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      Influence of Compression and Stiffness Apparel on Vertical Jump Performance.

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          Abstract

          Compression apparel alters both compression of the soft tissues and the hip joint stiffness of athletes. It is not known whether it is the compression elements, the stiffness elements, or some combination that increases performance. Therefore, the purpose of this study was to determine how systematically increasing upper leg compression and hip joint stiffness independently from one another affects vertical jumping performance. Ten male athletes performed countermovement vertical jumps in 8 concept apparel conditions and 1 control condition (loose fitting shorts). The 8 apparel conditions, 4 that specifically altered the amount of compression exerted on the thigh and 4 that altered the hip joint stiffness by means of elastic thermoplastic polyurethane bands, were tested on 2 separate testing sessions (one testing the compression apparel and the other testing the stiffness apparel). Maximum jump height was measured, while kinematic data of the hip, knee, and ankle joint were recorded with a high-speed camera (480 Hz). Both compression and stiffness apparel can have a positive influence on vertical jumping performance. The increase in jump height for the optimal compression was due to increased hip joint range of motion and a trend of increasing the jump time. Optimal stiffness also increased jump height and had the trend of decreasing the hip joint range of motion and hip joint angular velocity. The exact mechanisms by which apparel interventions alter performance is not clear, but it may be due to alterations to the force-length and force-velocity relationships of muscle.

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          Author and article information

          Journal
          J Strength Cond Res
          Journal of strength and conditioning research
          Ovid Technologies (Wolters Kluwer Health)
          1533-4287
          1064-8011
          Apr 2016
          : 30
          : 4
          Affiliations
          [1 ] Human Performance Lab, Faculty of Kinesiology, University of Calgary, Calgary, Alberta, Canada.
          Article
          00124278-201604000-00025
          10.1519/JSC.0000000000001195
          27003453
          5b903e69-edcf-40b7-9884-45841235d43e
          History

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