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验证代谢模型在估算孤立向心和离心肌肉收缩期间能量消耗的应用。

Validation of Metabolic Models for Estimation of Energy Expenditure During Isolated Concentric and Eccentric Muscle Contractions.

机构信息

ExerciseTech, Department of Health Science and Technology, Faculty of Medicine, Aalborg University, Aalborg 9220, Denmark.

Anybody Technology A/S, Aalborg 9220, Denmark.

出版信息

J Biomech Eng. 2023 Dec 1;145(12). doi: 10.1115/1.4063640.

Abstract

Musculoskeletal modeling uses metabolic models to estimate energy expenditure of human locomotion. However, accurate estimation of energy expenditure is challenging, which may be due to uncertainty about the true energy cost of eccentric and concentric muscle contractions. The purpose of this study was to validate three commonly used metabolic models, using isolated isokinetic concentric and eccentric knee extensions/flexions. Five resistance-trained adult males (25.6 ± 2.4 year, 90.6 ± 7.5 kg, 1.81 ± 0.09 m) performed 150 repetitions at four different torques in a dynamometer. Indirect calorimetry was used to measure energy expenditure during these muscle contractions. All three models underestimated the energy expenditure (compared with indirect calorimetry) for up to 55.8% and 78.5% for concentric and eccentric contractions, respectively. Further, the coefficient of determination was in general low for eccentric contractions (R2 < 0.46) indicating increases in the absolute error with increases in load. These results show that the metabolic models perform better when predicting energy expenditure of concentric contractions compared with eccentric contractions. Thus, more knowledge about the relationship between energy expenditure and eccentric work is needed to optimize the metabolic models for musculoskeletal modeling of human locomotion.

摘要

肌肉骨骼建模使用代谢模型来估计人体运动的能量消耗。然而,准确估计能量消耗具有挑战性,这可能是由于对偏心和向心肌肉收缩的真实能量成本存在不确定性。本研究的目的是使用分离的等速向心和离心膝关节伸展/屈曲来验证三种常用的代谢模型。5 名经过阻力训练的成年男性(25.6±2.4 岁,90.6±7.5kg,1.81±0.09m)在测力计上以四种不同的扭矩进行了 150 次重复。间接测热法用于测量这些肌肉收缩期间的能量消耗。所有三种模型都低估了能量消耗(与间接测热法相比),分别为向心收缩的 55.8%和离心收缩的 78.5%。此外,离心收缩的决定系数通常较低(R2<0.46),表明随着负荷的增加,绝对误差增加。这些结果表明,与离心收缩相比,代谢模型在预测向心收缩的能量消耗时表现更好。因此,需要更多关于能量消耗与离心工作之间关系的知识,以优化用于人体运动肌肉骨骼建模的代谢模型。

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