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汽车与行人碰撞中膝关节损伤风险的有限元分析

Finite element analysis of knee injury risks in car-to-pedestrian impacts.

作者信息

Nagasaka Kei, Mizuno Koji, Tanaka Eiichi, Yamamoto Sota, Iwamoto Masami, Miki Kazuo, Kajzer Janusz

机构信息

Nagoya University, Nagoya, Japan.

出版信息

Traffic Inj Prev. 2003 Dec;4(4):345-54. doi: 10.1080/714040492.

Abstract

In vehicle-pedestrian collisions, lower extremities of pedestrians are frequently injured by vehicle front structures. In this study, a finite element (FE) model of THUMS (total human model for safety) was modified in order to assess injuries to a pedestrian lower extremity. Dynamic impact responses of the knee joint of the FE model were validated on the basis of data from the literature. Since in real-world accidents, the vehicle bumper can impact the lower extremities in various situations, the relations between lower extremity injury risk and impact conditions, such as between impact location, angle, and impactor stiffness, were analyzed. The FE simulation demonstrated that the motion of the lower extremity may be classified into a contact effect of the impactor and an inertia effect from a thigh or leg. In the contact phase, the stress of the bone is high in the area contacted by the impactor, which can cause fracture. Thus, in this phase the impactor stiffness affects the fracture risk of bone. In the inertia phase, the behavior of the lower extremity depends on the impact locations and angles, and the knee ligament forces become high according to the lower extremity behavior. The force of the collateral ligament is high compared with other knee ligaments, due to knee valgus motions in vehicle-pedestrian collisions.

摘要

在车辆与行人碰撞事故中,行人的下肢经常被车辆前部结构所伤。在本研究中,对THUMS(全人类安全模型)的有限元(FE)模型进行了修改,以评估行人下肢的损伤情况。基于文献数据对有限元模型膝关节的动态冲击响应进行了验证。由于在现实世界的事故中,车辆保险杠会在各种情况下撞击下肢,因此分析了下肢损伤风险与撞击条件之间的关系,如撞击位置、角度和撞击器刚度之间的关系。有限元模拟表明,下肢的运动可分为撞击器的接触效应和大腿或小腿的惯性效应。在接触阶段,撞击器接触区域的骨骼应力很高,这可能导致骨折。因此,在这个阶段,撞击器刚度会影响骨骼的骨折风险。在惯性阶段,下肢的行为取决于撞击位置和角度,并且根据下肢的行为,膝关节韧带力会升高。在车辆与行人碰撞中,由于膝关节外翻运动,外侧副韧带的力比其他膝关节韧带的力高。

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