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在前后向撞击加载条件下,撞击速度和韧带力学性能对腰椎损伤的影响:有限元研究。

Effect of impact velocity and ligament mechanical properties on lumbar spine injuries in posterior-anterior impact loading conditions: a finite element study.

机构信息

Department of Mechanical Engineering, Polytechnique Montréal, Downtown Station, P.O. Box 6079, Montreal, QC, H3C 3A7, Canada.

Laboratoire de Biomécanique Appliquée, IFSTTAR, LBA UMR T24, Aix-Marseille Université, Boulevard Pierre Dramard, Marseille Cedex, France.

出版信息

Med Biol Eng Comput. 2019 Jun;57(6):1381-1392. doi: 10.1007/s11517-019-01964-5. Epub 2019 Mar 4.

Abstract

Traumatic events may lead to lumbar spine injuries ranging from low severity bony fracture to complex fracture dislocation. Injury pathomechanisms as well as the influence of loading rate and ligament mechanical properties were not yet fully elucidated. The objective was to quantify the influence of impact velocity and ligament properties variability on the lumbar spine response in traumatic flexion-shear conditions. An L1-L3 finite element spinal segment was submitted to a posterior-anterior impact at three velocities (2.7, 5, or 10 m/s) and for 27 sets of ligament properties. Spinal injury pathomechanism varied according to the impact velocities: initial osseous compression in the anterior column for low and medium velocities versus distraction in the posterior column for high velocity. Impact at 2.7 and 5 m/s lead to higher extent of bony injury, i.e., volume of ruptured bone, compared to the impact at 10 m/s (1140, 1094, and 718 mm respectively), lower L2 anterior displacement (2.09, 5.36, and 7.72 mm respectively), and lower facet fracture occurrence. Ligament properties had no effect on bony injury initiation but influenced the presence of facet fracture. These results improve the understanding of lumbar injury pathomechanisms and provide additional knowledge of lumbar injury load thresholds that could be used for injury prevention. Graphical abstract Stress distribution analysis at the injury initiation and final injury pattern identification for a lumbar segment submitted to a traumatic posterior-anterior impact.

摘要

创伤事件可导致从低严重度骨骨折到复杂骨折脱位的腰椎损伤。损伤病理机制以及加载速率和韧带力学性能的影响尚未完全阐明。目的是量化冲击速度和韧带特性变异性对创伤性屈伸条件下腰椎反应的影响。将 L1-L3 有限元脊柱段在三种速度(2.7、5 或 10 m/s)和 27 组韧带特性下进行前后向冲击。脊柱损伤病理机制根据冲击速度而变化:低中和高速时前柱的初始骨压缩与高速时后柱的分离。与 10 m/s 的冲击相比,2.7 和 5 m/s 的冲击导致更大程度的骨损伤,即破裂骨的体积(分别为 1140、1094 和 718 mm)、更低的 L2 前向位移(分别为 2.09、5.36 和 7.72 mm)和更低的小关节骨折发生率。韧带特性对骨损伤的起始没有影响,但影响小关节骨折的发生。这些结果提高了对腰椎损伤病理机制的理解,并提供了有关腰椎损伤载荷阈值的更多知识,可用于损伤预防。

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