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首页> 外文期刊>Journal of long-term effects of medical implants >Finite element method in internal and hybrid external fixation of tibial condylar fractures: A comparative application study
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Finite element method in internal and hybrid external fixation of tibial condylar fractures: A comparative application study

机译:胫骨con突骨折内固定和混合外固定的有限元方法:比较研究

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摘要

The treatment of tibial condylar fractures requires the preparation of personalized treatment, customized to the needs of the patient, that will take into consideration his or her personal activities. The purpose of the present study was (1) the development, by using the finite elements method, of a 3-dimensional, highly discrete, simulation model of the knee-tibia, (2) the creation of 6 types of fractures in this model according to Schatzker's classification, (3) the insertion of materials for internal and hybrid external fixation, (4) the recording of the model's biomechanical behavior during the load, and (5) the discovery of findings regarding the stability of the internal and hybrid external treatment methods. The results from the resolution procedure showed that the values of maximum displacements in every fracture type except type III were reduced in the models with internal fixation. This means decreased stiffness and therefore diminished stability of the hybrid external-bone complex in these types of fractures. Internal fixation provides postoperative stability, a basic precondition for accelerated fracture healing.
机译:胫骨con突骨折的治疗需要根据患者的需要进行个性化的治疗,这要考虑到患者的个人活动。本研究的目的是(1)通过有限元方法开发3维,高度离散的膝胫骨仿真模型,(2)在该模型中创建6种类型的骨折根据Schatzker的分类,(3)插入用于内部和混合外部固定的材料,(4)记录载荷过程中模型的生物力学行为,以及(5)发现关于内部和混合外部稳定性的发现治疗方法。拆分程序的结果表明,在采用内固定的模型中,除III型外,每种骨折类型的最大位移值都减小了。这意味着在这些类型的骨折中,刚度降低,因此混合骨外复合物的稳定性降低。内固定可提供术后稳定性,这是加速骨折愈合的基本前提。

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