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Finite element modelling of equestrian helmet impacts exposes the need to address rotational kinematics in future helmet designs

机译:马术头盔撞击的有限元建模暴露了在未来头盔设计中解决旋转运动学的需求

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摘要

Jockey head injuries, especially concussions, are common in horse racing. Current helmets do help to reduce the severity and incidences of head injury, but the high concussion incidence rates suggest that there may be scope to improve the performance of equestrian helmets. Finite element simulations in ABAQUS/Explicit were used to model a realistic helmet model during standard helmeted rigid headform impacts and helmeted head model University College Dublin Brain Trauma Model (UCDBTM) impacts. Current helmet standards for impact determine helmet performance based solely on linear acceleration. Brain injury-related values (stress and strain) from the UCDBTM showed that a performance improvement based on linear acceleration does not imply the same improvement in head injury-related brain tissue loads. It is recommended that angular kinematics be considered in future equestrian helmet standards, as angular acceleration was seen to correlate with stress and strain in the brain.
机译:赛马会受伤,尤其是脑震荡。当前的头盔确实有助于降低头部受伤的严重程度和发生率,但是脑震荡的高发生率表明可能存在改善马术头盔性能的空间。 ABAQUS / Explicit中的有限元模拟用于在标准头盔式刚性头模撞击和头盔式头部模型都柏林大学颅脑创伤模型(UCDBTM)撞击期间对现实头盔模型进行建模。当前用于冲击的头盔标准仅基于线性加速度来确定头盔性能。 UCDBTM的与脑损伤相关的值(应力和应变)表明,基于线性加速度的性能改善并不意味着与颅脑损伤相关的脑组织负荷也有相同的改善。建议在未来的马术头盔标准中考虑角运动学,因为人们认为角加速度与大脑的压力和劳损相关。

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