小腿三头肌-肌腱复合体运动功能进展及其生物力学贡献新理解
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上海体育学院 运动健身科技省部共建教育部重点实验室

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Advance in Motor Function of the Triceps Surae-Tendon Unit and Reexamine of its Biomechanical Contribution
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Key Laboratory of Exercise and Health Sciences of Ministry of Education,Shanghai University of Sport

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    摘要:

    概述了小腿三头肌-肌腱复合体(triceps surae muscle-tendon unit, MTU)的结构、功能,跑步中MTU生物力学特性适应变化以及其在体测量方法。跑步时,前掌着地跑和穿着刚度更大的碳板跑鞋可以优化MTU的动态形态学特征,降低肌肉收缩引起的能消,而采用前掌着地跑、裸足跑或穿着极简鞋跑步会MTU力学载荷更大。跑姿再训练对MTU的生物力学特性的提升有一定作用,而其余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,从而提高运动表现,减少MTU损伤的发生。对于测量MTU生物力学特性的方法,二维动态超声技术在测量准静态和运动时的形态学具有优势,未来需开发三维动态超声技术以填补其无法识别肌肉空间动态变化的不足。在测量MTU力时,对计算和间接测量方法的精度的提升仍然是一大挑战。

    Abstract:

    The structure, function, and significance of the triceps surae-tendon unit (MTU), along with its biomechanical adaptations during running and in vivo measurement methods were outlined. During running, forefoot striking and wearing shoes with greater stiffness, such as carbon plate running shoes, could optimize the behavior of the MTU and reduce energy consumption caused by muscle contraction. However, adopting forefoot striking, barefoot running, or wearing minimalist shoes during running could increase the biomechanical loads on the complex. Runners who engage in such running styles should take foot function training and gradually transition to prevent injuries. The gait retraining has a certain effect on improving the biomechanical properties of the MTU, 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 through changes in movement patterns, equipment, and training methods to enhance athletic performance and reduce its injuries. For the methods for measuring the MTU biomechanical properties, although the two-dimensional dynamic ultrasound technique excels in behavioral measurements during quasi-static and dynamic conditions, the development of a three-dimensional dynamic ultrasound technique may be necessary in the future to address its limitations in identifying dynamic changes in muscle spatial dynamics. Improvement in precision in calculating and indirectly measuring MTU force remains a significant challenge.

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  • 收稿日期:2024-05-16
  • 最后修改日期:2024-08-28
  • 录用日期:2024-08-28
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