Scientific Research and Essays

  • Abbreviation: Sci. Res. Essays
  • Language: English
  • ISSN: 1992-2248
  • DOI: 10.5897/SRE
  • Start Year: 2006
  • Published Articles: 2768

Full Length Research Paper

Alterations on the plasma concentration of hormonal and non hormonal biomarkers in human beings submitted to whole body vibration exercises

Danúbia da Cunha Sá-Caputo
  • Danúbia da Cunha Sá-Caputo
  • Mestrado Profissional em Saúde, Medicina Laboratorial e Tecnologia Forense, Universidade do Estado do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
  • Google Scholar
Eloá Moreira Marconi
  • Eloá Moreira Marconi
  • Programa de Pós-graduação em Fisiopatologia Clínica e Experimental, Universidade do Estado do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
  • Google Scholar
Rebeca Graça Costa-Cavalcanti
  • Rebeca Graça Costa-Cavalcanti
  • Mestrado Profissional em Saúde, Medicina Laboratorial e Tecnologia Forense, Universidade do Estado do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
  • Google Scholar
Laisa Liane Domingos
  • Laisa Liane Domingos
  • Programa de Pós-graduação em Ciências Médicas, Universidade do Estado do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
  • Google Scholar
Paula Mantilla Giehl
  • Paula Mantilla Giehl
  • Departamento de Biofísica e Biometria, Instituto de Biologia Roberto Alcantara Gomes, Universidade do Estado do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
  • Google Scholar
Dulciane Nunes Paiva
  • Dulciane Nunes Paiva
  • Programa de Pós-graduação em Promoção da Saúde, Universidade de Santa Cruz do Sul, Santa Cruz do Sul, RS, Brazil.
  • Google Scholar
Nasser Ribeiro Asad
  • Nasser Ribeiro Asad
  • Departamento de Biofísica e Biometria, Instituto de Biologia Roberto Alcantara Gomes, Universidade do Estado do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
  • Google Scholar
Pedro Jesus Marin
  • Pedro Jesus Marin
  • Laboratory of Physiology, European University Miguel de Cervantes, Valladolid, Spain.
  • Google Scholar
Mario Bernardo-Filho
  • Mario Bernardo-Filho
  • Departamento de Biofísica e Biometria, Instituto de Biologia Roberto Alcantara Gomes, Universidade do Estado do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
  • Google Scholar


  •  Received: 08 February 2015
  •  Accepted: 09 April 2015
  •  Published: 30 April 2015

References

Abercromby AF, Amonette WE, Layne CS, McFarlin BK, Hinman MR, Paloski WH (2007). Vibration exposure and biodynamic responses during whole-body vibration training. Med. Sci. Sports Exerc. 39:1794-1800.
Crossref
 
Arias P, Chouza M, Vivas J, Cudeiro J (2009). Effect of whole body vibration in Parkinson's disease: A controlled study. Mov. Disord. 24:891-898.
Crossref
 
Behboudi L, Azarbayjani MA, Aghaalinejad H, Salavati M (2011). Effects of aerobic exercise and whole body vibration on glycaemia control in type 2 diabetic males. Asian J. Sports Med. 2:83-90.
 
Bemben DA, Sharma-Ghimire P, Chen Z, Kim E, Kim D, Bemben MG (2015). Effects of whole-body vibration on acute bone turnover marker responses to resistance exercise in young men. J. Musculoskelet Neuronal Interact.15:23-31.
 
Bosco C, Cardinale M, Tsarpela O, Colli R, Tihanyi J, von Duvillard SP, Viru A (1998). The influence of whole body vibration on jumping performance. Biol. Sport.15:157-164.
 
