首页> 外文期刊>Journal of Biomechanics >In vivo operational fascicle lengths of vastus lateralis during sub-maximal and maximal cycling.
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In vivo operational fascicle lengths of vastus lateralis during sub-maximal and maximal cycling.

机译:在次最大循环和最大循环过程中,股外侧肌的体内操作分册长度。

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摘要

Instantaneous contractile characteristics of skeletal muscle, during movement tasks, can be determined and related to steady state mechanical properties such as the force-length relationship with the use of ultrasound imaging. A previous investigation into the contractile characteristics of the vastus lateralis (VL) during cycling has shown that fascicles operate on the "weak" descending limb of the force-length relationship, thus not taking advantage of the "strong" plateau region. The purpose of this study was to investigate if VL fascicle lengths change from sub-maximal to maximal cycling conditions, and if maximal cycling results in VL fascicle lengths which operate across the plateau of the force-length relationship. Fifteen healthy male subjects (age 20.9+/-1.8yr, wt. 67.0+/-6.3kg, ht. 176.7+/-7.2cm) were tested to establish the maximal force-length relationship for the VL through ten maximal isometric contractions at various knee angles. Subjects then cycled on an SRM cycle ergometer at cadences of 50 and 80 revolutions per minute at 100W, 250W, and maximal effort. Fascicle lengths were determined at crank angles of 0, 90, and 180 degrees . Fascicles operated at or near the plateau of the maximal force-length relationship for maximal cycling, while operating on the descending limb during sub-maximal conditions for both cadences. However, when comparing the fascicle operating range for the sub-maximal cycling conditions to the corresponding sub-maximal force-length relationships, the VL now also operated across the plateau region. We concluded from these results that regardless of cycling effort, the VL operated through the ideal plateau region of the corresponding force-length relationship, hence always working optimally. We hypothesize that this phenomenon is due to the coupling of series elastic compliance and length dependent calcium sensitivity in the VL.
机译:可以确定运动任务期间骨骼肌的瞬时收缩特性,并与稳态机械特性(如使用超声成像的力长关系)相关。先前对骑行期间股外侧肌(VL)的收缩特性的研究表明,束在力长关系的“弱”下降肢体上起作用,因此没有利用“强”高原区域。这项研究的目的是调查VL束长度是否从次最大循环条件变为最大循环条件,以及最大循环是否导致VL束长度在整个力-长度关系的平台上起作用。测试了15名健康男性受试者(年龄20.9 +/- 1.8yr,体重67.0 +/- 6.3kg,身高176.7 +/- 7.2cm),以通过在10处最大等距收缩来建立VL的最大力长关系。各种膝盖角度。然后,受试者在SRM自行车测功机上以100W,250W和最大努力的每分钟50和80转的节奏进行骑行。在0、90和180度的曲柄角处确定束长度。分册在最大力长关系的高原处或附近进行最大骑行,而在两种节奏的次最大条件下在下降肢上进行。但是,当将次最大循环条件下的分束器操作范围与相应的次最大力-长度关系进行比较时,VL现在也跨高原区域运行。从这些结果中我们得出结论,不管骑车的努力程度如何,VL都通过相应力长关系的理想高原区域进行操作,因此始终处于最佳状态。我们假设这种现象是由于VL中系列弹性顺应性和长度依赖性钙敏感性的耦合所致。

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