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A parametric analysis of factors that determine head injury outcomes following equestrian fall accidents

机译:测定马术秋季事故后头部损伤结果的因素分析

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摘要

This study examined the effects and interaction of four primary impact parameters (impact velocity, angle of impact relative to the ground, ground compliance and helmet impact location) on head kinematics and brain tissue response for falls that are most commonly associated with equestrian sports. A helmeted headform was subject to parametric tests using a rail guided launcher at three impact velocities (6, 9 and 12 m/s), four angles of incidence (15 degrees, 30 degrees, 45 degrees and 60 degrees), three ground compliance levels (High, Medium and Low) and three helmet locations (front, front-boss and rear-boss). Head kinematics were obtained from the headform and a finite element model was used to estimate brain tissue response. Velocity and angle had the largest effects on the risk of concussion, as measured by head kinematics and brain tissue response, while compliance and location were less influential. Interactions such as angle and compliance were found to greatly influence the risk of concussion. These findings suggest that an increased ground compliance can decrease linear acceleration and Head Injury Criterion (HIC) but not necessarily decrease rotational kinematics and brain tissue response. Consequently, the use of technological designs to attenuate rotational acceleration and decouple the helmet from that of the head may provide better safety than simply the addition of extra protective layers to the ground or a helmet liners.
机译:本研究检测了四次初级冲击参数(冲击速度,冲击速度,影响角度,接地,地面依从性和头盔冲击位置的影响)对最常见的与马术运动有关的头脑和脑组织反应的影响和相互作用。在三个冲击速度(6,9和12 m / s),四个入射角(15度,30度,45度和60度),三个地面合规度,使用轨道引导发射器(6,9和12 m / s),对头盔式的头部进行参数测试。 (高,中,低)和三个头盔位置(前,前老板和后凸轮)。从头部获得头部运动学,使用有限元模型来估计脑组织应答。速度和角度对脑震荡的风险产生了最大的影响,通过头部运动学和脑组织反应来测量,而遵守和位置较低。发现角度和合规等相互作用大大影响了脑震荡的风险。这些发现表明,增加的地面顺应性可以降低线性加速和头部损伤标准(HIC),但不一定会降低旋转运动学和脑组织应答。因此,使用技术设计来衰减旋转加速度并从头部的头盔脱钩可以提供比简单地将额外的保护层添加到地面或头盔衬里的安全性。

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