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Sportphysio 2024; 12(04): 171-176
DOI: 10.1055/a-2353-5483
DOI: 10.1055/a-2353-5483
Focus
Vertiefung
Einflussfaktoren auf die Beweglichkeit

Beweglichkeit ist – neben Ausdauer, Kraft, Schnelligkeit und Koordination – eine der 5 motorischen Fähigkeiten, die das Leistungsvermögen wesentlich mitbestimmen. Sportlerinnen und Sportler, aber auch deren Betreuerinnen und Betreuer sollten daher wissen, welche Faktoren die Beweglichkeit beeinflussen und ob bzw. wie diese modifizierbar sind.
Publikationsverlauf
Artikel online veröffentlicht:
20. September 2024
© 2024. Thieme. All rights reserved.
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Literatur
- 1 Andrade RJ, Freitas SR, Hug F. et al. The potential role of sciatic nerve stiffness in the limitation of maximal ankle range of motion. Sci Rep 2018; 8: 14532 https://doi.org/10.1038/s41598-018-32873-6
- 2 Bauman A, Bull F, Chey T. et al. IPS Group. The international prevalence study on physical activity: Results from 20 countries. Int J Behav Nutr Phys Act 2009; 6: 21
- 3 Behm DG, Cavanaugh T, Quigley P. et al. Acute bouts of upper and lower body static and dynamic stretching increase non-local joint range of motion. In: European Journal of Applied Physiology 2016; 116: 241-249
- 4 Buryk-Iggers S, Mittal N, Santa Mina D. et al. Exercise and rehabilitation in people with Ehlers-Danlos Syndrome: A systematic review. Arch Rehabil Res Clin Transl 2022; 4: 100189
- 5 Chaouachi A, Padulo J, Kasmi S. et al. Unilateral static and dynamic hamstrings stretching increases contralateral hip flexion range of motion. In: Clinical Physiology and Functional Imaging 2017; 37: 23-29
- 6 Chidi-Ogbolu N, Baar K. Effect of estrogen on musculoskeletal performance and injury risk. Front Physiol 2019; 9: 1834
- 7 Cibulka MT. Determination and significance of femoral neck anteversion. Physical Therapy 2004; 84: 550-558
- 8 Hirata K, Akagi R. Acute effect of static stretching on non-muscular tissue stiffness and joint flexibility: A comparative study between older and young men. Eur J Appl Physiol 2024; 124: 793-803
- 9 Lardner R. Stretching and flexibility: Its importance in rehabilitation. J Bodyw Mov Ther 2001; 5: 254-263
- 10 La Motte S, Lisman P, Gribbin T. et al. Systematic review of the association between physical fitness and musculoskeletal injury risk: Part 3 – flexibility, power, speed, balance, and agility. J Strength Cond Res 2019; 33: 1723-1735
- 11 Li S, Xiao X, Zhang Z. Hydration status in older adults: Current knowledge and future challenges. Nutrients 2023; 15
- 12 Maruyama M, Feinberg JR, Capello WN. et al. The frank stinchfield award: Morphologic features of the acetabulum and femur: Anteversion angle and implant positioning. Clin Orthop Relat Res 2001; 393: 52-65
- 13 Nakano J, Yamabayashi C, Scott A. et al. The effect of heat applied with stretch to increase range of motion: A systematic review. Physical Therapy in Sport 2012; 13: 180e188
- 14 Nuzzo JL. The case for retiring flexibility as a major component of physical fitness. Sports Med 2019; 50: 853-870
- 15 Pratt RL. Hyaluronan and the fascial frontier. Int J Mol Sci 2021; 22: 6845
- 16 Reeves ND, Narici MV, Maganaris CN. Strength training alters the viscoelastic properties of tendons in elderly humans. Muscle Nerve 2003; 28: 74-81
- 17 Saunders PU, Pyne DB, Telford RD. et al. Factors affecting running economy in trained distance runners. Sports Med 2004; 34 (7) 465-85
- 18 Støve MP, Hirata RP, Palsson TS. The tolerance to stretch is linked with endogenous modulation of pain. Scand J Pain 2021; 21: 355-363
- 19 Tesarz J, Hoheisel U, Wiedenhöfer B. et al. Sensory innervation of the thoracolumbar fascia in rats and humans. Neurosci 2011; 194: 302-308
- 20 Warneke K, Rabitsch T, Dobert P. et al. The effects of static and dynamic stretching on deep fascia stiffness: A randomized, controlled cross-over study. Eur J Appl Physiol. 2024