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      How Do Spatiotemporal Parameters and Lower-Body Stiffness Change with Increased Running Velocity? A Comparison Between Novice and Elite Level Runners

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          Abstract

          This study aimed to examine the effect of running velocity on spatiotemporal parameters and lower-body stiffness of endurance runners, and the influence of the performance level on those adaptations. Twenty-two male runners (novice [NR], n = 12, and elite runners [ER], n = 10) performed an incremental running test with a total of 5 different running velocities (10, 12, 14, 16, 18 km/h). Each condition lasted 1 min (30 s acclimatization period, and 30 s recording period). Spatiotemporal parameters were measured using the OptoGait system. Vertical (Kvert) and leg (Kleg) stiffness were calculated according to the sine-wave method. A repeated measures ANOVA (2 x 5, group x velocities) revealed significant adaptations (p < 0.05) to increased velocity in all spatiotemporal parameters and Kvert in both NR and ER. ER showed a greater flight time (FT) and step angle (at 18 km/h) (p < 0.05), longer step length (SL) and lower step frequency (SF) (p < 0.05), whereas no between-group differences were found in contact time (CT) nor in the sub-phases during CT at any speed (p ≥ 0.05). ER also showed lower Kvert values at every running velocity (p < 0.05), and no differences in Kleg (p ≥ 0.05). In conclusion, lower SF and Kvert and, thereby, longer FT and SL, seem to be the main spatiotemporal characteristics of high-level runners compared to their low-level counterparts.

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          The biomechanics of running.

          This review article summarizes the current literature regarding the analysis of running gait. It is compared to walking and sprinting. The current state of knowledge is presented as it fits in the context of the history of analysis of movement. The characteristics of the gait cycle and its relationship to potential and kinetic energy interactions are reviewed. The timing of electromyographic activity is provided. Kinematic and kinetic data (including center of pressure measurements, raw force plate data, joint moments, and joint powers) and the impact of changes in velocity on these findings is presented. The status of shoewear literature, alterations in movement strategies, the role of biarticular muscles, and the springlike function of tendons are addressed. This type of information can provide insight into injury mechanisms and training strategies. Copyright 1998 Elsevier Science B.V.
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            Lower extremity stiffness: implications for performance and injury

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              Foot strike and injury rates in endurance runners: a retrospective study.

              This retrospective study tests if runners who habitually forefoot strike have different rates of injury than runners who habitually rearfoot strike.
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                Author and article information

                Journal
                J Hum Kinet
                J Hum Kinet
                hukin
                hukin
                Journal of Human Kinetics
                Sciendo
                1640-5544
                1899-7562
                30 November 2019
                November 2019
                : 70
                : 25-38
                Affiliations
                [1 ]Department of Physical Education, Sports and Recreation. Universidad de La Frontera (Temuco, Chile)
                [2 ]Department of Physical Education and Sport, Faculty of Sport Sciences, University of Granada (Granada, Spain)
                [3 ]Universidad Católica de la Santísima Concepción, Faculty of Education (Concepción, Chile)
                [4 ]Department of Physical Activity Sciences, Research Nucleus in Health, Physical Activity and Sport, Universidad de Los Lagos (Osorno, Chile)
                [5 ]University of Jaen, Department of Corporal Expression . Campus de Las Lagunillas s/n. D2 Building, Dep. 142. 23071 Jaen (Spain)
                [6 ]Universidad San Jorge. Campus Universitario, A23 km 299, 50830. Villanueva de Gállego (Zaragoza, Spain)
                Author notes
                [* ] Felipe García-Pinillos Department of Physical Education, Sport and Recreation. Universidad de La Frontera (Temuco, Chile). Calle Uruguay, 1980 (Temuco, Chile) fegarpi@ 123456gmail.com
                Article
                hukin-2019-0036
                10.2478/hukin-2019-0036
                6942482
                31915473
                da6d914d-c6c1-43d0-b0c1-b8642bd75b51
                © 2019 Felipe García-Pinillos, Amador García-Ramos, Rodrigo Ramírez-Campillo, Pedro Á. Latorre-Román, Luis E. Roche-Seruendo, published by Sciendo

                This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.

                History
                Page count
                Pages: 14
                Categories
                Section I – Kinesiology

                endurance runners,running kinematics,performance
                endurance runners, running kinematics, performance

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