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职业橄榄球运动中的脑震荡:撞击球员的生物力学——第8部分

Concussion in professional football: biomechanics of the striking player--part 8.

作者信息

Viano David C, Pellman Elliot J

机构信息

Mild Traumatic Brain Injury Committee, National Football League, New York, New York, USA.

出版信息

Neurosurgery. 2005 Feb;56(2):266-80; discussion 266-80. doi: 10.1227/01.neu.0000150035.54230.3c.

Abstract

OBJECTIVE

Concussive impacts in professional football were simulated in laboratory tests to determine the collision mechanics resulting in injury to the struck player and the biomechanics of the striking players, who were not concussed or neck-injured in the tackle.

METHODS

Twenty-seven helmet-to-helmet collisions were reconstructed in laboratory tests using Hybrid III dummies. The head impact velocity, direction, and kinematics matched game video. Translational and rotational head accelerations and six-axis upper neck loads and moments were used to evaluate how the striking player delivered the concussive blow. The neck injury criterion, Nij, was calculated to assess neck injury risks in the striking player.

RESULTS

The time-averaged impact force reached 6372 +/- 2486 N at 7.2 milliseconds because of 46.8 +/- 21.7 g head acceleration and 3624 +/- 1729 N neck compression force in the striking player. Fifty-seven percent of the load was contributed by neck compression. The striking players had their heads down and lined up the impact axis through their necks and torsos. This allowed momentum transfer with minimal neck bending and increased the effective mass of the striking player to 1.67 times that of the struck player at peak load. The impact caused 94.3 +/- 27.5 g head acceleration in the concussed players and 67.9 +/- 14.5 g without concussion (t = 2.06, df = 25, P = 0.025). The striking player's Nij was greater than tolerance in 9 of 27 cases by exceeding the 4000 N neck compression limit. For these cases, the average neck compression force was 6631 +/- 977 N (range, 5210-8194 N). Nij was 1.25 +/- 0.16 for eight cases above the tolerance Nij = 1.0.

CONCLUSION

In the NFL, striking players line up their heads, necks, and torsos to deliver maximum force to the other player in helmet-to-helmet impacts. The concussive force is from acceleration of the striking player's head and torso load through the neck. Even though neck responses exceeded tolerances, no striking player experienced neck injury or concussion. A head-up stance at impact would reduce the torso inertial load in the collision and the risk of concussion in the struck player.

摘要

目的

在实验室测试中模拟职业橄榄球比赛中的震荡性撞击,以确定导致被撞击球员受伤的碰撞力学以及撞击球员(在擒抱过程中未发生脑震荡或颈部受伤)的生物力学。

方法

使用Hybrid III人体模型在实验室测试中重建了27次头盔对头盔的碰撞。头部撞击速度、方向和运动学与比赛视频相匹配。使用平移和旋转头部加速度以及六轴上颈部载荷和力矩来评估撞击球员如何施加震荡性打击。计算颈部损伤标准Nij以评估撞击球员的颈部损伤风险。

结果

由于撞击球员头部加速度为46.8±21.7g以及颈部压缩力为3624±1729N,在7.2毫秒时平均撞击力达到6372±2486N。57%的载荷由颈部压缩贡献。撞击球员头部向下,使撞击轴通过他们的颈部和躯干排列。这使得动量传递时颈部弯曲最小,并在峰值载荷时将撞击球员的有效质量增加到被撞击球员的1.67倍。撞击导致脑震荡球员头部加速度为94.3±27.5g,未发生脑震荡的球员为67.9±14.5g(t = 2.06,自由度 = 25,P = 0.025)。在27例中有9例撞击球员的Nij超过了4000N的颈部压缩极限,从而大于耐受值。对于这些病例,平均颈部压缩力为6631±977N(范围为5210 - 8194N)。8例Nij高于耐受值Nij = 1.0的病例中,Nij为1.25±0.16。

结论

在美国国家橄榄球联盟(NFL)中,撞击球员将头部、颈部和躯干排列好,以便在头盔对头盔的撞击中向另一名球员施加最大力量。震荡力来自撞击球员头部的加速度以及通过颈部的躯干载荷。尽管颈部反应超过了耐受值,但没有撞击球员发生颈部损伤或脑震荡。撞击时抬头姿势将减少碰撞中躯干的惯性载荷以及被撞击球员的脑震荡风险。

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