Overloading of tendon tissue may result in overuse tendon injuries in runners. One possible cause of overloading could be the occurrence of biomechanical inter-limb differences during running. However, scarce information exists concerning the simultaneous analysis of inter-limb differences in external and internal loading-related variables in habitual runners. In this study ground reaction force, joint kinematics, triceps surae and tibialis anterior activations, and medial gastrocnemius muscle-tendon junction displacement were assessed bilaterally during treadmill running at 2.7 m.s and 4.2 m.s. Statistical parametric t-tests and effect sizes were calculated to identify eventual inter-limb differences across the stance phase and stride cycle. Hip flexion angle was 9° greater (p = 0.03, ES = 0.30) in the non-preferred limb during the flight phase at 4.2 m.s. Hip extension velocity was 45 deg.s greater (p = 0.04, ES = 0.41) during ground contact and 25 deg.s greater (p = 0.02, ES = 0.41) immediately after toe-off in the non-preferred limb at 4.2 m.s. Hip extension velocity was also 40 deg.s greater (p = 0.01, ES = 0.46) in the non-preferred limb prior to touch-down at 4.2 m.s. Brief inter-limb differences in joint kinematics were not accompanied by inter-limb differences in variables associated to internal loading, suggesting they are unlikely to be underlying factors leading to tendon overloading in healthy non-injured runners.
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http://dx.doi.org/10.1016/j.jbiomech.2022.111209 | DOI Listing |
Sports (Basel)
December 2024
Research Center for Sport and Health Sciences, University of Iceland, 102 Reykjavik, Iceland.
Given the increasing use of innovative force plate systems in applied sports settings and the impact that anterior cruciate ligament (ACL) injuries have on team success, the purpose of the present study was to compare the lower-body neuromuscular performance characteristics of athletes who underwent ACL reconstruction (ACLR) and their non-injured counterparts (i.e., healthy controls).
View Article and Find Full Text PDFJ Neuroeng Rehabil
December 2024
Department of Kinesiology, University of Georgia, 330 River Road, Athens, GA, 30602, USA.
Background: The prefrontal cortex (PFC) is an important node for action planning in the frontoparietal reaching network but its role in reaching in children with cerebral palsy (CP) is unexplored. This case-control study combines a robotic task with functional near-infrared spectroscopy (fNIRS) to concurrently assess reaching accuracy and PFC activity during time-constrained, goal-directed reaching in children with CP. We hypothesized that reaching accuracy in children with CP would be lower than in typically developing children and would be related to PFC activity.
View Article and Find Full Text PDFPLoS One
December 2024
Biomechanics in Sports, Technical University of Munich, Munich, Bavaria, Germany.
Hamstring strain injuries are a prevalent burden in soccer. Low strength, muscle fatigue, and inter-limb differences in hamstring strength are associated with hamstring injury risk. Previous research shows increased hamstring injury incidence in soccer at the end of each half or the end of the match, respectively.
View Article and Find Full Text PDFJ Bodyw Mov Ther
March 2025
Human Performance Laboratory, Federal University of Amazonas, Manaus, AM, Brazil. Electronic address:
Objectives: To analyze the magnitude and direction of inter-limb asymmetries in vertical jump, T-test, isokinetic peak torque, and muscle volume in professional female soccer players.
Methods: Sixteen female soccer players participated in the study (22.7 ± 3.
Sports Biomech
December 2024
CETAPS UR3832, Faculty of Sport Sciences, University of Rouen Normandy, Mont-Saint-Aignan, France.
This study questioned the influence of unilateral physical impairment on controlling inter-limb coordination, notably the coordination symmetry. We investigated whether unilateral physical impairment and unilateral breathing preference led to motor coordination asymmetry in eleven elite Para swimmers during 10 times 25 m in front crawl incremented in speed. Multicamera video system and five inertial measurement units were used to assess arm and leg phases and to compute symmetry of arm coordination and of arm-leg synchronisation.
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