater than that of the control group. Elsevier 2014-10-27 /pmc/articles/PMC4487432/ /pubmed/26229866 http://dx.doi.org/10.1016/j.rboe.2014.01.016 Text en © 2014 Sociedade Brasileira de Ortopedia e Traumatologia. Published by Elsevier Editora Ltda. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Freitas, Anderson
Torres, Gustavo Melo
Souza, André Cezar de Andrade de Mello e
Maciel, Rafael Almeida
Souto, Diogo Ranier de Macedo
Ferreira, George Neri de Barros
Analysis on the mechanical resistance of fixation of femoral neck fractures in synthetic bone, using the dynamic hip system and an anti-rotation screw()()
title Analysis on the mechanical resistance of fixation of femoral neck fractures in synthetic bone, using the dynamic hip system and an anti-rotation screw()()
title_full Analysis on the mechanical resistance of fixation of femoral neck fractures in synthetic bone, using the dynamic hip system and an anti-rotation screw()()
title_fullStr Analysis on the mechanical resistance of fixation of femoral neck fractures in synthetic bone, using the dynamic hip system and an anti-rotation screw()()
title_full_unstemmed Analysis on the mechanical resistance of fixation of femoral neck fractures in synthetic bone, using the dynamic hip system and an anti-rotation screw()()
title_short Analysis on the mechanical resistance of fixation of femoral neck fractures in synthetic bone, using the dynamic hip system and an anti-rotation screw()()
title_sort analysis on the mechanical resistance of fixation of femoral neck fractures in synthetic bone, using the dynamic hip system and an anti-rotation screw()()
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4487432/
https://www.ncbi.nlm.nih.gov/pubmed/26229866
http://dx.doi.org/10.1016/j.rboe.2014.01.016
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