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习惯性的足部着地方式不会影响跑步过程中模拟的比目鱼肌代谢能量消耗。

Habitual foot strike pattern does not affect simulated triceps surae muscle metabolic energy consumption during running.

机构信息

Human Movement Biomechanics Research Group, Department of Movement Sciences, KU Leuven, 3001 Leuven, Belgium

Department of Kinesiology, University of Massachusetts Amherst, Amherst, MA 01003, USA.

出版信息

J Exp Biol. 2019 Dec 10;222(Pt 23):jeb212449. doi: 10.1242/jeb.212449.

Abstract

Foot strike pattern affects ankle joint work and triceps surae muscle-tendon dynamics during running. Whether these changes in muscle-tendon dynamics also affect triceps surae muscle energy consumption is still unknown. In addition, as the triceps surae muscle accounts for a substantial amount of the whole-body metabolic energy consumption, changes in triceps surae energy consumption may affect whole-body metabolic energy consumption. However, direct measurements of muscle metabolic energy consumption during dynamic movements is difficult. Model-based approaches can be used to estimate individual muscle and whole-body metabolic energy consumption based on Hill type muscle models. In this study, we use an integrated experimental and dynamic optimization approach to compute muscle states (muscle forces, lengths, velocities, excitations and activations) of 10 habitual midfoot/forefoot striking and nine habitual rearfoot striking runners while running at 10 and 14 km h The Achilles tendon stiffness of the musculoskeletal model was adapted to fit experimental ultrasound data of the gastrocnemius medialis muscle during ground contact. Next, we calculated triceps surae muscle and whole-body metabolic energy consumption using four different metabolic energy models provided in the literature. Neither triceps surae metabolic energy consumption (>0.35) nor whole-body metabolic energy consumption (>0.14) was different between foot strike patterns, regardless of the energy model used or running speed tested. Our results provide new evidence that midfoot/forefoot and rearfoot strike patterns are metabolically equivalent.

摘要

足着地方式会影响跑步时踝关节的做功和比目鱼肌-跟腱复合体的力学特性。这些肌肉-肌腱力学特性的改变是否会影响比目鱼肌的能量消耗尚不清楚。此外,由于比目鱼肌占全身代谢能量消耗的很大一部分,比目鱼肌能量消耗的变化可能会影响全身代谢能量消耗。然而,在动态运动中直接测量肌肉代谢能量消耗是很困难的。基于 Hill 型肌肉模型的模型法可用于估计个体肌肉和全身的代谢能量消耗。在这项研究中,我们使用集成的实验和动态优化方法来计算 10 名习惯性中足/前足着地和 9 名习惯性后足着地跑者在 10 和 14km/h 跑步时的肌肉状态(肌肉力、长度、速度、兴奋和激活)。肌肉骨骼模型的跟腱刚度根据跟腱在接触地面时的腓肠肌内侧头的超声数据进行了调整。接下来,我们使用文献中提供的四种不同的代谢能量模型计算比目鱼肌和全身的代谢能量消耗。无论使用哪种能量模型或测试哪种跑步速度,足着地方式都不会改变比目鱼肌代谢能量消耗(>0.35)或全身代谢能量消耗(>0.14)。我们的研究结果提供了新的证据,表明中足/前足和后足着地方式在代谢上是等效的。

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