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使用包含肌肉骨骼力输入的有限元分析对锁骨骨折固定装置和固定技术进行强度分析。

Strength analysis of clavicle fracture fixation devices and fixation techniques using finite element analysis with musculoskeletal force input.

作者信息

Marie Cronskär

机构信息

Department of Quality, Mechanics and Mathematics, Mid Sweden University, Akademigatan 1, 831 25, Östersund, Sweden,

出版信息

Med Biol Eng Comput. 2015 Aug;53(8):759-69. doi: 10.1007/s11517-015-1288-5. Epub 2015 Apr 8.

Abstract

In the cases, when clavicle fractures are treated with a fixation plate, opinions are divided about the best position of the plate, type of plate and type of screw units. Results from biomechanical studies of clavicle fixation devices are contradictory, probably partly because of simplified and varying load cases used in different studies. The anatomy of the shoulder region is complex, which makes it difficult and expensive to perform realistic experimental tests; hence, reliable simulation is an important complement to experimental tests. In this study, a method for finite element simulations of stresses in the clavicle plate and bone is used, in which muscle and ligament force data are imported from a multibody musculoskeletal model. The stress distribution in two different commercial plates, superior and anterior plating position and fixation including using a lag screw in the fracture gap or not, was compared. Looking at the clavicle fixation from a mechanical point of view, the results indicate that it is a major benefit to use a lag screw to fixate the fracture. The anterior plating position resulted in lower stresses in the plate, and the anatomically shaped plate is more stress resistant and stable than a regular reconstruction plate.

摘要

在使用固定板治疗锁骨骨折的病例中,对于钢板的最佳位置、钢板类型和螺钉单元类型,存在不同观点。锁骨固定装置的生物力学研究结果相互矛盾,这可能部分是由于不同研究中使用的载荷情况简化且各不相同。肩部区域的解剖结构复杂,这使得进行实际的实验测试既困难又昂贵;因此,可靠的模拟是实验测试的重要补充。在本研究中,采用了一种有限元模拟锁骨钢板和骨骼应力的方法,其中肌肉和韧带力数据是从多体肌肉骨骼模型导入的。比较了两种不同商业钢板、钢板置于上方和前方的位置以及包括在骨折间隙使用或不使用拉力螺钉的固定方式下的应力分布。从力学角度来看锁骨固定,结果表明使用拉力螺钉固定骨折有很大益处。钢板置于前方的位置使钢板中的应力较低,并且解剖形状的钢板比普通重建钢板更抗应力且更稳定。

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