University of Ottawa.
University College Dublin.
J Appl Biomech. 2021 Jun 1;37(3):288-295. doi: 10.1123/jab.2020-0070. Epub 2021 Mar 8.
Understanding the relationship between head mass and neck stiffness during direct head impacts is especially concerning in youth sports where athletes have higher proportional head mass to neck strength. This study compared 2 neck stiffness conditions for peak linear and rotational acceleration and brain tissue deformations across 3 impact velocities, 3 impact locations, and 2 striking masses. A pendulum fitted with a nylon cap was used to impact a fifth percentile hybrid III headform equipped with 9 accelerometers and fitted with a youth American football helmet. The 2 neck stiffness conditions consisted of a neckform with and without resistance in 3 planes, representing the upper trapezius, the splenius capitis, and the sternocleidomastoid muscles. Increased neck stiffness resulted in significant changes in head kinematics and maximum principal strain specific to impact velocity, impact location, and striking mass.
了解头部质量和颈部刚性在直接头部撞击过程中的关系在青年运动中尤为重要,因为运动员的头部质量与颈部力量的比例更高。本研究比较了 2 种颈部刚性条件下的峰值线性和旋转加速度以及脑组织变形,涉及 3 种冲击速度、3 种冲击位置和 2 种撞击质量。一个装有尼龙帽的摆锤用于撞击配备 9 个加速度计的 5 百分位混合 III 头模,并配备了青少年美式足球头盔。这 2 种颈部刚性条件包括有和无阻力的颈部模型,分别代表上斜方肌、头夹肌和胸锁乳突肌。颈部刚性的增加导致头部运动学和最大主应变发生显著变化,具体取决于冲击速度、冲击位置和撞击质量。