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唯一的出路是向上:主动式膝关节外骨骼减少了负重上楼梯时股四头肌的肌肉用力。

The Only Way Is Up: Active Knee Exoskeleton Reduces Muscular Effort in Quadriceps During Weighted Stair Ascent.

作者信息

Boon Vincent S, Ortolano Brendon, Gunnell Andrew J, Meagher Margaret, Murray Rosemarie C, Gabert Lukas, Lenzi Tommaso

机构信息

Department of Biomechanical Engineering, University of Twente, 7522 NB Enschede, The Netherlands.

Utah Robotics Center and the Department of Mechanical Engineering, University of Utah, Salt Lake City, UT 84112 USA.

出版信息

IEEE Robot Autom Lett. 2025 May;10(5):4484-4491. doi: 10.1109/lra.2025.3551543. Epub 2025 Mar 14.

Abstract

Firefighters consistently rank stair ascent with gear, which can weigh over 35 kg, as their most demanding activity. Weighted stair climbing requires dynamic motions and large knee torques, which can cause exhaustion in the short term, and overuse injuries in the long term. An active knee exoskeleton could potentially alleviate the burden on the wearer by injecting positive energy at key phases of the gait cycle. Similar devices have reduced the metabolic cost for various locomotion activities in previous studies. However, no information is available on the effect of active knee exoskeletons on muscular effort during prolonged weighted stair ascent. Here we show that our knee exoskeletons reduce the net muscular effort in the lower limbs when ascending several flights of stairs while wearing additional weight. In a task analogous to part of the physical fitness test for firefighters in the US, eight participants climbed stairs for three minutes at a constant pace while wearing a 9.1 kg vest. We compared lower limb muscle activation required to perform the task with and without two bilaterally worn Utah Knee Exoskeletons. We found that bilateral knee assistance reduced average peak quadriceps muscle activation measured through surface electromyography by 32% while reducing overall muscle activity at the quadriceps by 29%. These results suggest that an active knee exoskeleton can lower the overall muscular effort required to ascend stairs while weighted. In turn, this could aid firefighters by preserving energy for fighting fires and reducing overexertion injuries.

摘要

消防员一直将负重(超过35千克)爬楼梯列为最艰巨的任务。负重爬楼梯需要进行动态动作并产生较大的膝盖扭矩,这在短期内会导致疲劳,长期则会造成过度使用损伤。主动式膝关节外骨骼有可能通过在步态周期的关键阶段注入正能量来减轻穿戴者的负担。在先前的研究中,类似的设备降低了各种运动活动的代谢成本。然而,关于主动式膝关节外骨骼对长时间负重爬楼梯时肌肉用力的影响尚无相关信息。在此,我们表明,当穿戴额外负重爬几层楼梯时,我们的膝关节外骨骼能减少下肢的净肌肉用力。在美国消防员体能测试的一项类似任务中,八名参与者穿着9.1千克的背心以恒定速度爬楼梯三分钟。我们比较了在穿戴和不穿戴双侧的犹他膝关节外骨骼的情况下完成该任务所需的下肢肌肉激活情况。我们发现,双侧膝关节助力使通过表面肌电图测量的股四头肌平均峰值肌肉激活降低了32%,同时使股四头肌的整体肌肉活动降低了29%。这些结果表明,主动式膝关节外骨骼可以降低负重爬楼梯所需的整体肌肉用力。反过来,这可以帮助消防员为灭火保存能量并减少过度劳累损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cee/12442829/c944f16dc572/nihms-2069696-f0001.jpg

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