Biomechanical analysis of Magic screw fixation for acetabular posterior column fracture

This study aims to analyze the biomechanical stability of Magic screw in the treatment of acetabular posterior column fractures by finite element analysis. A three-dimensional finite element model of the pelvis was established based on the computed tomography (CT) and magnetic resonance imaging (MRI...

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Veröffentlicht in:Sheng wu yi xue gong cheng xue za zhi 2022-08, Vol.39 (4), p.672-678
Hauptverfasser: Zhang, Haowei, Xu, Zihuan, Liu, Ying, Wang, Yongqin, Li, Pengfei, Cai, Hongmin, Ni, Ming
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Sprache:chi
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Zusammenfassung:This study aims to analyze the biomechanical stability of Magic screw in the treatment of acetabular posterior column fractures by finite element analysis. A three-dimensional finite element model of the pelvis was established based on the computed tomography (CT) and magnetic resonance imaging (MRI) data of a volunteer and its effectiveness was verified. Then, the posterior column fracture model of the acetabulum was generated. The biomechanical stability of the four internal fixation models was compared. The 500 N force was applied to the upper surface of the sacrum to simulate human gravity. The maximum implant stresses of retrograde screw fixation, single-plate fixation, double-plate fixation and Magic screw fixation model in standing and sitting position were as follows: 114.10, 113.40 MPa; 58.93, 55.72 MPa; 58.76, 47.47 MPa; and 24.36, 27.50 MPa, respectively. The maximum stresses at the fracture end were as follows: 72.71, 70.51 MPa; 48.18, 22.80 MPa; 52.38, 27.14 MPa; and 34.05, 30.78 MPa, respectivel
ISSN:1001-5515
DOI:10.7507/1001-5515.202109042