Bosco C, Cardinale M, Tsarpela O (1999). Influence of vibration on mechanical power and electromyogram activity in human arm flexor muscles. Eur. J. Appl. Physiol. 79:306-311.
Crossref
 
Bosco C, Colli R, Introini E, Cardinale M, Tsarpela O, Madella A, Viru A (1999). Adaptive responses of human skeletal muscle to vibration exposure. Clin. Physiol.19:183-187.
Crossref
 
Bosco C, Iacovelli M, Tsarpela O, Cardinale M, Bonifazi M, Tihanyi J, Viru M, De Lorenzo A, Viru A (2000). Hormonal responses to whole-body vibration in men. Eur. J. Appl.Physiol.81:449-454.
Crossref
 
Bruyere O, Wuidart MA, Di Palma E, Gourlay M, Ethgen O, Richy F, Reginster JY (2005). Controlled whole body vibration to decrease fall risk and improve health-related quality of life of nursing home residents. Arch. Phys. Med. Rehabil. 86:303-307.
Crossref
 
Burke D, Hagbarth KE, Lofstedt L, Wallin BG (1976). The responses of human muscle spindle endings to vibration during isometric contraction. J. Physiol. 261:695-711.
Crossref
 
Cardinale M, Leiper J, Erskine J, Milroy M, Bell S (2006). The acute effects of different whole body vibration amplitudes on the endocrine system of young healthy men: a preliminary study. Clin. Physiol. Funct. Imaging. 26:380-384.
Crossref
 
Cardinale M, Soiza RL, Leiper JB, Gibson A, Primrose WR (2010). Hormonal responses to a single session of whole body vibration exercise in older individuals. Br. J. Sports Med. 44:284-288.
Crossref
 
Cardinale M, Bosco C (2003). The use of vibration as an exercise intervention. Exerc. Sport Sci. Rev. 31:3-7.
Crossref
 
Cardinale M, Wakeling J (2005). Whole body vibration exercise: are vibrations good for you? Br. J. Sports Med.39:585-589.
Crossref
 
Cheng CF, Cheng KH, Lee YM, Huang HW, Kuo YH, Lee HJ (2012). Improvement in running economy after 8 weeks of whole-body vibration training. J. Strength Cond. Res.26:3349-3357.
Crossref
 
Christensen MH, Fenne IS, Flågeng MH, Almås B, Lien EA, Mellgren G (2014). Estradiol determines the effects of PTH on ERα-dependent transcription in MC3T3-E1 cells. Biochem. Biophys. Res. Commun. 2:S0006-291X(14)00998-X.
 
Çidem M, Karakoç Y, Ekmekçi H, Kuçuk SH, UludaÄŸ M, Gün K, karamehmetoÄŸlu SS, karacan I (2014). Effects of whole-body vibration on plasma sclerostin level in healthy women. Turk. J. Med. Sci. 44:404-410.
Crossref
 
Cochrane DJ, Loram ID, Stannard SR, Rittweger J (2009). Changes in joint angle, muscle-tendon complex length, muscle contractile tissue displacement and modulation of EMG activity during acute whole-body vibration. Muscle Nerve. 40:420-429.
Crossref
 
Cochrane DJ (2011). Vibration exercise: the potential benefits. Int. J. Sports Med. 32:75-99
Crossref
 
Crewther B, Cronin J, Keogh J (2004). Gravitational forces and whole body vibration: implications for prescription of vibratory stimulation. Phys. Ther. Sport. 5:37-43.
Crossref
 
Cronin JB, Oliver M, McNair PJ (2004). Muscle stiff ness and injury eff ects of whole body vibration. Phys. Ther. Sport. 5:68-74
Crossref
 
Cunnington R, Windischberger C, Deecke L, Moser E (2002). The preparation and execution of self-initiated and externally-triggered movement: a study of event-related fMRI. Neuroimage. 15:373-385.
Crossref
 
Daskalopoulou SS, Cooke AB, Gomez YH, Mutter AF, Filippaios A, Mesfum ET, Mantzoros CS (2014). Plasma Irisin Levels Progressively Increase in Response to Increasing Exercise Workloads in Young, Healthy, Active Subjects. Eur. J. Endocrinol. pii:EJE-14-0204.
 
Del Pozo-Cruz B, Hernández Mocholí MA, Adsuar JC, Parraca JA, Muro I, Gusi N (2011). Effects of whole body vibration therapy on main outcome measures for chronic non-specific low back pain: a single-blind randomized controlled trial. J. Rehabil. Med. 43:689-694.
Crossref
 
Di Giminiani R, Fabiani L, Baldini G, Cardelli G, Giovannelli A, Tihanyi J (2014). Hormonal and neuromuscular responses to mechanical vibration applied to upper extremity muscles. PLoS One. 9:11:e111521.
 
