首页> 外文期刊>IEEE transactions on neural systems and rehabilitation engineering >Walking With aBackpack Using Load Distribution and Dynamic Load Compensation Reduces Metabolic Cost and Adaptations to Loads
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Walking With aBackpack Using Load Distribution and Dynamic Load Compensation Reduces Metabolic Cost and Adaptations to Loads

机译:使用负荷分配和动态负荷补偿与背包一起行走,可降低代谢成本并适应负荷

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摘要

In this study, we showed a way of reducing the metabolic cost of walking with a backpack using load distribution and dynamic load compensation, provided by a wearable upper body device. This device distributes the backpack load between the shoulders and the pelvis, senses the vertical motion of the pelvis, and provides gait synchronized compensatory forces to reduce the dynamic loads from a backpack. It was hypothesized that by reducing dynamic loads from a backpack during load carriage, the user's gait and postural adaptation, muscular effort and metabolic cost would be reduced. This hypothesis was supported by biomechanical and physiological measurements on a group of young healthy subjects, as they walked on a treadmill under four different conditions: unloaded; with a backpack, loaded with 25% of their body weight, supported on the shoulders; with the same load distributed between the shoulders and the pelvis; and with dynamic load compensation in addition to load distribution. The results showed reductions in gait and postural adaptations, muscle activity, vertical and braking ground reaction forces, and metabolic cost while carrying the same backpack load with the device. We conclude that the device can potentially reduce the risk of musculoskeletal injuries and muscle fatigue associated with carrying heavy backpack loads while reducing the metabolic cost of loaded walking.
机译:在这项研究中,我们展示了一种通过可穿戴的上身设备提供的负载分配和动态负载补偿功能来减少背着背包行走的新陈代谢成本的方法。该设备可将背包的负载分配在肩部与骨盆之间,感测骨盆的垂直运动,并提供步态同步的补偿力,以减少背包的动态负载。假设通过减少装载过程中背包的动态载荷,可以减少使用者的步态和姿势适应,肌肉力量和代谢成本。在一组年轻健康受试者在四种不同条件下走在跑步机上时,他们的生物力学和生理学测量结果支持了这一假设。背负着25%的体重的背包支撑在肩膀上;在肩膀和骨盆之间分配相同的负荷;除负载分配外,还具有动态负载补偿功能。结果表明,在使用相同的背包负载的同时,步态和姿势适应性,肌肉活动,垂直和制动地面反作用力以及新陈代谢成本的降低。我们得出的结论是,该设备可以潜在地减少与背负沉重背包负载相关的肌肉骨骼损伤和肌肉疲劳的风险,同时降低步行行走的新陈代谢成本。

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