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Bicycle Helmets: Head Impact Dynamics in Helmeted and Unhelmeted Oblique Impact Tests

机译:自行车头盔:头盔和非头盔倾斜碰撞测试中的头部碰撞动力学

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摘要

Objective: To assess the factors, including helmet use, that contribute to head linear and angular acceleration in bicycle crash simulation tests. Method: A series of laboratory tests was undertaken using an oblique impact rig. The impact rig included a drop assembly with a Hybrid III head and neck. The head struck a horizontally moving striker plate. Head linear and angular acceleration and striker plate force were measured. The Head Injury Criterion was derived. The following test parameters were varied: drop height to a maximum of 1.5 m, horizontal speed to a maximum of 25 km/h, helmeto helmet, impact orientation/location, and restraint adjustment. Additional radial impacts were conducted on the same helmet models for comparison purposes. Descriptive statistics were derived and multiple regression was applied to examine the role of each parameter. Results: Helmet use was the most significant factor in reducing the magnitude of all outcome variables. Linear acceleration and the Head Injury Criterion were influenced by the drop height, whereas angular acceleration tended to be influenced by the horizontal speed and impact orientation/location. The restraint adjustment influenced the outcome variables, with lower coefficients of variation observed with the tight restraint. Conclusions: The study reinforces the benefits of wearing a bicycle helmet in a crash. The study also demonstrates that helmets do not increase angular head acceleration. The study assists in establishing the need for an agreed-upon international oblique helmet test as well as the boundary conditions for oblique helmet testing. Supplemental materials are available for this article. Go to the publisher's online edition of Traffic Injury Prevention to view the supplemental file.
机译:目的:评估影响头盔碰撞模拟测试中头部线性和角加速度的因素,包括头盔的使用。方法:使用倾斜冲击钻机进行了一系列实验室测试。冲击装置包括一个带有Hybrid III头和颈部的下降装置。头部撞到了水平移动的撞针板。测量头的线性和角加速度以及撞板力。得出了头部受伤标准。更改了以下测试参数:跌落高度最大为1.5 m,水平速度最大为25 km / h,头盔/无头盔,冲击方向/位置,以及约束调节。为了比较目的,在相同头盔模型上进行了额外的径向冲击。得出描述性统计数据,并应用多元回归检查每个参数的作用。结果:使用头盔是减少所有结局变量幅度的最重要因素。线性加速度和头部受伤标准受跌落高度的影响,而角加速度则受水平速度和撞击方向/位置的影响。约束调整影响了结果变量,在严格约束下观察到较低的变异系数。结论:该研究加强了在事故中戴自行车头盔的好处。研究还表明头盔不会增加头部的角加速度。这项研究有助于确定是否需要商定的国际斜式头盔测试以及斜式头盔测试的边界条件。补充材料可用于本文。转到发布者的在线交通伤害预防在线版本以查看补充文件。

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