AI Article Synopsis

  • Muscle gearing occurs when both fascicle shortening and changes in pennation angle happen during muscle contraction, resulting in faster muscle contractions than fascicle contractions.
  • Research aims to understand how varying contraction intensities and ankle joint angles affect these changes in the triceps surae.
  • A study involving ten sport students revealed a nonlinear relationship between fascicle length and pennation angle, indicating that muscle gearing increases with higher contraction intensities and different ankle joint angles.

Article Abstract

During muscle contraction, not only are the fascicles shortening but also the pennation angle changes, which leads to a faster contraction of the muscle than of its fascicles. This phenomenon is called muscle gearing, and it has a direct influence on the force output of the muscle. There are few studies showing pennation angle changes during isometric and concentric contractions for different contraction intensities and muscle lengths. Therefore, the aim was to determine these influences over a wide range of contraction intensities and ankle joint angles for human triceps surae. Additionally, the influence of contraction intensity and ankle joint angle on muscle gearing was evaluated. Ten sport students performed concentric and isometric contractions with intensities between 0 and 90% of the maximum voluntary contraction and ankle joint angles from 50° to 120°. During these contractions, the m. gastrocnemius medialis and lateralis and the m. soleus were recorded via ultrasound imaging. A nonlinear relationship between fascicle length and pennation angle was discovered, which can be described with a quadratic fit for each of the muscles during isometric contraction. A nearly identical relationship was detected during dynamic contraction. The muscle gearing increased almost linearly with contraction intensity and ankle joint angle.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11496514PMC
http://dx.doi.org/10.1038/s41598-024-75795-2DOI Listing

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