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首页> 外文期刊>Journal of Biomechanics >Effects of eight different ligament property datasets on biomechanics of a lumbar L4-L5 finite element model
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Effects of eight different ligament property datasets on biomechanics of a lumbar L4-L5 finite element model

机译:八种不同韧带属性数据集对腰腰L4-L5有限元模型生物力学的影响

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摘要

Ligaments assist trunk muscles in balancing external moments and providing spinal stability. In absence of the personalized material properties for ligaments, finite element (FE) models use dispersed data from the literature. This study aims to investigate the relative effects of eight different ligament property data sets on FE model responses. Eight L4-L5 models distinct only in ligament properties were constructed and loaded under moment (15 N m) alone or combined with a compressive follower load (FL). Range of motions (RoM) of the disc-alone model matched well in vitro data. Ligament properties significantly affected only sagittal RoMs (similar to 3.0-7.1 degrees in flexion and similar to 3.8-5.8 degrees in extension at 10 N m). Sequential removal of ligaments shifted sagittal RoMs in and out of the corresponding in vitro ranges. When moment was combined with FL, center of rotation matched in vivo data for all models (3.8 +/- 0.9 mm and 4.3 +/- 1.8 mm posterior to the disc center in flexion and extension, respectively). Under 15 N m sagittal moments, ligament strains were often smaller or within the in vitro range in flexion whereas some posterior ligament forces approached their failure forces in some models. Ligament forces varied substantially within the models and affected the moment-sharing and internal forces on the disc and facet joints. Intradiscal pressure (IDP) had the greatest variation between models in extension. None of the datasets yielded results in agreement with all reported measurements. Results emphasized the important role of ligaments especially under larger moments and the need for their accurate representation in search for valid spinal models. (C) 2017 Elsevier Ltd. All rights reserved.
机译:韧带有助于平衡外部时刻和提供脊柱稳定性的躯干肌肉。在没有韧带的个性化物质性质的情况下,有限元(FE)模型使用来自文献的分散数据。本研究旨在调查八种不同韧带属性数据集对Fe模型响应的相对效果。仅在韧带性质中独树的八个L4-L5型号被构造和装载在时刻(15nm)或与压缩从动载荷(FL)组合。磁盘单独模型的运动范围(ROM)匹配井中的体外数据。韧带特性仅影响矢状roms(屈曲中的3.0-7.1度,并且在10 n m的延伸中类似于3.8-5.8度)。序列除去韧带的偏移矢状roms进出相应的体外范围。当瞬间与FL相结合时,所有型号的体内数据匹配的旋转中心(3.8 +/- 0.9 mm和4.3 +/- 1.8 mm,分别在弯曲和延伸的圆盘中心)。在15 n米的矢状时刻,韧带菌株通常较小或在屈曲中的体外范围内,而一些后韧带力在某些型号中接近其失效力。韧带力在模型内基本上变化,并影响了盘和小关节上的时刻共享和内部力。电影压力(IDP)在延伸模型之间具有最大的变化。没有任何数据集与所有报告的测量结果都产生了结果。结果强调韧带的重要作用,尤其是在更大的时刻以及对寻找有效脊柱模型的准确代表性的需求。 (c)2017 Elsevier Ltd.保留所有权利。

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