首页> 外文期刊>Journal of Biomechanics >Lower limb dynamics change for children while walking with backpack loads to modulate shock transmission to the head.
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Lower limb dynamics change for children while walking with backpack loads to modulate shock transmission to the head.

机译:当孩子背着背包行走时,下肢动力学发生变化,以调节向头部的震动传递。

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摘要

Backpack load carriage increases ground reaction forces and increases the stiffness in the upper extremity that can cause transmission of higher amount of forces from the lower extremity to the head. This study investigated the effect of load carriage and placement of load on the back on the shock transmission mechanisms amongst children. Fifteen primary school boys with mean age 10.01 (+/-1.31) years, mean height 136.40 (+/-10.08)cm and mean mass 31.83 (+/-7.13)kg completed the study. Subjects carried 10%, 15% and 20% bodyweight (BW) loads on two locations on the back, namely upper and lower. Results showed a significant reduction in pelvic and trunk rotation in the transverse plane and an increase in the upper body stiffness for loads exceeding 15% of BW. The lower limb results showed a reduction in the first peak force and cadence and a significant change in the walking velocity and time to the first peak force for 20% load. No significant differences were found for the load configuration but the upper configuration showed slightly higher shock transmission. The changes in the lower limb dynamics indicated that there are locomotion mechanisms in place amongst children to modulate shock transmission to the head.
机译:背包装载车增加了地面反作用力并增加了上肢的刚度,这可能导致更高的力从下肢传递到头部。这项研究调查了负载运输和背部上的负载放置对儿童间震动传递机制的影响。 15名平均年龄10.01(+/- 1.31)岁,平均身高136.40(+/- 10.08)cm和平均体重31.83(+/- 7.13)kg的小学男孩完成了研究。受试者在背部的两个位置,即上侧和下侧,分别承担10%,15%和20%的体重(BW)负荷。结果表明,当载荷超过体重的15%时,骨盆和躯干在横向平面上的旋转显着减少,上身僵硬度增加。下肢结果显示,在20%的负荷下,第一峰值力和脚踏圈速降低,步行速度和达到第一峰值力的时间显着变化。负载配置没有发现显着差异,但上部配置显示了更高的冲击传递。下肢动力学的变化表明,儿童中有运动机制可以调节向头部的震动传递。

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