Faster Club Hockey Athletes Have Reduced Upper Leg Muscular Co-contraction During Maximal-Speed Sprinting

Author:

Williams Jason1ORCID,Watso Joseph C.1

Affiliation:

1. Florida State University

Abstract

Abstract

Background Most electromyographic (EMG) data for muscular activation patterns during ambulation is limited to older adults with existing chronic disease(s) walking at slow velocities. However, we know much less about the lower extremity muscle co-contraction patterns during sprinting and its relation to running velocity (i.e., performance). Therefore, we compared lower extremity muscular activation patterns during sprinting between slower and faster collegiate club hockey athletes. We hypothesized that faster athletes would have lower EMG-assessed co-contraction index (CCI) values in the lower extremities during over-ground sprinting. Results Twenty-two males (age = 21[1] yrs (median[IQR]); body mass = 77.1 ± 8.6 kg (mean ± SD)) completed two 20-m over-ground sprints with concomitant EMG and asynchronous force plate testing. We split participants using median running velocity (FAST: 8.5 ± 0.3 vs. SLOW: 7.7 ± 0.3 Conclusions m/s, p < 0.001). Faster athletes had lower CCI between the rectus femoris and biceps femoris (group: p = 0.05), particularly during the late swing phase of the gait cycle (post hoc p = 0.02). In agreement with our hypothesis, we found lower CCI values in the upper leg musculature during maximal-speed over-ground sprinting. These data from collegiate club hockey athletes corroborate other reports in clinical populations that the coordination between the rectus femoris and biceps femoris is associated with linear over-ground sprinting velocity.

Publisher

Research Square Platform LLC

Reference25 articles.

1. Muscle activity in sprinting: a review;Howard R;Sports Biomech,2018

2. Functional differences in the activity of the hamstring muscles with increasing running speed;Higashihara A;J Sports Sci,2010

3. Biomechanics of walking, running, and sprinting;Mann RA;Am J Sports Med,1980

4. Does fatigue induced by repeated dynamic efforts affect hamstring muscle function?;Pinniger G;Official J Am Coll Sports Med,2000

5. Hamstring muscle kinematics and activation during overground sprinting;Yu B;J Biomech,2008

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