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Impact-absorbing Materials in Reducing Brain Vibration Caused by Ball-to-head Impact in Soccer

机译:减震材料可减少足球中球头碰撞所引起的大脑振动

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摘要

There has been a long debate among researchers on whether soccer heading is capable of causing brain trauma. A recent study suggests that headings exceeding a threshold level of 855 to 1,550 per year, results in microstructural abnormalities in the brain's white matter. This shows that brain trauma is caused by cumulative effect of repetitive headings. The use of protective headgear is one of the suggested preventive measures to protect the brain especially for younger players. Researchers have tested several commercial headgears and found that they are only effective in head-to-head impact, but ineffective in attenuating impact caused by heading. This is due to the fact that soccer ball is compliant in nature relative to the head. The aim of this study is to investigate materials that can be utilised to minimise the acceleration of the brain caused by soccer heading. A vertical drop ball test was conducted on an instrumented dummy skull. The inner cavity of the skull is filled with ultrasound gel that represents the brain. Six impact-absorbing materials were tested to determine the most effective material that reduces the acceleration of the brain substitute. The speed of the ball before and after impact as well as impact duration were measured using high-speed camera. Coefficient of restitution was calculated to ensure the material is not only capable of reducing the brain acceleration, but also maintains heading performance. It was found that polymer kneepad foam is the most effective material that minimises the acceleration of brain substitute whilst maintaining the speed of the ball after impact.
机译:在研究人员之间,关于足球前进是否能够引起脑部创伤的争论一直很长。最近的一项研究表明,航向超过每年855至1,550的阈值水平,会导致大脑白质的微结构异常。这表明脑外伤是由重复标题的累积作用引起的。建议使用防护头套来保护大脑,特别是对于年轻球员而言,是一种预防措施。研究人员测试了几种商用护具,发现它们仅对正面冲击有效,而对减弱因航向引起的冲击却无效。这是由于足球本质上相对于头部柔顺。这项研究的目的是研究可以用来最大程度减少由足球前进引起的大脑加速的材料。在装有仪器的假人头骨上进行垂直落球测试。颅骨的内腔充满了代表大脑的超声波凝胶。测试了六种冲击吸收材料,以确定减少大脑替代物加速作用的最有效材料。使用高速相机测量撞击前后球的速度以及撞击持续时间。计算恢复系数,以确保该材料不仅能够降低大脑加速度,而且还能保持航向。人们发现,聚合物护膝泡沫是最有效的材料,可最大程度地减少大脑替代物的加速度,同时保持撞击后球的速度。

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