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Parametric study of impact parameters on peak head acceleration and strain for collision impacts in sport

机译:体育碰撞碰撞影响峰值抗冲击参数的参数研究

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Collisions are a common cause of concussions. The nature of a collision impact is governed by the velocity of the striking players and the body parts involved. The purpose of this study was to describe the effects of velocity, mass, surface stiffness and location on peak linear and angular acceleration and strain. A variable-mass pendulum fitted with simplified impact surfaces representing the stiffness of an unprotected head, a protected (helmet) and a well-padded (i.e. shoulder pad) condition were used to impact a Hybrid III headform at four locations and velocities. Headform accelerations were input into a finite-element model to approximate peak strain in the cerebrum. Stiffness was most influential on peak linear and angular acceleration, and strain was most influenced by velocity. Interaction effects demonstrated that the 9 kg mass had consistently higher peak linear and angular acceleration and strain than the 15 kg mass between 3.0 and 4.5 m/s. Mass and velocity interactions may have important implications for age and size related concussion risk.
机译:碰撞是脑震荡的常见原因。碰撞影响的性质受到罢工球员的速度和所涉及的身体部位的管辖。本研究的目的是描述速度,质量,表面刚度和位置对峰值线性和角度加速度和菌株的影响。装配有简化的冲击表面的可变质量摆,表示未受保护头部的刚度,受保护(盔甲)和垫底垫(即肩部垫)条件用于在四个位置和速度下冲击混合III头部。地形加速度被输入到有限元模型中以近似大脑峰应变。刚度最大地影响峰值线性和角度加速度,并且菌株最受速度影响。相互作用效果证明,9千克质量始终如一的峰值线性和角度加速度,并且应变比3.0至4.5米/秒之间的15千克质量。质量和速度相互作用可能对年龄和大小相关脑震荡风险具有重要意义。

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