Di Loreto C, Ranchelli A, Lucidi P, Murdolo G, Parlanti N, De Cicco A, Tsarpela O, Annino G, Bosco C, Santeusanio F, Bolli GB, De Feo P (2004). Effects of whole-body vibration exercise on the endocrine system of healthy men. J. Endocrinol. Invest. 27:323-327.
Crossref
 
Doessing S, Heinemeier KM, Holm L, Mackey AL, Schjerling P, Rennie M, Smith K, Reitelseder S, Kappelgaard AM, Rasmussen MH, Flyvbjerg A, Kjaer M (2010). Growth hormone stimulates the collagen synthesis in human tendon and skeletal muscle without affecting myofibrillar protein synthesis. J. Physiol. 588:341-351.
Crossref
 
Elmantaser M, McMillan M, Smith K, Khanna S, Chantler D, Panarelli M, Ahmed SF (2012). A comparison of the effect of two types of vibration exercise on the endocrine and musculoskeletal system. J. Musculoskelet Neuronal Interact. 12:144-154.
 
Erskine J, Smillie I, Leiper J, Ball D, Cardinale M (2007). Neuromuscular and hormonal responses to a single session of whole body vibration exercise in healthy young men. Clin. Physiol. Funct. Imaging 27:242-248.
Crossref
 
Fagnani F, Giombini A, Di Cesare A, Pigozzi F, Di Salvo V (2006). The effects of a whole-body vibration program on muscle performance and flexibility in female athletes. Am. J. Phys. Med. Rehabil. 85:956-962.
Crossref
 
Fort A, Romero D, Bagur C, Guerra M (2012). Effects of whole-body vibration training on explosive strength and postural control in young female athletes. J. Strength Cond. Res. 26:926-936.
Crossref
 
Franchignoni F, Vercelli S, Ozçakar L (2013). Hematuria in a runner after treatment with whole body vibration: a case report. Scand J. Med. Sci. Sports 23:383-385.
Crossref
 
Giunta M, Rigamonti AE, Agosti F, Patrizi A, Compri E, Cardinale M (2013). Combination of external load and whole body vibration potentiates the GH-releasing effect of squatting in healthy females. Horm. Metab. Res. 45:611-616.
Crossref
 
Goldenberg N, Barkan A (2007).Factors regulating growth hormone secretion in humans. Endocrinol. Metab. Clin. North Am. 36:37-55.
Crossref
 
Goto K, Takamatsu K (2005). Hormone and lipolytic responses to whole body vibration in young men. Jpn J. Physiol. 55:279-284.
Crossref
 
Granit R, Henatsch HD, Steg G (1956). Tonic and phasic ventral horn cells differentiated by post-tetanic potentiation in cat extensors. Acta. Physiol. Scand. 37:114-126.
Crossref
 
Gusi N, Raimundo A, Leal A (2006). Low-frequency vibratory exercise reduces the risk of bone fracture more than walking: a randomized controlled trial. BMC Musculoskelet. Diso. 30(7):92.
Crossref
 
Hand J, Verscheure S, Osternig L (2009). A comparison of whole-body vibration and resistance training on total work in the rotator cuff. J. Athl. Train. 44:469-474.
Crossref
 
Hayward LF, Nielsen RP, Heckman CJ, Hutton RS (1986). Tendon vibration-induced inhibition of human and cat triceps surae group I reflexes: Evidence of selective Ib afferent fiber activation. Exp. Neurol. 94:333-347.
Crossref
 
Hu H, Li Z, Zhang X, Xu C, Guo Y (2013). Rapid determination of catecholamines in urine samples by nonaqueous microchip electrophoresis with LIF detection. J. Sep. Sci. 36:3419-3425.
Crossref
 
Huh JY, Mougios V, Skraparlis A, Kabasakalis A, Mantzoros CS (2014). Irisin in response to acute and chronic whole-body vibration exercise in humans. Metabolism. 63:918-921.
Crossref
 
