• Title of article

    The effect of patellar taping on some landing characteristics during counter movement jumps in healthy subjects

  • Author/Authors

    Cámara, Jesús University of the Basque Country (EHU/UPV) - Department of Physical Activity and Sport Sciences, Spain , Díaz, Francisco Hospital of Basurto - Department of Rehabilitation, Spain , Anza, María Soledad Hospital of Basurto - Department of Rehabilitation, Spain , Mejuto, Gaizka University of the Basque Country (EHU/UPV) - Department of Physical Activity and Sport Sciences, Spain , Puente, Asier University of the Basque Country (EHU/UPV) - Department of Physical Activity and Sport Sciences, Spain , Iturriaga, Gorka University of the Basque Country (EHU/UPV) - Department of Physical Activity and Sport Sciences, Spain , Fernández, Juan-Ramón KIROLENE, Spain

  • From page
    707
  • To page
    711
  • Abstract
    The aim of the present study was to determine the effect of patellar taping (PT) on landing characteristics of the vertical ground reaction force (VGRF) and on flight time during a counter movement jump (CMJ). Eleven healthy male subjects (age: 31.1 ± 4.2 years) volunteered for the study. Each subject performed six CMJs under two different jumping conditions: with PT and without PT (WPT). The order of the two conditions was randomized. All of the measured variables had fair-to-good reliability (intra-class correlation coefficient 0.75). When we compared the PT and WPT groups, we did not find a significant difference in the magnitude of the first (F1) and second (F2) peaks of the VGRF. We also did not find a significant difference in the time to production of these peaks (T1 and T2),and the time to stabilization (TTS) (p 0.05). Furthermore, the flight time was similar in the two groups (0.475 ± 0.046 and 0.474 ± 0.056 s, respectively, for PT and WPT). These results suggest that PT does not jeopardize performance during CMJ. Furthermore,it also does not soften the VGRF generated during the landing,indicating that PT may be of limited utility in preventing injuries associated with this type of movement.
  • Keywords
    Biomechanics , Force platform , Landing phase , Vertical ground reaction force
  • Journal title
    Journal of Sports Science and Medicine
  • Journal title
    Journal of Sports Science and Medicine
  • Record number

    2729349