AI Article Synopsis

  • The study aimed to identify and evaluate factors impacting individual performance in race walking by utilizing functional principal component analysis (f-PCA) to assess knee joint kinematics and kinetics.
  • Seven competitive race walkers' lower limb movements were recorded using an optoelectronic system and a force platform, focusing on their knee joint dynamics during the race walking cycle.
  • Results showed that f-PCA effectively highlighted technical differences and asymmetries between athletes, suggesting it could be a valuable tool for detailed analysis and performance monitoring in sports.

Article Abstract

This study considered the problem of identifying and evaluating the factors of individual performance during race walking. In particular, the study explored the use of functional principal component analysis (f-PCA), a multivariate data analysis, for assessing and classifying the kinematics and kinetics of the knee joint in competitive race walkers. Seven race walkers of international and national level participated to the study. An optoelectronic system and a force platform were used to capture three-dimensional kinematics and kinetics of lower limbs during the race walking cycle. Functional principal component analysis was applied bilaterally to the sagittal knee angle and net moment data, because knee joint motion is fundamental to race walking technique. Scatterplots of principal component scores provided evidence of athletes' technical differences and asymmetries even when traditional analysis (mean +/- s curves) was not effective. Principal components provided indications for race walkers' classification and identified potentially important technical differences between higher and lower skilled athletes. Therefore, f-PCA might represent a future aid for the fine analysis of sports movements, if consistently applied to performance monitoring.

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Source
http://dx.doi.org/10.1080/14763140903414425DOI Listing

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