Humphries B, Fenning A, Dugan E, Guinane J, MacRae K (2009). Whole-body vibration effects on bone mineral density in women with or without resistance training. Aviat. Space Environ. Med. 80: 1025-1031.
Crossref
 
Ishitake T, Miyazaki Y, Ando H, Matoba T (1999). Suppressive mechanism of gastric motility by whole-body vibration. Int. Arch. Occup. Environ. Health. 72:469-474.
Crossref
 
Issurin VB, Liebermann DG, Tenenbaum G (1994) Effect of vibratory stimulation training on maximal force and flexibility. J. Sports Sci.12:561-566.
Crossref
 
Issurin VB, Liebermann DG, Tenenbaum G (1994). Effect of vibratory stimulation training on maximal force and flexibility. J. Sports Sci.12:561-566.
Crossref
 
Issurin VB (2005). Vibrations and their applications in sport. A review. J. Sports Med. Phys. Fitness 45:324-336.
 
Juul A (2003). Serum levels of insulin-like growth factor I and its binding proteins in health and disease. Growth Horm. IGF Res.13:113-117.
Crossref
 
Kerschan-Schindl K, Grampp S, Henk C, Resch H, Preisinger E, Fialka-Moser V, Imhof H (2001). Whole-body vibration exercise leads to alterations in muscle blood volume. Clin. Physiol. 21:377-382.
Crossref
 
Kindermann W, Schnabel A, Schmitt WM, Biro G, Cassens J, Weber F (1982). Catecholamines, growth hormone, cortisol, insulin, and sex hormones in anaerobic and aerobic exercise. Eur. J. Appl. Physiol. Occup. Physiol. 49:389-399.
Crossref
 
Kjaer M (1998). Adrenal medulla and exercise training. Eur. J. Appl. Physiol. Occup. Physiol. 77: 195-199.
Crossref
 
Kraemer WJ, Marchitelli L, Gordon SE, Harman E, Dziados JE, Mello R, Frykman P (1990). Hormonal and growth factor responses to heavy resistance exercise protocols. J. Appl. Physiol. 69:442-1450.
 
Kraemer WJ, Ratamess NA (2005). Hormonal responses and adaptations to resistance exercise and training. Sports Med.35:339–361.
Crossref
 
Kvorning T, Bagger M, Caserotti P, Madsen K (2006). Effects of vibration and resistance training on neuromuscular and hormonal measures. Eur. J. Appl. Physiol. 96:615-625.
Crossref
 
Lam FM, Lau RW, Chung RC, Pang MY (2012). The effect of whole body vibration on balance, mobility and falls in older adults: a systematic review and meta-analysis. Maturitas. 72:206-213.
Crossref
 
Liphardt AM, Mündermann A, Koo S, Bäcker N, Andriacchi TP, Zange J, Mester J, Heer M (2009). Vibration training intervention to maintain cartilage thickness and serum concentrations of cartilage oligometric matrix protein (COMP) during immobilization. Osteoarthritis Cartilage.17:1598-603
Crossref
 
Marín PJ, Herrero AJ, García-López D, Rhea MR, López-Chicharro J, González-Gallego J, Garatachea N (2012). Acute effects of whole-body vibration on neuromuscular responses in older individuals: implications for prescription of vibratory stimulation. J. Strength Cond. Res. 26:232-239.
Crossref
 
Marin PJ, Herrero AJ, Zarzosa F, Rhea MR, Garcia-Lopez D (2010). Vertical whole-body vibrations improve the total volume of a biceps curl set to failure. Eur. J. Sport Sci. 10:385-390.
Crossref
 
Marin PJ, Torres-Luque G, Hernandez-Garcia R, Garcia-Lopez D, Garatachea N (2011). Effects of different vibration exercises on bench press. Int. J. Sports Med. 32:743-748.
Crossref
 
Martín G, Saa Y, Da Silva-Grigoletto ME, Vaamonde D, Sarmiento S, García-Manso JM (2009). Effect of whole body vibration (WBV) on PTH in elderly subjects. Rev. Andal. Med. Deporte. 2:1-6.
 
