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Standard mechanical energy analyses do not correlate with muscle work in cycling.

机译:标准的机械能分析与自行车运动中的肌肉活动无关。

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摘要

The goal of this study was to assess the utility of experimental methods to quantify mechanical energy expenditure (MEE) in human movement. To achieve this goal, a theoretical model of steady-state cycling driven by individual muscle actuators was used to produce two distinct pedal simulations. The simulations yielded the same pedaling rate and power output, but one reduced the MEE by avoiding eccentric muscle contractions. Contractile element force and length change in the individual muscles was used to quantify the total positive and negative work produced by the muscles. Three methods using external measurements were applied to the simulated movement. The three methods to quantify MEE were based on: (1) segment kinematic measurements, (2) work done by total joint powers and (3) intercompensated joint powers, i.e. negative work from one joint is transferred to an adjacent joint where energy is being generated (positive work) via biarticular muscles. The results showed that none of the MEE analyses were correlated to the MEE of the individual muscles, with errors reaching 40%. Errors were mainly attributed to the inability of the MEE methods to account for co-contractions of antagonistic muscle groups. This phenomenon occurred primarily when one muscle generated force during activation while the antagonist generated force during deactivation.
机译:这项研究的目的是评估量化人体运动中的机械能消耗(MEE)的实验方法的实用性。为了实现此目标,由单个肌肉执行器驱动的稳态自行车运动的理论模型用于产生两个不同的踏板模拟。模拟产生了相同的踩踏速度和功率输出,但是通过避免偏心肌肉收缩来降低了MEE。各个肌肉的收缩力和长度变化用于量化肌肉产生的总正功和负功。使用外部测量的三种方法被应用于模拟运动。量化MEE的三种方法基于:(1)分段运动学测量;(2)通过总联合功率完成的功;(3)相互补偿的联合功率,即,来自一个关节的负功转移到能量正在消耗的相邻关节通过双关节肌肉产生(正功)。结果表明,所有MEE分析均与单个肌肉的MEE不相关,误差达到40%。错误主要归因于MEE方法无法解释拮抗性肌肉群的共收缩。这种现象主要发生在激活过程中一只肌肉产生力而拮抗剂在失活过程中产生力时。

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