运动速度下关节刚度、肢体刚度与全身重心机械功的关系

Li Jin, M. Hahn
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引用次数: 2

摘要

在跑步姿势阶段,下肢系统就像弹簧一样。垂直刚度(Kvert)和腿部刚度(Kleg)反映了整个身体质心(COM)和腿部-弹簧系统在运行中的载荷和响应,而关节刚度(Kjoint)代表关节水平的动态载荷和响应。本研究旨在调查Kjoint是否与不同跑步速度下的Kvert和Kleg有关。20名健康受试者被招募到跑步机跑步研究中(1.8至3.8米/秒,间隔0.4米/秒)。我们发现,在1.8m/s时,Kjoint占Kvert方差的38.4%(p=0.046)和Kleg方差的42.4%(p=0.028);Kjoint在2.2 m/s时也占Kvert方差的49.8%(p=0.014)和Kleg方差的79.3%(p<0.0001)。Kknet在1.8米/秒和2.2米/秒时与Kvert和Kleg有最强的独特关联。Kjoint在更宽的速度范围内与Kleg相关。这些发现在一定的跑步速度范围内建立了关节刚度和肢体刚度之间的联系。Kknet可能需要被视为未来肢体刚度优化和一般跑步性能提高的重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relationship between Joint Stiffness, Limb Stiffness and Whole–Body Center of Mass Mechanical Work across Running Speeds
The lower–extremity system acts like a spring in the running stance phase. Vertical stiffness (Kvert) and leg stiffness (Kleg) reflect the whole–body center of mass (COM) and leg–spring system loading and response in running, while joint stiffness (Kjoint) represents joint–level dynamic loading and response. This study aimed to investigate whether Kjoint is associated with Kvert and Kleg across different running speeds. Twenty healthy subjects were recruited into a treadmill running study (1.8 to 3.8 m/s, with 0.4 m/s intervals). We found that Kjoint accounted for 38.4% of the variance in Kvert (p = 0.046) and 42.4% of the variance in Kleg (p = 0.028) at 1.8 m/s; Kjoint also accounted for 49.8% of the variance in Kvert (p = 0.014) and 79.3% of the variance in Kleg (p < 0.0001) at 2.2 m/s. Kknee had the strongest unique association with Kvert and Kleg at 1.8 and 2.2 m/s. Kjoint was associated with Kleg at a wider range of speeds. These findings built a connection between joint stiffness and limb stiffness within a certain range of running speeds. Kknee may need to be considered as an important factor in future limb stiffness optimization and general running performance enhancement.
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CiteScore
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