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更格卢鼠(荒漠更格卢鼠)的跖屈肌在跳跃过程中以一定速度缩短,以产生最佳功率。

Plantar flexor muscles of kangaroo rats (Dipodomys deserti) shorten at a velocity to produce optimal power during jumping.

作者信息

Schwaner M Janneke, Lin David C, McGowan Craig P

机构信息

Department of Biological Sciences, University of Idaho, Moscow, ID 83844, USA.

Voiland School of Chemical Engineering and Bioengineering, Washington State University, Pullman, WA 99164, USA.

出版信息

J Exp Biol. 2021 Dec 15;224(24). doi: 10.1242/jeb.242630. Epub 2021 Dec 22.

Abstract

The musculotendon work contributions across all joints during jumping by kangaroo rats are not well understood. Namely, measures of external joint work do not provide information on the contributions from individual muscles or in-series elastic structures. In this study, we examined the functional roles of a major ankle extensor muscle, the lateral gastrocnemius (LG), and a major knee extensor muscle, the vastus lateralis (VL), through in vivo sonomicrometry and electromyography techniques, during vertical jumping by kangaroo rats. Our data showed that both muscles increased shortening and activity with higher jumps. We found that knee angular velocity and VL muscle shortening velocity were coupled in time. In contrast, the ankle angular velocity and LG muscle shortening velocity were decoupled, and rapid joint extension near the end of the jump produced high power outputs at the ankle joint. Further, the decoupling of muscle and joint kinematics allowed the LG muscle to prolong the period of shortening velocity near optimal velocity, which likely enabled the muscle to sustain maximal power generation. These observations were consistent with an LG tendon that is much more compliant than that of the VL.

摘要

更格卢鼠跳跃时所有关节处肌肉-肌腱的做功贡献尚未得到充分理解。也就是说,外部关节做功的测量并不能提供有关单个肌肉或串联弹性结构贡献的信息。在本研究中,我们通过体内超声测量法和肌电图技术,研究了更格卢鼠垂直跳跃过程中主要的踝关节伸肌——外侧腓肠肌(LG)和主要的膝关节伸肌——股外侧肌(VL)的功能作用。我们的数据表明,随着跳跃高度增加,两块肌肉的缩短程度和活动都增强了。我们发现膝关节角速度和VL肌肉缩短速度在时间上是耦合的。相比之下,踝关节角速度和LG肌肉缩短速度是解耦的,并且在跳跃接近尾声时踝关节的快速伸展在踝关节处产生了高功率输出。此外,肌肉和关节运动学的解耦使得LG肌肉能够在接近最佳速度的情况下延长缩短速度的持续时间,这可能使肌肉能够维持最大功率的产生。这些观察结果与LG肌腱比VL肌腱柔顺得多这一情况相一致。

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