Biomechanical Analysis of Locking Reconstruction Plate Using Mono- or Bicortical Screws

This experimental in vitro study evaluated the influence of screw length on the mechanical properties of a locking reconstruction plate designed with locking rings inserted into plate holes. Synthetic bone cylinders with 10 mm fracture gap and seven-hole locking reconstruction plates were used. Two...

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Veröffentlicht in:Materials research (São Carlos, São Paulo, Brazil) São Paulo, Brazil), 2016-06, Vol.19 (3), p.588-593
Hauptverfasser: Santos, Rogerio Rodrigues, Rahal, Sheila Canevese, Mesquita Neto, Camilo, Ribeiro, Celso Roberto, Sousa, Edson Antonio Capello, Foschini, Cesar Renato, Agostinho, Felipe Stefan, Mesquita, Luciane dos Reis
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Sprache:eng
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Zusammenfassung:This experimental in vitro study evaluated the influence of screw length on the mechanical properties of a locking reconstruction plate designed with locking rings inserted into plate holes. Synthetic bone cylinders with 10 mm fracture gap and seven-hole locking reconstruction plates were used. Two groups of bone-plate constructs were assembled: Group 1 - three monocortical screws on each fracture side, Group 2 - three bicortical screws on each fracture side. In each group nine bone-plate constructs were tested until failure, three each in bending, compression and torsion. In each group, 21 bone-plate constructs were tested for failure in fatigue testing, seven each for bending, compression and torsion. In all static testing no significant differences were found between G1 and G2, except ultimate moment in torsion test (G2>G1; P=0.008). Statistical analysis revealed significant differences between groups in axial compression fatigue testing (G1>G2; P
ISSN:1516-1439
1980-5373
1980-5373
DOI:10.1590/1980-5373-MR-2015-0596