Zacytuj

Abayasekara D.R.E., Wathes D.C. (1999). Effects of altering dietary fatty acid composition on prostaglandin synthesis and fertility. Prostag. Leukotr. Ess., 61: 275-287.Search in Google Scholar

Benquet C., Krzystyniak K., Savard R., Guertin F. (1994). Modulation of exercise induced immunosuppression by dietary polynsaturated fatty acids in mice. J. Tox. Environ. Health, 43: 225-237.Search in Google Scholar

Brenner J.K.M., Natale V.M., Vasiliou P., Moldoveanu A.I., Shek P.N., Shephard R.J. (1999). Impact of three different types of exercise on components of the inflammatory response. Eur. J. Appl. Physiol., 80: 452-460.Search in Google Scholar

Brilla L.B., Landerholm T.E. (1990). Effects of fish oil supplementation and exercise on serum lipids and aerobic fitness. J. Sports Med. Phys. Fitness, 30: 173-180.Search in Google Scholar

Buckley J.D., Burgess S., Murphy K.J., Howe P.R. (2009). DHA-rich fish oil lowers heart rate during submaximal exercise in elite Australian Rules footballers. J. Sci. Med. Sport, 12: 503-507.Search in Google Scholar

Christensen J.H., Christenson M.S., Dyeberg J., Schmidt E.B. (1999). Heart rate variability and fatty acid content of blood cell membranes:adose dependent study with n-3 fatty acids. Am. J. Clin. Nutr., 70: 331-337.Search in Google Scholar

Clarkson P.M., Thompson H.S. (2000). Antioxidants: what role do they play in physical activity and health? Am. J. Clin. Nutr., 72: 637-646.Search in Google Scholar

De Moffarts B., Portier K., Kirschvink N., Coudert J., Fellmann N., Van Erck E., Letellier C., Motta C., Pincemail J., Art T., Lekeux P. (2007). Effects of exercise and oral antioxidant supplementation enriched in (n-3) fatty acids on blood oxidant markers and erythrocyte membrane fluidity in horses. Vet. J., 174: 113-121.Search in Google Scholar

Ernst E., Saradeth T., Achhammer G. (1990). Blood cell rheology - influence of exercise and omega-3 fatty acids. Clin. Hemorheol., 10: 157-163.Search in Google Scholar

Fazio F., Assenza A., Tosto F., Casella S., Piccione G., Caola G. (2011). Training and haematochemical profile in Thoroughbreds and Standardbreds: Alongitudinal study. Livest. Sci., 141: 221-226.Search in Google Scholar

Hess T.M., Rexford J.K., Hansen D.K., Harris M., Schauermann N., Ross T., En - gle T.E., Allen K.G., Mulligan C.M. (2012). Effects of two different dietary sources of long chain omega-3, highly unsaturated fatty acids on incorporation into the plasma, red blood cell, and skeletal muscle in horses. J Anim. Sci., 90: 3023-3031.Search in Google Scholar

Iversen P.O., Arvesen B.L., Benestad H.B. (1994). No mandatory role for the spleen in the exercise-induced leukocytosis in man. Clin. Sci., 86: 505-510.Search in Google Scholar

Kearns C.F., Mc Keever K.H., Jhon -alder H., Ade T., Brechue W.F. (2002). Relationship between body composition, blood volume and maximal oxygen uptake. Equine Vet. J., 34: 485-490.Search in Google Scholar

King S.S., Abughazeleh A.A., Webel S.K., Jones K.L. (2008). Circulating fatty acid profiles in response to three levels of dietary omega 3 fatty acids supplementation in horses. J. Anim. Sci., 86: 1114-1123.Search in Google Scholar

Kingstone J.K. (2008). Chapter 7.1. In: Hematologic and serum biochemical responses to exercise and training. Equine Exercise Physiol., pp. 398-409.Search in Google Scholar

Korhonen P.A., Lilius E.M., Hyyppa S., Rasanen L.A., Poso A.R. (2000). Production of reactive oxygen species in neutrophils after repeated bouts of exercise in Standardbred trotters. J. Vet. Med. A. Physiol. Pathol. Clin. Med., 47: 565-573.Search in Google Scholar

Ley K., Laudanna C., Cybulsky M.I., Nourshargh S. (2007). Getting to the site of inflammation: the leukocyte adhesion cascade updated. Nat. Rev. Immunol., 7: 678-689.Search in Google Scholar

McGowan C.M., Hodgson D.R. (2014). Chapter 5. Hematology and biochemistry. In: The Athletic Horse, 2nd ed., pp. 56-68.Search in Google Scholar

McKeever K.H., Hinchcliff K.W. (1995). Neuroendocrine control of blood volume, blood pressure, and cardiovascular function in horse. Equine. Vet. J., 18: 77-81.Search in Google Scholar