Matthews PB (1966). Reflex activation of the soleus muscle of the decerebrate cat by vibration. Nature. 209:204-205.
Crossref
 
Menicucci D, Piarulli A, Mastorci F, Sebastiani L, Laurino M, Garbella E, Castagnini C, Pellegrini S, Lubrano V, Bernardi G, Metelli M, Bedini R, L'abbate A, Pingitore A, Gemignani A (2013). Interactions between immune, stress-related hormonal and cardiovascular systems following strenuous physical exercise. Arch. Ital. Biol.151:126-136.
 
Mileva KN, Bowtell JL, Kossev AR (2009). Effects of low-frequency whole-body vibration on motor-evoked potentials in healthy men. Exp. Physiol. 94:103-116.
Crossref
 
Mirza FS, Padhi ID, Raisz LG, Lorenzo JA (2010). Serum sclerostin levels negatively correlate with parathyroid hormone levels and free estrogen index in postmenopausal women. J. Clin. Endocrinol. Metab. 95:1991-1997.
Crossref
 
Monteleone G, De Lorenzo A, Sgroi M, De Angelis S, Di Renzo L
(2007). Contraindications for whole body vibration training: a case of nephrolitiasis. J. Sports Med. Phys Fitness. 47:443-445.
 
Naito E, Kinomura S, Geyer S, Kawashima R, Roland PE, Zilles K (2000). Fast reaction to different sensory modalities activates common fields in the motor areas, but the anterior cingulate cortex is involved in the speed of reaction. J. Neurophysiol. 83:1701-1709.
 
Nameni F (2012). The testosterone responses to a single session of whole body vibration. World Appl. Sci. J.18:803-807
 
Nazarov V, Spivak G (1985). Development of athlete's strength abilities by means of biomechanical stimulation method. Theory Prac Phys Culture.12:445-450.
 
Nazarov V, Zilinsky L (1984). Enhanced development of shoulder joint flexibility in athletes. Theory Prac. Phys. Culture. 10:28-30.
 
Ness LL, Field-Fote EC (2009). Whole-body vibration improves walking function in individuals with spinal cord injury: a pilot study. Gait Posture. 30:436-440.
Crossref
 
Neto RA, de Souza Dos Santos MC, Rangel IF, Ribeiro MB, Cavalcanti-de-Albuquerque JP, Ferreira AC, Ferreira AC, Cameron LC, Carvalho DP, Werneck de Castro JP. (2013). Decreased serum T3 after an exercise session is independent of glucocorticoid peak. Horm. Metab. Res. 45:893-899.
Crossref
 
Ohl DA, Quallich SA (2006). Clinical hypogonadism and androgen replacement therapy: an overview. Urol. Nurs. 26:253-259.
 
Pollock RD, Woledge RC, Martin FC, Newham DJ (2012). Effects of whole body vibration on motor unit recruitment and threshold. J. Appl. Physiol.112:388-395.
Crossref
 
Posey KL, Hecht JT (2008). The role of cartilage oligomeric matrix protein (COMP) in skeletal disease. Curr. Drug. Targets. 9:869-877
Crossref
 
Prisby RD, Lafage-Proust MH, Malaval L, Belli A, Vico L (2008). Effects of whole body vibration on the skeleton and other organ systems in man and animal models: what we know and what we need to know. Ageing Res. Rev. 7:319-329.
Crossref
 
Rauch F, Sievanen H, Boonen S, Cardinale M, Degens H, Felsenberg D, Roth J, Schoenau E, Verschueren S, Rittweger J (2010). International Society of Musculoskeletal and Neuronal Interactions. Reporting whole-body vibration intervention studies: recommendations of the International Society of Musculoskeletal and Neuronal Interactions. J. Musculoskelet Neuronal. Interact.10:193-198.
 
