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The influence of gait cadence on the ground reaction forces and plantar pressures during load carriage of young adults

机译:步态节奏对年轻人负重运输过程中地面反作用力和足底压力的影响

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Biomechanical gait parameters ground reaction forces (GRFs) and plantar pressures during load carriage of young adults were compared at a low gait cadence and a high gait cadence. Differences between load carriage and normal walking during both gait cadences were also assessed. A force plate and an in-shoe plantar pressure system were used to assess 60 adults while they were walking either normally (unloaded condition) or wearing a backpack (loaded condition) at low (70 steps per minute) and high gait cadences (120 steps per minute). GRF and plantar pressure peaks were scaled to body weight (or body weight plus backpack weight). With medium to high effect sizes we found greater anterior-posterior and vertical GRFs and greater plantar pressure peaks in the rearfoot, forefoot and hallux when the participants walked carrying a backpack at high gait cadences compared to walking at low gait cadences. Differences between loaded and unloaded conditions in both gait cadences were also observed. (C) 2015 Elsevier Ltd and The Ergonomics Society. All rights reserved.
机译:在低步态节奏和高步态节奏下,比较了年轻人在负载运输过程中的生物力学步态参数地面反作用力(GRF)和足底压力。还评估了两种步态中的负荷运输与正常行走之间的差异。测力板和鞋内足底压力系统用于评估60名成年人的正常行走状态(空载状态)或背负背包(负载状态)时处于低步态(每分钟70步)和高步态节奏(120步)每分钟)。 GRF和足底压力峰值按体重(或体重加背包重量)换算。在中等至高的效应大小下,与低步态脚步相比,参与者以高步态脚步行走时,后脚,前脚和拇趾的前,后和垂直GRF更大,足底压力峰值更大。还观察到两种步态节奏在加载和卸载条件之间的差异。 (C)2015 Elsevier Ltd和人体工程学学会。版权所有。

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