MacLean Mhairi K, Ferris Daniel P
University of Florida.
J Appl Biomech. 2019 Oct 1;35(5):320-326. doi: 10.1123/jab.2018-0384.
The authors tested 4 young healthy subjects walking with a powered knee exoskeleton to determine if it could reduce the metabolic cost of locomotion. Subjects walked with a backpack loaded and unloaded, on a treadmill with inclinations of 0° and 15°, and outdoors with varied natural terrain. Participants walked at a self-selected speed (average 1.0 m/s) for all conditions, except incline treadmill walking (average 0.5 m/s). The authors hypothesized that the knee exoskeleton would reduce the metabolic cost of walking uphill and with a load compared with walking without the exoskeleton. The knee exoskeleton reduced metabolic cost by 4.2% in the 15° incline with the backpack load. All other conditions had an increase in metabolic cost when using the knee exoskeleton compared with not using the exoskeleton. There was more variation in metabolic cost over the outdoor walking course with the knee exoskeleton than without it. Our findings indicate that powered assistance at the knee is more likely to decrease the metabolic cost of walking in uphill conditions and during loaded walking rather than in level conditions without a backpack load. Differences in positive mechanical work demand at the knee for varying conditions may explain the differences in metabolic benefit from the exoskeleton.
作者对4名健康的年轻受试者进行了测试,让他们佩戴动力膝关节外骨骼行走,以确定其是否能降低行走的代谢成本。受试者在背负和不背负背包的情况下,在坡度为0°和15°的跑步机上行走,以及在户外各种自然地形上行走。除了在倾斜跑步机上行走(平均速度0.5米/秒)外,所有情况下参与者均以自行选择的速度行走(平均速度1.0米/秒)。作者假设,与不佩戴外骨骼行走相比,膝关节外骨骼将降低上坡行走和负重行走时的代谢成本。在背负背包且坡度为15°的情况下,膝关节外骨骼使代谢成本降低了4.2%。与不使用外骨骼相比,在使用膝关节外骨骼的所有其他情况下,代谢成本均有所增加。与不使用膝关节外骨骼相比,在户外行走过程中,使用膝关节外骨骼时代谢成本的变化更大。我们的研究结果表明,膝关节的动力辅助更有可能降低上坡行走和负重行走时的代谢成本,而不是在不背负背包的水平行走时。不同条件下膝关节正向机械功需求的差异可能解释了外骨骼在代谢效益方面的差异。