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Head boundary conditions in pedestrian crashes with passenger cars: six-degrees-of-freedom post-mortem human subject responses

机译:乘用车在行人碰撞中的头部边界条件:六自由度验尸后人类的反应

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摘要

In pedestrian-vehicle crashes, head injuries cause death and long-term disability. Thus, understanding the head kinematics is vital. Head rotation data are scarce, and the influence of individual anthropometry, upper body and arm kinematics on head kinematics is poorly understood. This paper investigates the influence of anthropometry, upper body and arm kinematics on head linear and angular kinematics, providing novel six-degrees-of-freedom data from pedestrian-vehicle-crash experiments. Five similarly positioned subjects were struck by a mid-size sedan at 40 km/h. Three-dimensional translation and three-dimensional rotation of the head, spine and shoulders were compared. Head kinematics differed considerably among the subjects. Variations in anthropometry changed pelvic sliding towards the windshield. Arm responses altered head impact velocity and head rotation. The results have implications for future experiments, evaluation of human models and the design of pedestrian safety systems. Head injury risk can be moderated by reducing head rotation before head impact, and by reducing pelvic sliding.
机译:在行人车祸中,头部受伤会导致死亡和长期残疾。因此,了解头部运动学至关重要。头部旋转数据稀少,个人人体测量学,上半身和手臂运动学对头部运动学的影响知之甚少。本文研究了人体测量学,上身和手臂运动学对头部线性和角度运动学的影响,并提供了来自行人车辆碰撞实验的新颖的六自由度数据。一辆中型轿车以40 km / h的速度撞击了五个位置相似的对象。比较了头部,脊柱和肩膀的三维平移和三维旋转。受试者的头部运动学差异很大。人体测量学的变化改变了骨盆向挡风玻璃的滑动。手臂的反应改变了头部的撞击速度和头部的旋转。结果对未来的实验,人体模型评估和行人安全系统的设计具有重要意义。可以通过减少头部撞击前的头部旋转和减少骨盆滑动来减轻头部受伤的风险。

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