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The effect of military load carriage on ground reaction forces.

机译:军事载运对地面反作用力的影响。

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Load carriage is an inevitable part of military life both during training and operations. Loads carried are frequently as high as 60% bodyweight, and this increases injury risk. In the military, load is carried in a backpack (also referred to as a Bergen) and webbing, these combined form a load carriage system (LCS). A substantial body of literature exists recording the physiological effects of load carriage; less is available regarding the biomechanics. Previous biomechanical studies have generally been restricted to loads of 20% and 40% of bodyweight, usually carried in the backpack alone. The effect of rifle carriage on gait has also received little or no attention in the published literature. This is despite military personnel almost always carrying a rifle during load carriage. In this study, 15 male participants completed 8 conditions: military boot, rifle, webbing 8 and 16 kg, backpack 16 kg and LCS 24, 32 and 40 kg. Results showed that load added in 8 kg increments elicited a proportional increase in vertical and anteroposterior ground reaction force (GRF) parameters. Rifle carriage significantly increased the impact peak and mediolateral impulse compared to the boot condition. These effects may be the result of changes to the vertical and horizontal position of the body's centre of mass, caused by the restriction of natural arm swing patterns. Increased GRFs, particularly in the vertical axis, have been positively linked to overuse injuries. Therefore, the biomechanical analysis of load carriage is important in aiding our understanding of injuries associated with military load carriage.
机译:在训练和行动期间,载重运输是军事生活中不可避免的一部分。负载通常高达60%的体重,这会增加受伤的风险。在军事中,负载由背包(也称为卑尔根)和安全带承载,这些结合在一起构成了负载运输系统(LCS)。已有大量文献记录了负载运输的生理作用。关于生物力学的信息很少。以前的生物力学研究通常局限于体重的20%和40%,通常仅在背包中进行。步枪运输对步态的影响在已发表的文献中也很少受到关注。尽管军事人员在装甲车时几乎总是携带步枪,但这仍然是事实。在这项研究中,有15位男性参与者完成了8个条件:军靴,步枪,织带8和16公斤,背包16公斤以及LCS 24、32和40公斤。结果表明,以8 kg的增量增加的载荷会导致垂直和前后地面反作用力(GRF)参数成比例增加。与引导情况相比,步枪托架显着增加了冲击峰值和内侧刺激。这些影响可能是由于自然手臂摆动方式受到限制而导致身体质心的垂直和水平位置发生变化的结果。 GRF的增加,尤其是在垂直轴上的增加,与过度使用的伤害呈正相关。因此,对载运的生物力学分析对于帮助我们理解与军事载运有关的伤害非常重要。

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