• Deutsch

University Logo

  • Home
  • Search
  • Browse
  • Submit
  • Sitemap
Schließen

Refine

Has Fulltext

  • no (2) (remove)

Author

  • Granacher, Urs (2)
  • Prieske, Olaf (2)
  • Abdelkafy, Ashraf (1)
  • Ahmed, Mohamed A. (1)
  • Behm, D. (1)
  • Chaabene, Helmi (1)
  • El-Ashker, Said (1)
  • Kibele, A. (1)
  • Krüger, Tom (1)
  • Muaidi, Qassim I. (1)
+ more

Year of publication

  • 2019 (1)
  • 2015 (1)

Keywords

  • injury risk (2) (remove)

Institute

  • Institut für Sportmedizin und Prävention (1)
  • Strukturbereich Kognitionswissenschaften (1)

2 search hits

  • 1 to 2
  • BibTeX
  • CSV
  • RIS
  • XML
  • 10
  • 20
  • 50
  • 100

Sort by

  • Year
  • Year
  • Title
  • Title
  • Author
  • Author
Effects of Neuromuscular Fatigue on Eccentric Strength and Electromechanical Delay of the Knee Flexors (2019)
El-Ashker, Said ; Chaabene, Helmi ; Prieske, Olaf ; Abdelkafy, Ashraf ; Ahmed, Mohamed A. ; Muaidi, Qassim I. ; Granacher, Urs
Purpose: To examine the effects of fatiguing isometric contractions on maximal eccentric strength and electromechanical delay (EMD) of the knee flexors in healthy young adults of different training status. Methods: Seventy-five male participants (27.7 ± 5.0 years) were enrolled in this study and allocated to three experimental groups according to their training status: athletes (ATH, n = 25), physically active adults (ACT, n = 25), and sedentary participants (SED, n = 25). The fatigue protocol comprised intermittent isometric knee flexions (6-s contraction, 4-s rest) at 60% of the maximum voluntary contraction until failure. Pre- and post-fatigue, maximal eccentric knee flexor strength and EMDs of the biceps femoris, semimembranosus, and semitendinosus muscles were assessed during maximal eccentric knee flexor actions at 60, 180, and 300°/s angular velocity. An analysis of covariance was computed with baseline (unfatigued) data included as a covariate. Results: Significant and large-sized main effects of group (p ≤ 0.017, 0.87 ≤ d ≤ 3.69) and/or angular velocity (p < 0.001, d = 1.81) were observed. Post hoc tests indicated that regardless of angular velocity, maximal eccentric knee flexor strength was lower and EMD was longer in SED compared with ATH and ACT (p ≤ 0.025, 0.76 ≤ d ≤ 1.82) and in ACT compared with ATH (p = ≤0.025, 0.76 ≤ d ≤ 1.82). Additionally, EMD at post-test was significantly longer at 300°/s compared with 60 and 180°/s (p < 0.001, 2.95 ≤ d ≤ 4.64) and at 180°/s compared with 60°/s (p < 0.001, d = 2.56), irrespective of training status. Conclusion: The main outcomes revealed significantly higher maximal eccentric strength and shorter eccentric EMDs of knee flexors in individuals with higher training status (i.e., athletes) following fatiguing exercises. Therefore, higher training status is associated with better neuromuscular functioning (i.e., strength, EMD) of the hamstring muscles in fatigued condition. Future longitudinal studies are needed to substantiate the clinical relevance of these findings.
Sex-Specific effects of surface instability on drop jump and landing biomechanics (2015)
Prieske, Olaf ; Muehlbauer, Thomas ; Krüger, Tom ; Kibele, A. ; Behm, D. ; Granacher, Urs
This study investigated sex-specific effects of surface instability on kinetics and lower extremity kinematics during drop jumping and landing. Ground reaction forces as well as knee valgus and flexion angles were tested in 14 males (age: 23 +/- 2 years) and 14 females (age: 24 +/- 3 years) when jumping and landing on stable and unstable surfaces. Jump height was found to be significantly lower (9 %, p < 0.001) when drop jumps were performed on unstable vs. stable surface. Significantly higher peak ground reaction forces were observed when jumping was performed on unstable vs. stable surfaces (5 %, p = 0.022). Regarding frontal plane kinematics during jumping and landing, knee valgus angles were higher on unstable compared to stable surfaces (1932 %, p < 0.05). Additionally, at the onset of ground contact during landings, females showed higher knee valgus angles than males (222 %, p = 0.027). Sagittal plane kinematics indicated significantly smaller knee flexion angles (6-35 %, p < 0.05) when jumping and landing on unstable vs. stable surfaces. During drop jumps and landings, women showed smaller knee flexion angles at ground contact compared to men (27-33 %, p < 0.05). These findings imply that knee motion strategies were modified by surface instability and sex during drop jumps and landings.
  • 1 to 2

OPUS4 Logo  KOBV Logo  OAI Logo  DINI Zertifikat 2007  OA Netzwerk Logo

  • Institutional Repository
  • University Press
  • University Bibliography
  • University Library
  • Policy
  • Contact
  • Disclaimer
  • Imprint
  • Datenschutzerklärung

Login