BIOMECHANICAL SUBSTANTIATION OF THE CHOICE OF THE METHOD FOR FIXING UNSTABLE FRACTURES OF THE PROXIMAL TIBIA

IF 0.6
Ye. E. Chip, A. Kalashnikov, V. Protsenko, Oleksii Kalashnikov, Yurii Stavinsky, O. Pelypenko
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Abstract

Aim: To justify the choice of a method for fixing unstable proximal tibial fractures (PTF), to conduct computer simulation of stresses on various metal fixators. Materials and Methods: at the initial stage, a solid 3D model of the lower leg has been created using Solid Works, on the background of anatomical models and CT scans. The model contained the following elements: tibia and fibula, interosseous membrane, ligaments of the proximal and distal tibia syndesmosis, and a modeled proximal tibial fracture. We have subsequently studied 4 models of bone fragments’ fixation with LCP plates and an intramedullary blocking metal rod. Further calculations were performed using the finite element method. Results: computer simulations of stresses on various metal fixators applied to fix a PTF convincingly proved that blocked intramedullary osteosynthesis (BIOS) and LCP plates placed bilaterally are feasible for this category of patients. Conclusions: Deformities and loads observed in the metal fixator, bone tissue and ligamentous apparatus run within normal limits. They are statistically significantly (p ≤ 0.05) lower in models of bone fragments’ fixation with IM nailing and bilaterally placed LCP plates. This evidences the adequate stability of bone fragments’ and these methods of osteosynthesis as a whole, compared to the stains in the same elements of modelled fixation using only one plate – medially or laterally. The results of the study may serve as the background for the development of an algorithm for surgical treatment and rehabilitation of patients with PTF.
胫骨近端不稳定骨折选择方法的生物力学证实
目的:通过计算机模拟各种金属固定器上的应力,证明选择一种固定不稳定胫骨近端骨折的方法是合理的。材料和方法:在最初阶段,在解剖模型和CT扫描的背景下,使用solid Works创建了小腿的立体3D模型。该模型包含以下元素:胫骨和腓骨、骨间膜、胫骨近端和远端联合韧带,以及模拟的胫骨近端骨折。随后,我们研究了4种用LCP板和髓内阻断金属棒固定骨碎片的模型。使用有限元方法进行了进一步的计算。结果:对用于固定PTF的各种金属固定器上的应力进行的计算机模拟令人信服地证明,阻断髓内接骨术(BIOS)和双侧放置LCP板对于这类患者是可行的。结论:在金属固定器、骨组织和韧带装置中观察到的变形和负荷在正常范围内。在用IM钉和双侧放置LCP板固定骨碎片的模型中,它们在统计学上显著降低(p≤0.05)。这证明了骨碎片和这些骨合成方法作为一个整体具有足够的稳定性,与仅使用一块钢板(内侧或外侧)模拟固定的相同元件中的污渍相比。该研究的结果可以作为开发PTF患者手术治疗和康复算法的背景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Archiv EuroMedica
Archiv EuroMedica MEDICINE, GENERAL & INTERNAL-
自引率
83.30%
发文量
140
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