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Comparison of two anthropomorphic test devices using brain motion

机译:使用脑运动的两种拟人核心测试装置的比较

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摘要

The use of anthropomorphic test devices in head impact biomechanics research is common; however, each device has unique properties based on its construction. When conducting reconstructions, choice of head form is at the discretion of the researcher. In addition, different data collection methods are often used. The influence of different test devices can affect comparisons between studies, as each device elicits different impact responses due to different physical properties. This study describes a method of comparison for anthropomorphic test devices based on finite element response of brain motion. Occipital impacts were conducted on a monorail drop rig, following impact parameters similar to a cadaveric impact that has been used for validation of finite element models of the brain. Two commonly used anthropomorphic test devices, the Hodgson-WSU and Hybrid III, were impacted. These head forms were evaluated by dynamic responses, brain motion via neutral density target traces, and maximum principal strain for two impact velocities. The Hybrid III head form showed lower magnitude results compared to the Hodgson-WSU for peak linear and rotational accelerations, rotational velocity, maximum principal strain, and neutral density target excursions. The smallest differences in response were 11% for peak linear acceleration with differences in neutral density target excursions reaching 60%. Maximum principal strain is suggested as the most comparable metric between anthropomorphic test devices after peak linear acceleration, with expectation of lower responses from the Hybrid III as compared to those of the Hodgson-WSU.
机译:在头部冲击生物力学研究中使用拟蒽型测试装置是常见的;但是,每个设备都具有基于其结构的独特性质。在进行重建时,主持人的选择是由研究人员自行决定的。此外,通常使用不同的数据收集方法。不同测试设备的影响可能影响研究之间的比较,因为每个设备由于不同的物理性质引起不同的影响响应。该研究描述了一种基于脑运动的有限元响应的拟人测试装置的比较方法。在单轨滴钻机上进行枕部冲击,遵循类似于尸体冲击的冲击参数,这些影响已被用于验证大脑的有限元模型。两个常用的拟人测试装置,Hodgson-Wsu和杂交III受到影响。通过动态响应,通过中性密度靶迹线和两个冲击速度的最大主应变来评估这些头部形式。与峰值线性和旋转加速度,旋转速度,最大主应变和中性密度密度偏移相比,杂交III头形式显示较低的幅度结果。响应的最小差异为峰值线性加速度为11%,中性密度目标偏移差异达到60%。建议最大主应变作为峰值线性加速后的拟人测试装置中最可比的度量,期望与Hodgson-WSU相比来自杂交III的较低响应。

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