Li Zuoping, Kim Jong-Eun, Davidson James S, Etheridge Brandon S, Alonso Jorge E, Eberhardt Alan W
Department of Biomedical Engineering, University of Alabama at Birmingham, Hoehn 361, 1075 13th St. S., Birmingham, AL 35294, USA.
J Biomech. 2007;40(12):2758-66. doi: 10.1016/j.jbiomech.2007.01.023. Epub 2007 Mar 30.
Automotive side impacts are a leading cause of injuries to the pubic symphysis, yet the mechanisms of those injuries have not been clearly established. Previous mechanical testing of isolated symphyses revealed increased joint laxity following drop tower lateral impacts to isolated pelvic bone structures, which suggested that the joints were damaged by excessive stresses and/or deformations during the impact tests. In the present study, a finite element (FE) model of a female pelvis including a previously validated symphysis sub-model was developed from computed tomography data. The full pelvis model was validated against measured force-time impact responses from drop tower experiments and then used to study the biomechanical response of the symphysis during the experimental impacts. The FE models predicted that the joint underwent a combination of lateral compression, posterior bending, anterior/posterior and superior/inferior shear that exceeded normal physiological levels prior to the onset of bony fractures. Large strains occurred concurrently within the pubic ligaments. Removal of the contralateral constraints to better approximate the boundary conditions of a seated motor vehicle occupant reduced cortical stresses and deformations of the pubic symphysis; however, ligament strains, compressive and shear stresses in the interpubic disc, as well as posterior bending of the joint structure remained as potential sources of joint damage during automotive side impacts.
汽车侧面碰撞是耻骨联合损伤的主要原因,但这些损伤的机制尚未明确确立。先前对孤立耻骨联合的力学测试显示,对孤立骨盆骨结构进行落塔侧向撞击后,关节松弛度增加,这表明在撞击测试过程中,关节受到过大应力和/或变形的损伤。在本研究中,利用计算机断层扫描数据建立了包含先前验证过的耻骨联合子模型的女性骨盆有限元(FE)模型。完整骨盆模型根据落塔实验测得的力-时间撞击响应进行了验证,然后用于研究实验撞击过程中耻骨联合的生物力学响应。有限元模型预测,在骨折发生前,关节经历了侧向压缩、后弯、前后和上下剪切的组合,这些都超过了正常生理水平。耻骨韧带同时出现大应变。去除对侧约束以更好地模拟坐姿机动车乘员的边界条件,可降低耻骨联合的皮质应力和变形;然而,在汽车侧面碰撞过程中,韧带应变、耻骨间盘的压缩和剪切应力以及关节结构的后弯仍是关节损伤的潜在来源。