Reichkendler MH, Auerbach P, Rosenkilde M, Christensen AN, Holm S, Petersen MB, Lagerberg A, Larsson HB, Rostrup E, Mosbech TH, Sjödin A, Kjaer A, Ploug T, Hoejgaard L, Stallknecht B (2013). Exercise training favors increased insulin-stimulated glucose uptake in skeletal muscle in contrast to adipose tissue: a randomized study using FDG PET imaging. Am. J. Physiol. Endocrinol. Metab. 305:496-506.
Crossref
 
Rittweger J, Beller G, Felsenberg D (2000). Acute physiological effects of exhaustive whole-body vibration exercise in man. Clin. Physiol. 20:134-142.
Crossref
 
Rittweger J, Ehrig J, Just K, Mutschelknauss M, Kirsch KA, Felsenberg D (2002). Oxygen uptake in whole-body vibration exercise: influence of vibration frequency, amplitude, and external load. Int. J. Sports Med. 23:428-432.
Crossref
 
Rittweger J (2010). Vibration as an exercise modality: how it may work, and what its potential might be. Eur. J. Appl. Physiol.108:877-904.
Crossref
 
Ritzmann R, Kramer A, Gruber M, Gollhofer A, Taube W (2010). EMG activity during whole body vibration: motion artifacts or stretch reflexes? Eur. J. Appl. Physiol.110:143-151.
Crossref
 
Salvatori R (2009). Clinical management of growth hormone therapy in adults. Manag Care. 18:10-16.
 
Salvatori R (2004). Growth hormone and IGF-1. Rev. Endocr. Metab. Disord. 5:15-23.
Crossref
 
Santos-Filho SD, Pinto NS, Monteiro MB, Arthur AP, Misssailidis S, Marin PJ, Bernardo-Filho M (2011). The ageing, the decline of hormones and the whole-body vibration exercises in vibratory platforms: a review and a case report. J. Med. 2:925-931.
 
Schoorlemmer RM, Peeters GM, van Schoor NM, Lips P (2009). Relationships between cortisol level, mortality and chronic diseases in older persons. Clin Endocrinol (Oxf) 71:779-786.
Crossref
 
Sherlock M, Toogood AA (2007). Aging and the growth hormone/insulin like growth factor-I axis. Pituitary. 10:189-203.
Crossref
 
Signorile J (2011). Whole body vibration, part two: What's the most effective protocol? J. Active Aging. 10:66-73
 
Stallknecht B, Lorentsen J, Enevoldsen LH, Bülow J, Biering-Sørensen F, Galbo H, Kjaer M (2001). Role of the sympathoadrenergic system in adipose tissue metabolism during exercise in humans. J. Physiol. 536:283-289.
Crossref
 
Tossige-Gomes R, Avelar NC, Simão AP, Neves CD, Brito-Melo GE, Coimbra CC,Rocha-Vieira E, Lacerda AC (2012). Whole-body vibration decreases the proliferative response of TCD4(+) cells in elderly individuals with knee osteoarthritis. Braz. J. Med. Biol. Res. 45:1262-1268.
Crossref
 
Trans T, Aaboe J, Henriksen M, Christensen R, Bliddal H, Lund H (2009). Effect of whole body vibration exercise on muscle strength and proprioception in females with knee osteoarthritis. Knee. 16:256-261.
Crossref
 
Ueland T (2005). GH/IGF-I and bone resorption in vivo and in vitro. Eur. J. Endocrinol. 152:327-332.
Crossref
 
Ullah MI, Riche DM, Koch CA (2014). Transdermal testosterone replacement therapy in men. Drug Des. Devel. Ther. 8:101-112.
 
Unger M, Jelsma J, Stark C (2013). Effect of a trunk-targeted intervention using vibration on posture and gait in children with spastic type cerebral palsy: a randomized control trial. Dev. Neurorehabil. 16:79-88.
Crossref
 
Viru A (1992). Plasma hormones and physical exercise. Int. J. Sports Med.13:201-209.
Crossref
 
Wunderer K, Schabrun SM, Chipchase LS (2010). Effects of whole body vibration on strength and functional mobility in multiple sclerosis. Physiother. Theory Pract. 26:374-84.
Crossref
 
Zouhal H, Jacob C, Delamarche P, Gratas-Delamarche A (2008). Catecholamines and the effects of exercise, training and gender. Sports Med.38:401-423.
Crossref