Literature DB >> 21451183

Biomechanical response to changes in natural turf during running and turning.

Victoria H Stiles1, Igor N Guisasola, Iain T James, Sharon J Dixon.   

Abstract

Integrated biomechanical and engineering assessments were used to determine how humans responded to variations in turf during running and turning. Ground reaction force (AMTI, 960 Hz) and kinematic data (Vicon Peak Motus, 120 Hz) were collected from eight participants during running (3.83 m/s) and turning (10 trials per condition) on three natural turf surfaces in the laboratory. Surface hardness (Clegg hammer) and shear strength (cruciform shear vane) were measured before and after participant testing. Peak loading rate during running was significantly higher (p < .05) on the least hard surface (sandy; 101.48 BW/s ± 23.3) compared with clay (84.67 BW/s ± 22.9). There were no significant differences in running kinematics. Compared with the "medium" condition, fifth MTP impact velocities during turning were significantly (RM-ANOVA, p < .05) lower on clay (resultant: 2.30 m/s [± 0.68] compared with 2.64 m/s [± 0.70]), which was significantly (p < .05) harder "after" and had the greatest shear strength both "before" and "after" participant testing. This unique finding suggests that further study of foot impact velocities are important to increase understanding of overuse injury mechanisms.

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Year:  2011        PMID: 21451183     DOI: 10.1123/jab.27.1.54

Source DB:  PubMed          Journal:  J Appl Biomech        ISSN: 1065-8483            Impact factor:   1.833


  5 in total

Review 1.  Understanding the Acute Skin Injury Mechanism Caused by Player-Surface Contact During Soccer: A Survey and Systematic Review.

Authors:  Wilbert A J van den Eijnde; Malou Peppelman; Edwin A D Lamers; Peter C M van de Kerkhof; Piet E J van Erp
Journal:  Orthop J Sports Med       Date:  2014-05-12

2.  Six different football shoes, one playing surface and the weather; Assessing variation in shoe-surface traction over one season of elite football.

Authors:  Athol Thomson; Rodney Whiteley; Mathew Wilson; Chris Bleakley
Journal:  PLoS One       Date:  2019-04-30       Impact factor: 3.240

3.  Influence of the structural components of artificial turf systems on impact attenuation in amateur football players.

Authors:  Javier Sánchez-Sánchez; Ana M Gallardo-Guerrero; Antonio García-Gallart; Juan Antonio Sánchez-Sáez; José L Felipe; Alberto Encarnación-Martínez
Journal:  Sci Rep       Date:  2019-05-23       Impact factor: 4.379

4.  Comparison of lower limb segment forces during running on artificial turf and natural grass.

Authors:  Shea McMurtry; Goeran Fiedler
Journal:  J Rehabil Assist Technol Eng       Date:  2019-05-13

5.  The effects of artificial surface temperature on mechanical properties and player kinematics during landing and acceleration.

Authors:  Laura Charalambous; Hans Christian von Lieres Und Wilkau; Wolfgang Potthast; Gareth Irwin
Journal:  J Sport Health Sci       Date:  2015-06-12       Impact factor: 7.179

  5 in total

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