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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine >Relationship between disc injury and manual lifting: a poroelastic finite element model study
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Relationship between disc injury and manual lifting: a poroelastic finite element model study

机译:椎间盘损伤与人工举起之间的关系:多孔弹性有限元模型研究

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摘要

Understanding how failure originates in a lumbar motion segment subjected to loading conditions that are representative of manual lifting is important because it will pave the way for a better formulation of the exposure–injury relationship. The aim of the current investigation was to use a poroelastic finite element model of a human lumbar disc to determine its biomechanical characteristics under loading conditions that corresponded to three different, commonly occurring lifting activities and to identify the most hazardous type of loading with regard to damage to the disc. The current study showed that asymmetric lifting may increase the risk of back injury and pain. Lifting that involved lateral bending (asymmetric lifting) of the trunk was found to produce stresses at a localized area in the annulus, annuluar fibres, end plates, and facet joints that were higher than their respective tissue failure strength. Thus asymmetric lifting, if performed over a large number of cycles, might help to propagate this localized failure of the disc tissue to a larger area, owing to fatigue. The analyses also showed that largest fluid exchange between the nucleus and the end plates occurred during asymmetric lifting. If the fluid exchange is restricted owing to end plate calcification or sclerosis of the subchondral bone, high intradiscal pressure might develop, leading to higher disc bulge causing back pain.
机译:了解失败是如何在承受手动举重代表的负荷条件的腰椎运动段中产生的,这一点很重要,因为这将为更好地阐述暴露与伤害的关系铺平道路。当前研究的目的是使用人类腰椎间盘的多孔弹性有限元模型来确定其在与三种不同的,通常发生的举升活动相对应的载荷条件下的生物力学特性,并确定就损伤而言最危险的载荷类型到光盘。当前的研究表明,不对称提举可能会增加背部受伤和疼痛的风险。发现涉及躯干横向弯曲(不对称举升)的举升会在瓣环,瓣环纤维,端板和小关节的局部区域产生高于其各自组织破坏强度的应力。因此,如果经过大量的循环进行非对称提升,由于疲劳,可能有助于将椎间盘组织的这种局部衰竭传播到更大的区域。分析还显示,在不对称提升过程中,原子核与端板之间发生了最大的流体交换。如果由于端板钙化或软骨下骨硬化而限制了液体交换,则可能会形成高椎间盘内压力,从而导致椎间盘膨出变高,从而引起背痛。

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