The effects of vibration frequency variation on volleyball players’ drop jump ability and postural control performance

Cilt: 17 Sayı: 2 2 Temmuz 2015
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EN

The effects of vibration frequency variation on volleyball players’ drop jump ability and postural control performance

Öz

The aim of the performed study is to present the acute effect of the whole body vibration (WBV) stimuli on drop jump (DJ) and postural control performance. 13 athletes who play in Turkish Women Volleyball Second League voluntarily attended to the study (22.3±2.6 age; 60.72kg ±1.74kg; 1.79cm±6.4cm). Athletes were randomly divided into three groups (group 1: n=4: 30Hz; group 2: n=5: 35; group 3: n=4: 40Hz). Before fatigue protocol, every participant’s rest center of pressure- sway (CoP-sway) and DJ measurements on force plate were taken. Statistical whole body vibration measurements were practiced on Compex WINPLATE on different frequency (30-35-40Hz), on high amplitude, in the manner that knee flexion angle is 1200 in 60 seconds. DJ breaking point which is determined for each athlete was applied as DJ jump height after vibration. Just after the fatigue protocol was completed, athletes’ CoP- sway measurements after fatigue were practiced on force plate.  Different frequency measurements taken to analyse the effects on DJ height of frequency at specific amplitudes were evaluated by ANOVA analysis. Based on variance homogeneity test, the Tukey or Tamhane methods were used for multiple comparisons. A statistical analysis with a paired Student’s t test was used to compare pre-vibration and post-vibration treatment values of jumping height at the DJ test. DJ performance is affected by WBV stimuli in different frequency, CoP- sway values and especially fatigue situation in AP direction (p<0.05). In conclusion, 30Hz-35Hz and 40Hz WBV stimuli has an acute effect on DJ performance beside that 35 Hz WBV definitely has the greatest effect. 

Anahtar Kelimeler

Kaynakça

  1. John Booth, Michael J. McKenna, Patricia A. Ruell, Tom H. Gwinn, Glen M. Davis, Martin W. Thompson, Alison R. Harmer, Sandra K. Hunter, John R. Sutton. Impaired calcium pump function does not slow relaxation in human skeletal muscle after prolonged exercise. The American Physiological Society, 1997; 0161-7567.
  2. Bosco C, Cardinale M, Tsarpela O. Influence of vibration on mechanical power and electromyogram activity in human arm flexor muscles. European Journal of Applied Physiology, 1999; 79: 306–311.
  3. Bosco C, Iacovelli M, Tsarpela O, Cardinale M, Bonifazi M, Tihanyi J, Viru M, De Lorenzo A, Viru A. Hormonal responses to whole-body vibration in men. European Journal of Applied Physiology, 2000- 81, 449–454
  4. Boyas S, Guevel A. Neuromuscular fatigue in healthy muscle: underlying factors and adaptation mechanisms. Ann Phys Rehabil Med, 2011; 54(2): 88-108.
  5. Cairns SP, Knicker AJ, Thompson MW, Sjøgaard G. Evaluation of models used to study neuromuscular fatigue. Exerc Sport Sci Rev, 2005; 33: 9–16.
  6. Cardinale M, Wakeling J. Whole body vibration exercise: Are vibrations good for you? British Journal of Sports Medicine, 2005; 39: 585-589.
  7. Chen WC, Huang MY, Shiang TY. Short-term effects of different whole body vibration frequencies on the shallow drop jump in sprinter. Journal of Biomechanics, 2006; 39: 565.
  8. Cheung WH, Mok HW, Qin L, Sze PC, Lee KM, Leung KS. High frequency whole-body vibration improves balancing ability in elderly women. Archives of Physical Medicine and Rehabilitation, 2007; 88: 852–857.

Ayrıntılar

Birincil Dil

İngilizce

Konular

-

Bölüm

-

Yayımlanma Tarihi

2 Temmuz 2015

Gönderilme Tarihi

30 Mart 2015

Kabul Tarihi

-

Yayımlandığı Sayı

Yıl 2015 Cilt: 17 Sayı: 2

Kaynak Göster

APA
Kırkaya, I., Sımsek, D., & Ertan, H. (2015). The effects of vibration frequency variation on volleyball players’ drop jump ability and postural control performance. Turkish Journal of Sport and Exercise, 17(2), 14-21. https://doi.org/10.15314/tjse.90488
AMA
1.Kırkaya I, Sımsek D, Ertan H. The effects of vibration frequency variation on volleyball players’ drop jump ability and postural control performance. Turkish Journal of Sport and Exercise. 2015;17(2):14-21. doi:10.15314/tjse.90488
Chicago
Kırkaya, Izzet, Deniz Sımsek, ve Hayri Ertan. 2015. “The effects of vibration frequency variation on volleyball players’ drop jump ability and postural control performance”. Turkish Journal of Sport and Exercise 17 (2): 14-21. https://doi.org/10.15314/tjse.90488.
EndNote
Kırkaya I, Sımsek D, Ertan H (01 Kasım 2015) The effects of vibration frequency variation on volleyball players’ drop jump ability and postural control performance. Turkish Journal of Sport and Exercise 17 2 14–21.
IEEE
[1]I. Kırkaya, D. Sımsek, ve H. Ertan, “The effects of vibration frequency variation on volleyball players’ drop jump ability and postural control performance”, Turkish Journal of Sport and Exercise, c. 17, sy 2, ss. 14–21, Kas. 2015, doi: 10.15314/tjse.90488.
ISNAD
Kırkaya, Izzet - Sımsek, Deniz - Ertan, Hayri. “The effects of vibration frequency variation on volleyball players’ drop jump ability and postural control performance”. Turkish Journal of Sport and Exercise 17/2 (01 Kasım 2015): 14-21. https://doi.org/10.15314/tjse.90488.
JAMA
1.Kırkaya I, Sımsek D, Ertan H. The effects of vibration frequency variation on volleyball players’ drop jump ability and postural control performance. Turkish Journal of Sport and Exercise. 2015;17:14–21.
MLA
Kırkaya, Izzet, vd. “The effects of vibration frequency variation on volleyball players’ drop jump ability and postural control performance”. Turkish Journal of Sport and Exercise, c. 17, sy 2, Kasım 2015, ss. 14-21, doi:10.15314/tjse.90488.
Vancouver
1.Izzet Kırkaya, Deniz Sımsek, Hayri Ertan. The effects of vibration frequency variation on volleyball players’ drop jump ability and postural control performance. Turkish Journal of Sport and Exercise. 01 Kasım 2015;17(2):14-21. doi:10.15314/tjse.90488

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