Shin Jaeho, Untaroiu Costin D
J Biomech Eng. 2013 Oct;135(10):101008. doi: 10.1115/1.4025108.
Ankle and subtalar joint injuries of vehicle front seat occupants are frequently recorded during frontal and offset vehicle crashes. A few injury criteria for foot and ankle were proposed in the past; however, they addressed only certain injury mechanisms or impact loadings. The main goal of this study was to investigate numerically the tolerance of foot and ankle under complex loading which may appear during automotive crashes. A previously developed and preliminarily validated foot and leg finite element (FE) model of a 50th percentile male was employed in this study. The model was further validated against postmortem human subjects (PMHS) data in various loading conditions that generates the bony fractures and ligament failures in ankle and subtalar regions observed in traffic accidents. Then, the foot and leg model were subjected to complex loading simulated as combinations of axial, dorsiflexion, and inversion loadings. An injury surface was fitted through the points corresponding to the parameters recorded at the time of failure in the FE simulations. The compelling injury predictions of the injury surface in two crash simulations may recommend its application for interpreting the test data recorded by anthropometric test devices (ATD) during crash tests. It is believed that the methodology presented in this study may be appropriate for the development of injury criteria under complex loadings corresponding to other body regions as well.
车辆前排座椅乘客的踝关节和距下关节损伤在正面和偏置车辆碰撞中经常被记录下来。过去曾提出过一些针对足踝的损伤标准;然而,它们仅涉及某些损伤机制或冲击载荷。本研究的主要目的是通过数值模拟研究在汽车碰撞中可能出现的复杂载荷下足踝的耐受性。本研究采用了一个先前开发并初步验证的第50百分位男性的足腿有限元(FE)模型。该模型在各种加载条件下针对尸体人类受试者(PMHS)数据进行了进一步验证,这些加载条件会导致在交通事故中观察到的踝关节和距下区域的骨折和韧带损伤。然后,对足腿模型施加模拟为轴向、背屈和内翻载荷组合的复杂载荷。通过FE模拟中与失效时记录的参数相对应的点拟合出一个损伤表面。该损伤表面在两次碰撞模拟中令人信服的损伤预测可能推荐其用于解释碰撞测试期间人体测量测试设备(ATD)记录的测试数据。据信,本研究中提出的方法也可能适用于开发与其他身体部位相对应的复杂载荷下的损伤标准。