Department of Evolution, Ecology and Organismal Biology, University of California Riverside, 900 University Avenue, Riverside, CA 92521, USA.
Department of Evolution, Ecology and Organismal Biology, University of California Riverside, 900 University Avenue, Riverside, CA 92521, USA.
J Biomech. 2023 May;153:111585. doi: 10.1016/j.jbiomech.2023.111585. Epub 2023 Apr 13.
The contractile elements in skeletal muscle fibers operate in series with elastic elements, tendons and potentially aponeuroses, in muscle-tendon units (MTUs). Elastic strain energy (ESE), arising from either work done by muscle fibers or the energy of the body, can be stored in these series elastic elements (SEEs). MTUs vary considerably in their design in terms of the relative lengths and stiffnesses of the muscle fibers and SEEs, and the force and work generating capacities of the muscle fibers. However, within an MTU it is thought that contractile and series elastic elements can be matched or tuned to maximize ESE storage. The use of ESE is thought to improve locomotor performance by enhancing contractile element power during activities such as jumping, attenuating contractile element power during activities such as landing, and reducing the metabolic cost of movement during steady-state activities such as walking and running. The effectiveness of MTUs in these potential roles is contingent on factors such as the source of mechanical energy, the control of the flow of energy, and characteristics of SEE recoil. Hence, we suggest that MTUs specialized for ESE storage may vary considerably in the structural, mechanical, and physiological properties of their components depending on their functional role and required versatility.
在肌肉-肌腱单元 (MTU) 中,骨骼肌纤维的收缩元件与弹性元件(肌腱和潜在的腱膜)串联工作。弹性应变能 (ESE) 可以来自肌肉纤维做功或身体的能量,这些能量可以储存在这些串联弹性元件 (SEE) 中。MTU 在肌肉纤维和 SEE 的相对长度和刚度以及肌肉纤维的力量和做功能力方面的设计差异很大。然而,在一个 MTU 中,人们认为可以通过匹配或调整收缩元件和串联弹性元件来最大化 ESE 的储存。ESE 的使用被认为可以通过在跳跃等活动中提高收缩元件的功率、在着陆等活动中降低收缩元件的功率以及在步行和跑步等稳态活动中降低运动的代谢成本来改善运动表现。MTU 在这些潜在作用中的有效性取决于机械能的来源、能量流动的控制以及 SEE 回弹的特性等因素。因此,我们认为,专门用于 ESE 储存的 MTU 可能在其组件的结构、机械和生理特性方面存在很大差异,具体取决于其功能作用和所需的多功能性。