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Articles

Improving running economy through altered shoe bending stiffness across speeds

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Pages 79-89 | Received 15 Nov 2019, Accepted 22 Feb 2020, Published online: 16 Mar 2020

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Read on this site (5)

Andrew Fife, Codi Ramsey, Jean-Francois Esculier & Kim Hébert-Losier. (2023) How do road runners select their shoes? A systematic review. Footwear Science 15:2, pages 103-112.
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Matthew Q. Salzano, Gillian Weir, Jessica Thompson, Matthieu B. Trudeau, Christopher Ertel, Kayley Dear, Steffen Willwacher & Joseph Hamill. (2022) Can footwear satisfaction be predicted from mechanical properties?. Footwear Science 14:3, pages 151-161.
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J. Rossi, T. Besson, D. Poncet, G. Y. Millet & C. Y .M. Morio. (2020) Intra- and inter- session reliability of a new method for evaluating toes flexor strength: preliminary study. Computer Methods in Biomechanics and Biomedical Engineering 23:sup1, pages S262-S264.
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Saba Eshraghi & Mahshid Yazdi Far. Footwear bending stiffness measurement methods: a review. Footwear Science 0:0, pages 1-11.
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Articles from other publishers (11)

Ali Yawar & Daniel E. Lieberman. (2023) Biomechanical Tradeoffs in Foot Function From Variations in Shoe Design. Exercise and Sport Sciences Reviews 51:4, pages 128-139.
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Nicolas Flores, Guillaume Rao, Eric Berton & Nicolas Delattre. (2021) Increasing the longitudinal bending stiffness of runners’ habitual shoes: An appropriate choice for improving running performance?. Proceedings of the Institution of Mechanical Engineers, Part P: Journal of Sports Engineering and Technology 237:3, pages 121-133.
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Florian Max, Fabian Hübner, Michael Frisch & Holger Ruckdäschel. (2023) A scientific view on composite inlays in running shoes: The influence of epoxy crosslink density on bending and fatigue properties. Results in Materials 18, pages 100404.
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Yang Song, Xuanzhen Cen, Hairong Chen, Dong Sun, Goran Munivrana, Kovács Bálint, István Bíró & Yaodong Gu. (2023) The influence of running shoe with different carbon-fiber plate designs on internal foot mechanics: A pilot computational analysis. Journal of Biomechanics 153, pages 111597.
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Dustin P. Joubert, Trace A. Dominy & Geoffrey T. Burns. (2023) Effects of Highly Cushioned and Resilient Racing Shoes on Running Economy at Slower Running Speeds. International Journal of Sports Physiology and Performance, pages 1-7.
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Titouan P. Perrin, Jeremy Rossi, Hugo A. Kerhervé & Guillaume Y. Millet. (2023) Increasing Shoe Longitudinal Bending Stiffness Is Not Beneficial to Reduce Energy Cost During Graded Running. International Journal of Sports Physiology and Performance, pages 1-4.
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Mickael Chollet, Samuel Michelet, Nicolas Horvais, Sebastien Pavailler & Marlene Giandolini. (2022) Individual physiological responses to changes in shoe bending stiffness: a cluster analysis study on 96 runners. European Journal of Applied Physiology 123:1, pages 169-177.
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Laura A. Healey & Wouter Hoogkamer. (2022) Longitudinal bending stiffness does not affect running economy in Nike Vaporfly Shoes. Journal of Sport and Health Science 11:3, pages 285-292.
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Justin A. Ortega, Laura A. Healey, Wannes Swinnen & Wouter Hoogkamer. (2021) Energetics and Biomechanics of Running Footwear with Increased Longitudinal Bending Stiffness: A Narrative Review. Sports Medicine 51:5, pages 873-894.
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Evan M. Day & Michael E. Hahn. (2021) Does running speed affect the response of joint level mechanics in non-rearfoot strike runners to footwear of varying longitudinal bending stiffness?. Gait & Posture 84, pages 187-191.
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Owen N. Beck, Pawel R. Golyski & Gregory S. Sawicki. (2020) Adding carbon fiber to shoe soles may not improve running economy: a muscle-level explanation. Scientific Reports 10:1.
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