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The influence of lower extremity postures on kinematics and injuries of cyclists in vehicle side collisions

机译:下肢姿势对车辆侧面碰撞中骑行者的运动学和伤害的影响

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Objective: A cyclist assumes various cyclic postures of the lower extremities while pushing the pedals in a rotary motion while pedaling. In order to protect cyclists in collisions, it is necessary to understand what influence these postures have on the global kinematics and injuries of the cyclist.Method: Finite element (FE) analyses using models of a cyclist, bicycle, and car were conducted. In the simulations, the Total Human Model of Safety (THUMS) occupant model was employed as a cyclist, and the simulation was set up such that the cyclist was hit from its side by a car. Three representative postures of the lower extremities of the cyclist were examined, and the kinematics and injury risk of the cyclist were compared to those obtained by a pedestrian FE model. The risk of a lower extremity injury was assessed based on the knee shear displacement and the tibia bending moment.Results: When the knee position of the cyclist was higher than the hood leading edge, the hood leading edge contacted the leg of the cyclist, and the pelvis slid over the hood top and the wrap-around distance (WAD) of the cyclist's head was large. The knee was shear loaded by the hood leading edge, and the anterior cruciate ligament (ACL) ruptured. The tibia bending moment was less than the injury threshold. When the cyclist's knee position was lower than the hood leading edge, the hood leading edge contacted the thigh of the cyclist, and the cyclist rotated with the femur as the pivot point about the hood leading edge. In this case, the head impact location of the cyclist against the car was comparable to that of the pedestrian collision. The knee shear displacement and the tibia bending moment were less than the injury thresholds.Conclusion: The knee height of the cyclist relative to the hood leading edge affected the global kinematics and the head impact location against the car. The loading mode of the lower extremities was also dependent on the initial positions of the lower extremities relative to the car structures. In the foot up and front posture, the knee was loaded in a lateral shear direction by the hood leading edge and as a result the ACL ruptured. The bicycle frame and the struck-side lower extremity interacted and could influence the loadings on lower extremities.
机译:目的:骑自行车的人在踩踏板时以旋转运动推动踏板时会假设下肢处于各种循环姿势。为了保护骑车者在碰撞中,有必要了解这些姿势对骑车者的整体运动学和伤害有何影响。方法:使用骑车者,自行车和汽车的模型进行有限元(FE)分析。在模拟中,采用了总安全人类模型(THUMS)的乘员模型作为骑车人,并且进行了模拟设置,以使骑车人被汽车撞到旁边。检查了骑自行车者下肢的三种典型姿势,并将其与行人有限元模型获得的运动学和受伤风险进行了比较。根据膝关节剪切位移和胫骨弯矩评估下肢受伤的风险。结果:当骑车人的膝盖位置高于引擎盖前缘时,引擎盖前缘接触骑车人的腿,并且骨盆滑过引擎盖顶部,骑车人头部的回绕距离(WAD)很大。膝盖受到引擎盖前缘的剪切负荷,前十字韧带(ACL)破裂。胫骨弯矩小于损伤阈值。当骑车人的膝盖位置低于引擎盖前缘时,引擎盖前缘接触骑车人的大腿,骑车人以股骨为中心围绕引擎盖前缘旋转。在这种情况下,骑车人对汽车的头部碰撞位置与行人碰撞的位置相当。结论:膝关节相对于发动机罩前缘的膝盖高度影响了整体运动学,头部撞击汽车的位置。下肢的加载模式还取决于下肢相对于轿厢结构的初始位置。在脚向上和前部的姿势中,膝盖由引擎盖前缘沿横向剪切方向加载,因此ACL破裂。自行车车架和撞击侧下肢相互作用,并可能影响下肢的负荷。

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