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exercises. J. VibroEng. 20(3), 1522–1529 (2018)
4. M. Stania, P. Król, G. Sobota, A. Polak, B. Bacik, G. Juras, The effect of the training with the
different combinations of frequency and peak-to-peak vibration displacement of whole-body
vibration on the strength of knee flexors and extensors. Biol. Sport J. 34(2), 127–136 (2017)
5. S.S. Colson, S. Roffino, M. Mutin-Carnino, A. Carnino, P.-D. Petit, The effect of dynamic
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6. V. Cazás-Moreno, J. Gdovin, C. Williams, C. Allen, Y.-C. Fu, L. Brown, J. Garner III, Influence
of whole body vibration and specific warm-ups on force during an isometric mid-thigh pull.
Int. J. Kinesiol. Sports Sci. 3(4), 31–39 (2015)
7. S. Esmaeilzadeh, M. Akpinar, S. Polat, A. Yildiz, A. Oral, The effects of two different
frequencies of whole-body vibration on knee extensors strength in healthy young volunteers:
a randomized trial. J. Musculoskelet. Neuronal. Interact. 15(4), 333–340 (2015)
8. P. Iodice, R.G. Bellomo, G. Gialluca, G. Fanò, R. Saggini, Acute and cumulative effects of
focused high-frequency vibrations on the endocrine system and muscle strength, mechanical
vibration in rehabilitation: state of the art. Eur. J. Appl. Physiol. 111(6), 897–904 (2011)
9. N. Wei, M.Y. Pang, S.S. Ng, G.Y. Ng, Optimal frequency/time combination of whole-body
vibration training for improving muscle size and strength of people with age-related muscle
loss (sarcopenia): a randomized controlled trial. Geriatr. Gerontol. Int. 17(10), 1313–1321
(2017)
10. R. Saggini, S.M. Carmignano, T. Palermo, R.G. Bellomo, Mechanical vibration in rehabilitation: state of the art. J. Novel Physiotherapies 6(6), 1–4 (2016)
11. A. Salvarani, M. Agosti, A. Zanrè, A. Ampollini, L. Montagna, M. Franceschini, Mechanical
vibration in the rehabilitation of patients with reconstructed anterior cruciate ligament. Europa
Medicophysica 39(1), 19–25 (2003)
12. D. Poenaru, D. Cinteza, I. Petrusca, L. Cioc, D. Dumitrascu, Local application of vibration in
motor rehabilitation—scientific and practical considerations. Maedica (Buchar) 11(3), 227–231
(2016)
13. E. Wang, T. Nelson, Structural Dynamic Capabilities of ANSYS (CADFEM GmbH, Munich,
Germany, 2012)
14. C. Carp-Ciocârdia, A. Dragomirescu, C.A. Safta, M. Schiaua, I. Magheti, Acta Technica
Napocensis Series Appl. Math. Eng. 60, 545 (2017)
15. Material properties of DuPont Delrin 127UV NC010. http://www.gc.co.th/upload/datasheet/
pom_delrin_127_uv_nc_010.pdf (visited 2017)
C.-G. Alionte et al.
3. A. Hernández-Vicente, A. Santos-Lozano, R. Bailón, C. Mayolas-Pi, P.J. Marín, N. Garatachea,
Effects of the type of exercise performed on the vibration delivered during whole-body vibration
exercises. J. VibroEng. 20(3), 1522–1529 (2018)
4. M. Stania, P. Król, G. Sobota, A. Polak, B. Bacik, G. Juras, The effect of the training with the
different combinations of frequency and peak-to-peak vibration displacement of whole-body
vibration on the strength of knee flexors and extensors. Biol. Sport J. 34(2), 127–136 (2017)
5. S.S. Colson, S. Roffino, M. Mutin-Carnino, A. Carnino, P.-D. Petit, The effect of dynamic
whole-body vibration warm-up on lower extremity performance. Sci. Sports J. 31(1), 19–26
(2016)
6. V. Cazás-Moreno, J. Gdovin, C. Williams, C. Allen, Y.-C. Fu, L. Brown, J. Garner III, Influence
of whole body vibration and specific warm-ups on force during an isometric mid-thigh pull.
Int. J. Kinesiol. Sports Sci. 3(4), 31–39 (2015)
7. S. Esmaeilzadeh, M. Akpinar, S. Polat, A. Yildiz, A. Oral, The effects of two different
frequencies of whole-body vibration on knee extensors strength in healthy young volunteers:
a randomized trial. J. Musculoskelet. Neuronal. Interact. 15(4), 333–340 (2015)
8. P. Iodice, R.G. Bellomo, G. Gialluca, G. Fanò, R. Saggini, Acute and cumulative effects of
focused high-frequency vibrations on the endocrine system and muscle strength, mechanical
vibration in rehabilitation: state of the art. Eur. J. Appl. Physiol. 111(6), 897–904 (2011)
9. N. Wei, M.Y. Pang, S.S. Ng, G.Y. Ng, Optimal frequency/time combination of whole-body
vibration training for improving muscle size and strength of people with age-related muscle
loss (sarcopenia): a randomized controlled trial. Geriatr. Gerontol. Int. 17(10), 1313–1321
(2017)
10. R. Saggini, S.M. Carmignano, T. Palermo, R.G. Bellomo, Mechanical vibration in rehabilitation: state of the art. J. Novel Physiotherapies 6(6), 1–4 (2016)
11. A. Salvarani, M. Agosti, A. Zanrè, A. Ampollini, L. Montagna, M. Franceschini, Mechanical
vibration in the rehabilitation of patients with reconstructed anterior cruciate ligament. Europa
Medicophysica 39(1), 19–25 (2003)
12. D. Poenaru, D. Cinteza, I. Petrusca, L. Cioc, D. Dumitrascu, Local application of vibration in
motor rehabilitation—scientific and practical considerations. Maedica (Buchar) 11(3), 227–231
(2016)
13. E. Wang, T. Nelson, Structural Dynamic Capabilities of ANSYS (CADFEM GmbH, Munich,
Germany, 2012)
14. C. Carp-Ciocârdia, A. Dragomirescu, C.A. Safta, M. Schiaua, I. Magheti, Acta Technica
Napocensis Series Appl. Math. Eng. 60, 545 (2017)
15. Material properties of DuPont Delrin 127UV NC010. http://www.gc.co.th/upload/datasheet/
pom_delrin_127_uv_nc_010.pdf (visited 2017)
