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ORIGINAL RESEARCH article

Front. Physiol.
Sec. Exercise Physiology
Volume 15 - 2024 | doi: 10.3389/fphys.2024.1498811

Neuromuscular Factors Predicting Lower Limb Explosive Strength in Male College Sprinters

Provisionally accepted
Yanjin Li Yanjin Li 1Qiaofeng Guo Qiaofeng Guo 1Jia Shao Jia Shao 2Yanming Gan Yanming Gan 1Yajing Zhao Yajing Zhao 3Yue Zhou Yue Zhou 1*
  • 1 Department of Exercise Physiology, Beijing Sport University, Beijing, China
  • 2 Beijing Research Institute of Sports Science, beijing, China
  • 3 School of Competitive Sports, Beijing Sport University, Beijing, Beijing Municipality, China

The final, formatted version of the article will be published soon.

    Purpose: This study aimed to explore the effects of neural and muscular factors on lower limb explosive strength in male college sprinters, and build models based on those factors to identify the key neuromuscular factors that predict the rate of force development (RFD)and 30m sprint time.Method: 15 male college sprinters were recruited in this study. The neuromuscular data were collected by H-reflex and V-wave, isokinetic muscle strength, vertical jumps, and 30m sprint tests. Pearson correlation and multiple stepwise regression were used for data analysis. The level of statistical significance was set at p ≤0.05 for all analyses.Results: 30 m sprint time had a significant moderate positive correlation with Achilles tendon stiffness (r = 0.50, p = 0.05, 95%CI: 0.01 to 0.81) and a significant moderate negative correlation with the Hindex (r = -0.54, p = 0.04, 95%CI: -0.82 to -0.03), V wave(V/MmaxA, r = -0.59, p = 0.02, 95%CI:-0.85 to -0.11) and the eccentric strength of Hamstring (HECC, r = -0.53, p = 0.04, 95%CI:-0.82 to -0.03). The rate of force development (RFD) had a significant positive correlation with H reflex (Hmax/Mmax, r = 0.57, p = 0.03,95%CI:0.08 to 0.84), and the eccentric strength of Quadriceps (QECC, r = 0.53, p = 0.04, 95%CI: 0.02 to 0.82). V/MmaxA and HECC were identified as predictors of 30 m sprint time, and the R 2 explained 57.5% of the variance. Vertical stiffness and QECC explained 82.7% of the variation in the RFD.Conclusion: This study found that V/MmaxA and HECC were predictive factors of 30m sprint time, vertical stiffness and QECC were the predictive factors of RFD. Neural factors such as the αmotoneurons excitability of the spinal and supraspinal centers, have a greater influence on lower limb explosive strength in male college sprinters. Therefore, training related to the neural function of sprinters should be emphasized. In addition, H reflex and V wave can be used widely to assess and monitor the neural function of sprinters in future research. The impact of neural drive on muscles in different levels and sexes of sprinters, and the neuromuscular modulation during muscle contractions can be further explored.

    Keywords: H-Reflex, V-wave, Sprinter, Neuromuscular, stiffness

    Received: 19 Sep 2024; Accepted: 23 Dec 2024.

    Copyright: © 2024 Li, Guo, Shao, Gan, Zhao and Zhou. This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.

    * Correspondence: Yue Zhou, Department of Exercise Physiology, Beijing Sport University, Beijing, China

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