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股外侧肌在肌束和肌腱-肌肉单元水平的体内力-速度关系。

In vivo vastus lateralis force-velocity relationship at the fascicle and muscle tendon unit level.

作者信息

Fontana Heiliane de Brito, Roesler Helio, Herzog Walter

机构信息

CAPES Foundation, Ministry of Education of Brazil, Brasília, DF 70040-020, Brazil; University of the State of Santa Catarina, Aquatic Biomechanics Research Laboratory, Brazil; University of Calgary, Human Performance Laboratory, Canada.

University of the State of Santa Catarina, Aquatic Biomechanics Research Laboratory, Brazil.

出版信息

J Electromyogr Kinesiol. 2014 Dec;24(6):934-40. doi: 10.1016/j.jelekin.2014.06.010. Epub 2014 Jul 18.

Abstract

The force velocity relationship of in vivo human muscle fibers has often been derived from the torque-angular speed relationship during maximal voluntary isokinetic contractions. However, the assumption of a close association between joint performance and muscle mechanics is questionable. We aimed to determine the relationship between knee extension angular speeds, vastus lateralis fascicle and muscle tendon unit (MTU) shortening speeds, and maximal knee extensor force for the entire range of knee joint movement, for the isokinetic range, and for the ranges before, after and at peak torque occurrence, with different commonly used pre-loading conditions. Higher peak forces were observed when knee extensions were preceded by a pre-load, despite the similarity in fascicle shortening speeds. For the entire and the isokinetic range, MTU always shortened faster than fascicles, and this difference increased as joint speed increased. Interestingly, fascicle shortening velocities were greater before compared to after peak torque occurrence while the opposite happened at the MTU level. Assuming a close relationship between joint and fascicle dynamics results in an overestimation of muscle contractile component shortening velocity or force production at peak torque. The force velocity relationships obtained in vivo depend crucially on the test conditions, and the movement range used for analysis.

摘要

体内人类肌纤维的力-速度关系通常是从最大自主等速收缩期间的扭矩-角速度关系推导而来。然而,关节性能与肌肉力学之间存在紧密关联这一假设是值得怀疑的。我们旨在确定在不同常用预加载条件下,膝关节伸展角速度、股外侧肌束和肌腱单元(MTU)缩短速度以及整个膝关节运动范围、等速范围以及扭矩出现之前、之后和峰值扭矩时的最大膝关节伸肌力量之间的关系。尽管束状肌缩短速度相似,但在膝关节伸展前进行预加载时观察到更高的峰值力量。对于整个范围和等速范围,MTU总是比肌束缩短得更快,并且这种差异随着关节速度的增加而增大。有趣的是,与峰值扭矩出现后相比,峰值扭矩出现前肌束缩短速度更大,而在MTU水平则相反。假设关节和肌束动力学之间存在紧密关系会导致在峰值扭矩时高估肌肉收缩成分的缩短速度或力量产生。体内获得的力-速度关系关键取决于测试条件以及用于分析的运动范围。

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