Literature DB >> 20962690

Changes in running kinematics, kinetics, and spring-mass behavior over a 24-h run.

Jean-Benoît Morin1, Pierre Samozino, Guillaume Y Millet.   

Abstract

PURPOSE: This study investigated the changes in running mechanics and spring-mass behavior over a 24-h treadmill run (24TR).
METHODS: Kinematics, kinetics, and spring-mass characteristics of the running step were assessed in 10 experienced ultralong-distance runners before, every 2 h, and after a 24TR using an instrumented treadmill dynamometer. These measurements were performed at 10 km·h, and mechanical parameters were sampled at 1000 Hz for 10 consecutive steps. Contact and aerial times were determined from ground reaction force (GRF) signals and used to compute step frequency. Maximal GRF, loading rate, downward displacement of the center of mass, and leg length change during the support phase were determined and used to compute both vertical and leg stiffness.
RESULTS: Subjects' running pattern and spring-mass behavior significantly changed over the 24TR with a 4.9% higher step frequency on average (because of a significantly 4.5% shorter contact time), a lower maximal GRF (by 4.4% on average), a 13.0% lower leg length change during contact, and an increase in both leg and vertical stiffness (+9.9% and +8.6% on average, respectively). Most of these changes were significant from the early phase of the 24TR (fourth to sixth hour of running) and could be speculated as contributing to an overall limitation of the potentially harmful consequences of such a long-duration run on subjects' musculoskeletal system.
CONCLUSIONS: During a 24TR, the changes in running mechanics and spring-mass behavior show a clear shift toward a higher oscillating frequency and stiffness, along with lower GRF and leg length change (hence a reduced overall eccentric load) during the support phase of running.
© 2011 by the American College of Sports Medicine

Entities:  

Mesh:

Year:  2011        PMID: 20962690     DOI: 10.1249/MSS.0b013e3181fec518

Source DB:  PubMed          Journal:  Med Sci Sports Exerc        ISSN: 0195-9131            Impact factor:   5.411


  21 in total

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8.  Wireless Tri-Axial Trunk Accelerometry Detects Deviations in Dynamic Center of Mass Motion Due to Running-Induced Fatigue.

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9.  Effects of extreme-duration heavy load carriage on neuromuscular function and locomotion: a military-based study.

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10.  Comparison of vertical ground reaction forces during overground and treadmill running. A validation study.

Authors:  Bas Kluitenberg; Steef W Bredeweg; Sjouke Zijlstra; Wiebren Zijlstra; Ida Buist
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