小腿三头肌-肌腱复合体的运动功能及其在跑步生物力学中的贡献
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国家自然科学基金项目(12272238, 11772201)


Functional Role of the Triceps Surae -Tendon Unit and its Contribution to Running Biomechanics
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    摘要:

    在人体运动中,小腿三头肌-肌腱复合体(triceps surae muscle-tendon unit, MTU)是有效完成力的产生和传递以及能量储存和释放的关键,对运动效率有重要影响,但其损伤率也居高不下。本文对MTU的功能和跑步中MTU生物力学特性适应变化进行概述,旨在深入理解MTU在运动过程中功能并探讨不同外部因素对MTU生物力学特性的影响,以期为提升跑步表现与预防损伤提供科学依据。结果发现:跑步时前掌着地跑和穿着刚度更大的碳板跑鞋可以以较为经济的MTU的形态学变化模式进行收缩或者回弹能量,即肌肉和其余弹性元件能用更经济的方式进行收缩或者回弹能量,以及肌肉收缩发力时的长度更接近于最佳肌束长度,降低肌肉收缩引起的能耗;采用前掌着地跑、裸足跑或穿着极简鞋跑步增加了MTU力学载荷;跑姿再训练后跑步时MTU能用更经济的方式进行收缩或者回弹能量,而其余单纯力量训练对其影响研究不够充分且效果较差。未来研究可进一步通过改善运动模式、装备和训练方法来优化MTU的生物力学特性,关注MTU的相互协调和平衡发展,从而提高运动表现,减少MTU损伤的发生。

    Abstract:

    The triceps surae muscle-tendon unit (MTU) is the key for effective force generation, transmission, and energy storage and release in human movement, impacting efficiency, but its injury rate remains high. This paper provided an overview of MTU function and its biomechanical adaptations during running, aiming to deepen the understanding of MTU’s role in movement and to explore how external factors influence its biomechanical properties, offering scientific insights for improving running performance and preventing injuries. During running, forefoot striking and wearing shoes with greater stiffness, such as shoes with carbon plate, the contraction or return energy could be achieved through a more economical MTU behavior, namely reduce energy consumption by more economically muscle contraction and more energy storage of elastic element and the muscle contraction was exerted at a length closer to the optimal muscle fascicle length and reduce energy consumption caused by muscle contraction. However, adopting forefoot striking, barefoot running, or wearing minimalist shoes during running could increase the mechanical loads on the MTU. After gait retraining, the MTU could contract or recoil energy more efficiently while running, while the impact of other training methods on it is relatively poor, and the research in this area is still not sufficient. Therefore, future research should focus on optimizing the biomechanical properties of the MTU, MTU interaction and balanced development through changes in movement patterns, equipment, and training methods to enhance performance and reduce injuries.

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邓力勤,张希妮,肖松林,傅维杰.小腿三头肌-肌腱复合体的运动功能及其在跑步生物力学中的贡献[J].医用生物力学,2025,40(1):223-230

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  • 收稿日期:2024-05-16
  • 最后修改日期:2024-08-28
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  • 在线发布日期: 2025-02-26
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