School of Mechanical & Materials Engineering, University College Dublin, Belfield, Dublin 4, Ireland.
School of Human Kinetics, University of Ottawa, 200 Lees Ave., Room A106, Ottawa, ON, K1N 6N5, Canada.
Ann Biomed Eng. 2018 Jul;46(7):986-1000. doi: 10.1007/s10439-018-2017-7. Epub 2018 Mar 29.
Concussions are among the most common injuries sustained by ice hockey goaltenders and can result from collisions, falls and puck impacts. However, ice hockey goaltender helmet certification standards solely involve drop tests to a rigid surface. This study examined how the design characteristics of different ice hockey goaltender helmets affect head kinematics and brain strain for the three most common impact events associated with concussion for goaltenders. A NOCSAE headform was impacted under conditions representing falls, puck impacts and shoulder collisions while wearing three different types of ice hockey goaltender helmet models. Resulting linear and rotational acceleration as well as maximum principal strain were measured for each impact condition. The results indicate that a thick liner and stiff shell material are desirable design characteristics for falls and puck impacts to reduce head kinematic and brain tissue responses. However for collisions, the shoulder being more compliant than the materials of the helmet causes insufficient compression of the helmet materials and minimizing any potential performance differences. This suggests that current ice hockey goaltender helmets can be optimized for protection against falls and puck impacts. However, given collisions are the leading cause of concussion for ice hockey goaltenders and the tested helmets provided little to no protection, a clear opportunity exists to design new goaltender helmets which can better protect ice hockey goaltenders from collisions.
脑震荡是冰球守门员最常见的损伤之一,可由碰撞、摔倒和冰球撞击导致。然而,冰球守门员头盔认证标准仅涉及到对刚性表面的跌落测试。本研究考察了不同冰球守门员头盔的设计特点如何影响与守门员脑震荡相关的三种最常见撞击事件中的头部运动和脑应变。使用三种不同类型的冰球守门员头盔模型,在代表摔倒、冰球撞击和肩部碰撞的条件下使 NOCSAE 头模受到撞击。对每种撞击情况测量线性和旋转加速度以及最大主应变。结果表明,对于摔倒和冰球撞击,厚衬垫和硬壳材料是理想的设计特点,可以减少头部运动和脑组织的反应。然而,对于碰撞,肩部比头盔材料更具弹性,导致头盔材料压缩不足,最小化任何潜在的性能差异。这表明,目前的冰球守门员头盔可以针对摔倒和冰球撞击进行优化以提供保护。然而,鉴于碰撞是冰球守门员脑震荡的主要原因,而测试的头盔几乎没有提供任何保护,因此有明确的机会设计出可以更好地保护冰球守门员免受碰撞的新型守门员头盔。