Gonadal hormones may predict structural bone fragility in elite female soccer player
(Gonadenhormone könnten strukturelle Knochenbrüchigkeit bei Elite-Fußballspielerinnen vorhersagen)
Purpose: This study determined the impact of menstrual status on bone tissue in elite post-pubertal female soccer players over an entire season.
Methods: Fifty-one elite female soccer players participated. At baseline, forty-one were assigned to the low hormonal androgenic profile (low-HAPL) and 10 to the high hormonal androgenic profile (high-HAPL).
Results: An 8-month training program led to increased bone mineral density content (p<0.05). The low-HAPL athletes improved the Narrow neck average cortical thickness (ACT) by 1.4% and reduced the corresponding Buckling ratio (BR) by 2.6%, thus decreasing the fracture risk (p<0.05). The high-HAPL athletes decreased the Narrow neck ACT by 5.4% and increased the BR by 2.6%, increasing fracture risk (p<0.05). Differences were assigned as being "very likely beneficial" for the low-HAPL athletes, supported by very large (d=3.41) and large (d=1.58) effect sizes for the Narrow neck ACT and BR, respectively.
Conclusion: A season of soccer training has induced bone geometry improvements in adolescent females. Bone health parameters improved in the two clusters. However, high-HAPL athletes decreased its resistance to loading compare to low-HAPL athletes. Even if female players do not present clinical symptoms related to their hormonal status, sport medicine physicians should pay attention to their structural bone fragility.
© Copyright 2020 Journal of Sports Sciences. Taylor & Francis. Alle Rechte vorbehalten.
| Schlagworte: | |
|---|---|
| Notationen: | Spielsportarten Biowissenschaften und Sportmedizin |
| Tagging: | Knochenmineraldichte |
| Veröffentlicht in: | Journal of Sports Sciences |
| Sprache: | Englisch |
| Veröffentlicht: |
2020
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| Online-Zugang: | https://doi.org/10.1080/02640414.2020.1735982 |
| Jahrgang: | 38 |
| Heft: | 7 |
| Seiten: | 827-837 |
| Dokumentenarten: | Artikel |
| Level: | hoch |