Gradual increase of varus angle of running shoes gradually reduces pronation while maintaining cushioning properties

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Gradual increase of varus angle of running shoes gradually reduces pronation while maintaining cushioning properties

Introduction Excessive pronation is considered to be the cause of various overuse injuries. Thus, different mechanisms to control excessive pronation have been developed (e.g. dual density and medial support shoes). Reducing effects of shoes with extreme varus angles (VA) of 8–10° on pronation (TPR) and maximum pronation velocity (MPV) have been shown [1,2]. However, resultant GRFs, loading rat...

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Adaptations to Running While Footwear Cushioning and Surface are Manipulated

..................................................................................................................... vi LIST OF TABLES ........................................................................................................... xiii LIST OF FIGURES ......................................................................................................... xiv

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Running Shoe Design: Protection and Performance

2 ABSTRACT The overuse injuries commonly experienced by runners can be attributed to a number of risk factors. The primary risk factor is repetitive impact loading of the lower extremity, but anatomical predispositions, excessive subtalar joint pronation, running surfaces, shoes and training habits all contribute to the probability of injury. Running shoes are rarely the sole cause of an injury...

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EFFECT OF AGILITY SHOES ON RUNNING KINETICS IN INDIVIDIUALS WITH GENU VARUS BEFORE AND AFTER FATIGUE PROTOCOL

Background & Aim: Genu varus is one of the most common injuries of the lower limb, which affects posture control by creating internal torque on the ankle and foot joints. The complication of Genu varus is accompanied by the biomechanical change of the lower limb during walking and running. The aim of the present study was to evaluate the effect of using agility shoes on running kinetics in indi...

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Effects of insoles and additional shock absorption foam on the cushioning properties of sport shoes.

The purpose of this study was to investigate the effects of insoles and additional shock absorption foam on the cushioning properties of various sport shoes with an impact testing method. Three commercial sport shoes were used in this study, and shock absorption foam (TPE5020; Vers Tech Science Co. Ltd., Taiwan) with 2-mm thickness was placed below the insole in the heel region for each shoe. E...

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ژورنال

عنوان ژورنال: Journal of Foot and Ankle Research

سال: 2008

ISSN: 1757-1146

DOI: 10.1186/1757-1146-1-s1-o49