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能部分抵消下坡或上坡坡度的模块化鞋类可将人类行走的代谢成本降至最低。

Modular footwear that partially offsets downhill or uphill grades minimizes the metabolic cost of human walking.

作者信息

Antonellis Prokopios, Frederick Cory M, Gonabadi Arash Mohammadzadeh, Malcolm Philippe

机构信息

Department of Biomechanics and Center for Research in Human Movement Variability, University of Nebraska at Omaha, 6160 University Drive South, Omaha, NE 68182, USA.

出版信息

R Soc Open Sci. 2020 Feb 5;7(2):191527. doi: 10.1098/rsos.191527. eCollection 2020 Feb.

Abstract

Walking on different grades becomes challenging on energetic and muscular levels compared to level walking. While it is not possible to eliminate the cost of raising or lowering the centre of mass (COM), it could be possible to minimize the cost of distal joints with shoes that offset downhill or uphill grades. We investigated the effects of shoe outsole geometry in 10 participants walking at 1 m s on downhill, level and uphill grades. Level shoes minimized metabolic rate during level walking ( < 0.001). However, shoes that entirely offset the (overall) treadmill grade did not minimize the metabolic rate of walking on grades: shoes with a +3° (upward) inclination minimized metabolic rate during downhill walking on a -6° grade, and shoes with a -3° (downward) inclination minimized metabolic rate during uphill walking on a +6° grade ( = 0.023). Shoe inclination influenced (distal) ankle joint parameters, including soleus muscle activity, ankle moment and work rate, whereas treadmill grade influenced (whole-body) ground reaction force and COM work rate as well as (distal) ankle joint parameters including tibialis anterior and plantarflexor muscle activity, ankle moment and work rate. Similar modular footwear could be used to minimize joint loads or assist with walking on rolling terrain.

摘要

与在平地上行走相比,在不同坡度上行走在能量和肌肉层面上更具挑战性。虽然不可能消除提高或降低身体重心(COM)的成本,但使用能够抵消下坡或上坡坡度的鞋子有可能将远端关节的成本降至最低。我们研究了10名参与者以1米/秒的速度在下坡、平地和上坡行走时鞋底几何形状的影响。平底鞋在平地上行走时可使代谢率降至最低(<0.001)。然而,完全抵消(整体)跑步机坡度的鞋子并不能使在斜坡上行走的代谢率降至最低:在-6°坡度的下坡行走中,+3°(向上)倾斜的鞋子可使代谢率降至最低,而在+6°坡度的上坡行走中,-3°(向下)倾斜的鞋子可使代谢率降至最低(=0.023)。鞋子的倾斜度会影响(远端)踝关节参数,包括比目鱼肌活动、踝关节力矩和工作率,而跑步机坡度会影响(全身)地面反作用力和COM工作率,以及(远端)踝关节参数,包括胫骨前肌和跖屈肌活动、踝关节力矩和工作率。类似的模块化鞋类可用于将关节负荷降至最低或辅助在起伏地形上行走。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02ae/7062060/26e63027b97b/rsos191527-g1.jpg

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