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建模腕部和手指伸肌的力-长-激活关系。

Modelling force-length-activation relationships of wrist and finger extensor muscles.

机构信息

Aix-Marseille Univ, CNRS, ISM, Marseille, France.

Department of Movement Sciences, Decathlon SportsLab, Villeneuve d'Ascq, France.

出版信息

Med Biol Eng Comput. 2020 Oct;58(10):2531-2549. doi: 10.1007/s11517-020-02239-0. Epub 2020 Aug 17.

DOI:10.1007/s11517-020-02239-0
PMID:32803449
Abstract

The wrist and finger extensors play a crucial role in the muscle coordination during grasping tasks. Nevertheless, few data are available regarding their force-generating capacities. The objective of this study was to provide a model of the force-length-activation relationships of the hand extensors using non-invasive methods. The extensor carpi radialis (ECR) and the extensor digitorum communis (EDC) were studied as representative of wrist and finger extensors. Ten participants performed isometric extension force-varying contractions in different postures on an ergometer recording resultant moment. The joint angle, the myotendinous junction displacement and activation were synchronously tracked using motion capture, ultrasound and electromyography. Muscle force was estimated via a musculoskeletal model using the measured joint angle and moment. The force-length-activation relationship was then obtained by fitting a force-length model at different activation levels to the measured data. The obtained relationships agreed with previously reported data regarding muscle architecture, sarcomere length and activation-dependent shift of optimal length. Muscle forces estimated from kinematics and electromyography using the force-length-activation relationships were comparable, below 15% differences, to those estimated from moment via the musculoskeletal model. The obtained quantitative data provides a new insight into the different muscle mechanics of finger and wrist extensors. Graphical abstract By combining in vivo data (kinematics, dynamometry, electromyography, ultrasonography) during isometric force-varying contractions with musculoskeletal modelling, the force-length-activation relationships of both finger and wrist extensors were obtained. The results provided a new insight into the role of hand extensors in the generation and control of hand movements.

摘要

手部伸肌在抓握任务中的肌肉协调中起着至关重要的作用。然而,关于它们的产生力量的能力的数据很少。本研究的目的是使用非侵入性方法为手部伸肌的力-长-激活关系提供模型。伸腕肌(ECR)和指总伸肌(EDC)被研究为腕部和手指伸肌的代表。10 名参与者在手测功计上进行了不同姿势的等长力-变收缩的等长力-变收缩,以记录总力矩。使用运动捕捉、超声和肌电图同步跟踪关节角度、肌肌腱连接位移和激活。通过使用测量的关节角度和力矩的肌肉骨骼模型来估计肌肉力。然后,通过将力-长模型拟合到测量数据来获得力-长-激活关系。获得的关系与以前关于肌肉结构、肌节长度和激活依赖性最佳长度移位的报告数据一致。使用力-长-激活关系从运动学和肌电图估计的肌肉力与通过肌肉骨骼模型从力矩估计的肌肉力相当,差异低于 15%。获得的定量数据为手指和腕部伸肌的不同肌肉力学提供了新的见解。

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Modelling force-length-activation relationships of wrist and finger extensor muscles.建模腕部和手指伸肌的力-长-激活关系。
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引用本文的文献

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Sensitivity Analysis of Upper Limb Musculoskeletal Models During Isometric and Isokinetic Tasks.等长和等速任务期间上肢肌肉骨骼模型的敏感性分析
J Biomech Eng. 2024 Feb 1;146(2). doi: 10.1115/1.4064056.
2
Influence of Force-Length Relationship and Task-Specific Constraints on Finger Force-Generating Capacities.力-长度关系和特定任务约束对手指力量生成能力的影响。
Ann Biomed Eng. 2023 Nov;51(11):2453-2464. doi: 10.1007/s10439-023-03276-0. Epub 2023 Jun 16.