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March 19, 2026Machines0 citationsOpen Access

Biomechanical and Signal-Based Characterization of Karate Lateral Kicks Using Videogrammetry Analysis

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LALuis Antonio Aguilar-PérezJRJorge L. Rojas-ArceLJLuis Jiménez-Ángeles

Key Points

  • The aim is to analyze lower-limb control during karate lateral kicks using videogrammetry analysis and evaluate skill-dependent differences.
  • Recorded three participants during training sessions based on their expertise levels.
  • Participants performed lateral kicks at three distances: close, comfortable, and long.
  • Used Kinovea software for videogrammetry data to extract ankle trajectories.
  • Conducted statistical analyses in MATLAB to obtain kinematic data.
  • Expert practitioners showed better control during kicks, with stable limb trajectories and posture.
  • Novice practitioners had difficulty during the raising and recovery phases despite reaching targets.
  • Skill-dependent differences were noted in temporal evolution of kinematic variables.

Abstract

Martial arts have evolved from self-defense practices into structured competitive sports that demand high levels of neuromotor control, where improper execution remains a major source of injury. This study evaluates lower-limb control during the execution of the karate lateral kick using videogrammetry biomechanical analysis. Three participants were recorded during regular training sessions and selected according to their level of expertise. Each participant performed lateral kicks at three predefined distances (close, comfortable, and long), selected based on common training practice and individual biomechanical considerations. Videogrammetry data were generated using Kinovea version 0.9.5 software to extract sagittal ankle trajectories. Statistical analyses were carried out in MATLAB version 2025b using spatial coordinates to obtain kinematic data on the practitioner’s performance. The results revealed skill-dependent differences in movement control, characterized by temporal evolution of kinematic variables and their corresponding time–frequency representations. Novice practitioners exhibited limited control during the raising and recovery phases, despite reaching the target. In contrast, expert practitioners demonstrated consistent posture, controlled acceleration during impact, and stable limb trajectories during descent. These observations provide a foundation for data-driven classification of kick execution quality and outline potential applications in supervised learning, real-time feedback systems, and injury risk reduction during karate training.

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Cite This Study

Aguilar-Pérez et al. (2026) studied this question.

synapsesocial.com/papers/69bb92df496e729e629807cbhttps://doi.org/10.3390/machines14030339
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