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September 10, 2025Applied Sciences5 citationsOpen Access

Morphological and Functional Asymmetry Among Competitive Female Fencing Athletes

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WBWiktoria BanyMNMonika NyrćMŁMonika Łopuszańska-Dawid

Key Points

  • Morphological asymmetry was minimal, with indices not exceeding 5%, suggesting stability in elite fencers.
  • Significant functional asymmetry was identified, especially related to forearm circumference in the dominant limb.
  • Continuous monitoring of athletes aids in optimizing performance and minimizing injury risks over time.
  • In-depth investigation into non-dominant limbs is essential for a comprehensive understanding of asymmetry.

Abstract

Maintaining body symmetry in sports characterized by high lateralization is crucial for optimizing long-term athletic performance and mitigating injury risk. This study aimed to evaluate the extent of morphological asymmetry in anthropometric features among elite professional fencers. Additionally, the presence of functional asymmetry and its associations with morphological asymmetry were assessed. Thirty-two Polish adult female fencers, aged 18–33 yrs, were examined. Data collection involved a questionnaire survey, anthropometric measurements, calculation of anthropological indices, and assessment of functional asymmetry. For the 24 bilateral anthropometric features, small differences were found in seven characteristics: foot length, subscapular skinfold thickness, upper arm circumference, minimum and maximum forearm circumference, upper limb length, and arm circumference in tension. Morphological asymmetry index did not exceed 5%. Left-sided lateralization of either the upper or lower limbs was associated with significantly high asymmetry, specifically indicating larger minimum forearm circumferences in the right limb. Continuous, individualized monitoring of morphological asymmetry and its direction in athletes is essential, demanding concurrent consideration of functional lateralization. This ongoing assessment establishes a critical baseline for evaluating training adaptations, reducing injury susceptibility, and optimizing rehabilitation strategies. Deeper investigation of symmetry within non-dominant limbs is warranted to enhance our understanding.

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Cite This Study

Bany et al. (2025) studied this question.

synapsesocial.com/papers/68c1bd3b54b1d3bfb60ee88fhttps://doi.org/10.3390/app15148020
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