Mickleborough T.D. (2008). Anutritional approach to managing exercise-induced asthma. Exerc. Sport Sci. Rev., 36: 135-144.Search in Google Scholar

Murphy K., Meyer B., Mori T., Burke V., Mansour J., Patch C., Tapsell L., No - akes M., Clifton P.M., Barden A., Puddy I., Beilin L.J., Howe P. (2007). Impact of food enriched with omega 3 long chain polyunsatured fatty acids on erythrocyte n-3 levels and cardiovascular risk factors. British J. Nutr., 97: 749-757.Search in Google Scholar

O’Connor C.I., Lawrence L.M., Lawrence A.C., Janicki K.M., Warren L.K., Hayes S. (2004). The effect of dietary fish oil supplementation on exercise horses. J. Anim. Sci., 82: 2978-2984.Search in Google Scholar

Packer L. (1997). Oxidants, antioxidant nutrients and the athlete. J. Sports Sci., 15: 353-363.Search in Google Scholar

Park Y., Lee A., Shim S.C., Lee J.H., Choe J.Y., Ahn H., Choi C.B., Sung Y.K., Bae S.C. (2013). Effect of n-3 polyunsaturated fatty acid supplementation in patients with rheumatoid arthritis: a 16-week randomized, double-blind, placebo-controlled, parallel-design multicenter study in Korea. J. Nutr. Biochem., 24: 1367-1372.Search in Google Scholar

Persson S.G.B., Lydin G. (1973). Circulatory effects of splenectomy in the horse: III. Effect on pulse work relationship. Zbl. Vet. Med., 20: 521.Search in Google Scholar

Piccione G., Casella S., Giannetto C., Messina V., Monteverde V., Caola G., Guttadauro S. (2010). Haematological and haematochemical responses to training and competition in standardbred horses. Comp. Clin. Pathol., 19: 95-101.Search in Google Scholar

Portier K., De Moffarts B., Fellman N., Kirschvink N., Motta C., Letellierw C., Ruelland A., Van Erck E., Lekeux P., Couder J. (2006). The effects of dietary n-3 and antioxidant supplementation on erythrocyte membrane fatty acid composition and fluidity in exercising horses. Equine Vet. J. Suppl., 36: 279-284.Search in Google Scholar

R Core Team (2013). R: Alanguage and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria, http://www.R-project.org/.Search in Google Scholar

Qadir A.B., Maulood I.M., Majeed Z.R. (2009). Effects of omega 3 and L-carnitine on some hematological parameters in sucrose treated male albino rats. J. Duhok. Univ., 12: 125-128.Search in Google Scholar

Rossdale P.D., Burguez P.N., Cash R.S.G. (1982). Changes in blood neutrophil/lymphocyte ratio related to adrenocortical function in the horse. Equine Vet. J., 14: 293-298.Search in Google Scholar

Shaskey D.J., Green G.A. (2000). Sports haematology. Sports Med., 229: 27-38.Search in Google Scholar

Simon H.B. (1991). Exercise and human immune function. In: Psychoneuroimmunology, Ader R., Felten D.L., Cohen, R.C.N. eds., Academic Press, New York, pp. 869-895.10.1016/B978-0-12-043780-1.50039-7Search in Google Scholar

Snow D.H., Ricketts S.W., Mason D.K (1983). Haematological response to racing and training exercise in Thoroughbred horse, with particular reference to the leukocyte response. Equine Vet. J., 15: 149-154.Search in Google Scholar

Tartibian B., Maleki B.H., Abbasi A. (2009). The effects of ingestion of omega-3 fatty acids on perceived pain and external symptoms of delayed onset muscle soreness in untrained men. Clin. J. Sports. Med., 19: 115-119.Search in Google Scholar

Testino G., Ancarani O., Sumberaz A. (2010). Omega-3 fatty acids and astaxanthin in health and disease. Recent knowledges. Recenti Prog. Med., 101: 145-156.Search in Google Scholar

Vineyard K.R., Warren L.K., Kivipelto J. (2010). Effect of dietary omega-3 fatty acid sourceon plasma and red blood cell membrane composition and immune function in yearling. Anim. Sci. 88: 248-257.Search in Google Scholar

Wellman M.L. (2006). Section 1. In: Schalm’s Veterinary Hematology, 5th ed., pp. 1-65.Search in Google Scholar

Woodward A.D., Nielsen B.D., O’ Connor C.I., Webel S.K., Orth M.W. (2005). Dietary long chain polyunsatured fatty acids increase plasma eicosapentaenoic acid and docosahexaenoic acid concentrations and trot stride length in horses. Proc. 19th Equine Science Society Symposium, Tucson, Arizona, pp. 101-106.Search in Google Scholar

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Life Sciences, Biotechnology, Zoology, Medicine, Veterinary Medicine