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1
Computational modelling of long bone fractures fixed with locking plates - How can the risk of implant failure be reduced?
J Orthop. 2013 Mar 7;10(1):29-37. doi: 10.1016/j.jor.2013.01.001. eCollection 2013.
2
Biomechanical testing of the LCP--how can stability in locked internal fixators be controlled?
Injury. 2003 Nov;34 Suppl 2:B11-9. doi: 10.1016/j.injury.2003.09.021.
3
Failure analysis of a locking compression plate with asymmetric holes and polyaxial screws.
J Mech Behav Biomed Mater. 2023 Feb;138:105645. doi: 10.1016/j.jmbbm.2022.105645. Epub 2022 Dec 29.
4
General principles for the clinical use of the LCP.
Injury. 2003 Nov;34 Suppl 2:B31-42. doi: 10.1016/j.injury.2003.09.023.
6
Interfragmentary lag screw and locking plate combination in simple distal femoral fractures: A finite element analysis.
Acta Orthop Traumatol Turc. 2021 Jan;55(1):9-15. doi: 10.5152/j.aott.2021.20035.
7
Finite element analysis of different locking plate fixation methods for the treatment of ulnar head fracture.
J Orthop Surg Res. 2021 Mar 15;16(1):191. doi: 10.1186/s13018-021-02334-4.
8
Improving stability of locking compression plates through a design modification: a computational investigation.
Comput Methods Biomech Biomed Engin. 2015;18(2):153-61. doi: 10.1080/10255842.2013.785536. Epub 2013 Apr 14.

引用本文的文献

3
Material synthesis and design optimization of biomaterials for biomedical implant applications.
Bioimpacts. 2024 Jun 29;15:30010. doi: 10.34172/bi.30010. eCollection 2025.
4
The effect of screw hole inserts for the unused screw holes on the strength of a plate.
J Orthop Surg Res. 2025 Mar 25;20(1):312. doi: 10.1186/s13018-025-05686-3.
5
Biomechanical Design Optimization of Distal Humerus Fracture Plates: A Review.
Biomed Res Int. 2024 Jun 27;2024:6015794. doi: 10.1155/2024/6015794. eCollection 2024.
8
Biomechanical Behavior of a Variable Angle Locked Tibiotalocalcaneal Construct.
Bioengineering (Basel). 2020 Mar 14;7(1):27. doi: 10.3390/bioengineering7010027.
9
Finite Element- and Design of Experiment-Derived Optimization of Screw Configurations and a Locking Plate for Internal Fixation System.
Comput Math Methods Med. 2019 Aug 21;2019:5636528. doi: 10.1155/2019/5636528. eCollection 2019.
10
Biomechanical features of six design of the delta external fixator for treating Pilon fracture: a finite element study.
Med Biol Eng Comput. 2018 Oct;56(10):1925-1938. doi: 10.1007/s11517-018-1830-3. Epub 2018 Apr 21.

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2
Increasing bending strength of tibial locking screws: mechanical tests and finite element analyses.
Clin Biomech (Bristol). 2007 Jan;22(1):59-66. doi: 10.1016/j.clinbiomech.2006.07.007. Epub 2006 Sep 7.
3
Locking compression plate loosening and plate breakage: a report of four cases.
J Orthop Trauma. 2004 Sep;18(8):571-7. doi: 10.1097/00005131-200409000-00016.
4
Guidelines for the clinical application of the LCP.
Injury. 2003 Nov;34 Suppl 2:B63-76. doi: 10.1016/j.injury.2003.09.026.
5
Biomechanical testing of the LCP--how can stability in locked internal fixators be controlled?
Injury. 2003 Nov;34 Suppl 2:B11-9. doi: 10.1016/j.injury.2003.09.021.
7
The development of the distal femur Less Invasive Stabilization System (LISS).
Injury. 2001 Dec;32 Suppl 3:SC24-31. doi: 10.1016/s0020-1383(01)00181-4.
9
Influence of the number of cortices on the stiffness of plate fixation of diaphyseal fractures.
J Orthop Trauma. 2001 Mar-Apr;15(3):186-91. doi: 10.1097/00005131-200103000-00007.
10
Mechanical analysis of the bone to plate interface of the LC-DCP and of the PC-FIX on human femora.
Injury. 2000 Sep;31 Suppl 3:C29-36. doi: 10.1016/s0020-1383(00)80029-7.

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