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1.
China Journal of Orthopaedics and Traumatology ; (12): 588-592, 2020.
Artigo em Chinês | WPRIM | ID: wpr-828245

RESUMO

Clavicular fracture is a common upper limb fracture. Because of its special anatomical structure, it directly affects the function of the shoulder joint. The different injury mechanisms of clavicular fracture affect the mechanical effect of internal fixation, so the selection of internal fixation method has been puzzling orthopedists. As a modern computer based mechanical analysis, finite element analysis application in the internal fixation of clavicular fracture can not only clarify the pathogenesis of fractures, biomechanical properties of internal fixators and complications of fractures, but also provide guidance for preoperative planning. Therefore, it is beneficial to preoperative planning and individualized selection of surgical methods, and is expected to become an indispensable part in preoperative planning for clavicular fracture. In this paper, the pathogenesis, related influencing factors, selection of internal fixation and postoperative complications of clavicular fracture based on finite element analysis and problems during finite element analysis were reviewed.


Assuntos
Humanos , Placas Ósseas , Clavícula , Análise de Elementos Finitos , Fixação Interna de Fraturas , Fraturas Ósseas , Cirurgia Geral , Fixadores Internos
2.
Chinese Journal of Tissue Engineering Research ; (53): 1762-1767, 2018.
Artigo em Chinês | WPRIM | ID: wpr-698610

RESUMO

BACKGROUND: Hallux valgus is a common orthopedic disease, and its causes are complex and treatment is varied. The mechanical analysis of hallux valgus is an issue of concern. The finite element analysis makes it predictable to treat hallux valgus. OBJECTIVE: To explore the clinical application of finite element analysis in biomechanical study of hallux valgus.METHODS: The first author searched CNKI and PubMed databases from January 1980 to March 2017 using the key words of "finite element, hallux valgus" in English and Chinese, respectively. The repetitive, irrelevant and low-quality articles were excluded. Finally 33 eligible articles were included in accordance with the inclusion criteria, and the critical issues of finite element analysis applied in hallux valgus were reviewed. RESULTS AND CONCLUSION: (1) There are many researches concerning finite element of hallux valgus, which mostly require physicians to work with engineers. These methods are already very mature, but most of the model and material properties of the data come from foreign researches. (2) The finite element analysis is important and reliable for the etiology of hallux valgus, preoperative planning and prognosis. (3) The finite element model of the hallux valgus is only used on static analysis and gait cycle analysis, the modeling details and definition of material properties still need to be improved.

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