School of Mechanical Engineering, Purdue University, West Lafayette, IN 47907, United States.
Weldon School of Biomedical Engineering, Purdue University, West Lafayette, IN 47907, United States.
J Biomech. 2019 Oct 11;95:109313. doi: 10.1016/j.jbiomech.2019.08.007. Epub 2019 Aug 13.
It has been established that substantial negative changes in neurocognitive function can be observed in a large percentage of athletes who participate in contact sports such as soccer or football, motivating a need for improved safety systems. Head accelerations in men's lacrosse are similar to those in football and female lacrosse players experience high rates of concussions, necessitating better head protection in both sports. Previous studies have sought to evaluate the ability of modern football helmets to mitigate impacts both normal and oblique to the surface of the helmet using a system that quantifies both the input load and the resulting accelerations of a Hybrid III headform. This study quantifies the inputs and outputs of the helmet-Hybrid III headform system in order to compare the impact attenuation capability of two male and two female lacrosse helmets. Of those helmets tested, the better performing male helmet was the Schutt Stallion 650 and the better performing female helmet was the Hummingbird excepting device failure at the rear boss impact location, but football helmets still generally outperformed the lacrosse helmets tested here.
已经证实,在参与足球或橄榄球等接触性运动的运动员中,很大一部分人的神经认知功能会出现实质性的负面变化,这促使人们需要改进安全系统。男子长曲棍球中的头部加速度与足球相似,而女性长曲棍球运动员的脑震荡发生率很高,这使得这两项运动都需要更好的头部保护。以前的研究试图使用一种既能量化头盔表面正常和斜向冲击的输入负荷,又能量化 Hybrid III 头模的加速度的系统,来评估现代足球头盔减轻冲击的能力。本研究量化了头盔-Hybrid III 头模系统的输入和输出,以比较两种男式和两种女式长曲棍球头盔的冲击衰减能力。在所测试的头盔中,表现更好的男式头盔是舒特 Stallion 650,表现更好的女式头盔是蜂鸟,除了后部 boss 冲击位置的设备故障,但橄榄球头盔的表现仍然普遍优于这里测试的长曲棍球头盔。