Aguilera-Tejero, E., Estepa, J.C., Lopez, I., Bas, S., Garfia, B. and Rodríguez, M., 2001. Plasma ionized calcium and parathyroid hormone concentrations in horses after endurance rides. Journal of the American Veterinary Medical Association 219: 488-490.
CrossrefGoogle Scholar
Alberghina, D., Piccione, G., Amorini, A.M., Lazzarino, G., Congiu, F., Lazzarino, G. and Tavazzi, B., 2015. Body temperature and plasma nitric oxide metabolites in response to standardized exercise test in the athletic horse. Journal of Equine Veterinary Science 35: 709-713.
CrossrefGoogle Scholar
Ammerman, C.B., Baker, D.B. and Lewis, A.J., 1995. Bioavailability of nutrients for animals. Academic Press, New York, NY, USA.
Google Scholar
Anastasiou, C.A., Kavouras, S.A., Arnaoutis, G., Gioxari, A., Kollia, M., Botoula, E. and Sidossis, L.S., 2009. Sodium replacement and plasma sodium drop during exercise in the heat when fluid intake matches fluid loss. Journal of Athletic Training 44: 117-123.
CrossrefGoogle Scholar
Barnes, A., Kingston, J., Beetson, S. and Kuiper, C., 2010. Endurance veterinarians detect physiologically compromised horses in a 160 km ride. Equine Veterinary Journal 42 Suppl. 38: 6-11.
Google Scholar
Barton, M.H., Williamson, L., Jacks, S. and Norton, N., 2003. Body weight, hematologic findings, and serum and plasma biochemical findings of horses competing in a 48-, 83-, or 159-km. endurance ride under similar terrain and weather conditions. American Journal of Veterinary Research 64: 746-753.
CrossrefGoogle Scholar
Bayly, W.M., Hodgson, D.R., Schulz, D.A., Dempsey, J.A. and Gollnick, P.D., 1989. Exercise-induced hypercapnia in the horse. Journal of Applied Physiology 67: 1958-1966.
CrossrefGoogle Scholar
Butudom, P., Spooner, H., Duesterdiek-Zellmer, K., Harris, P. and Schott II, H., 2014. Innate variability in voluntary drinking in Arabian horses during endurance exercise. Equine Veterinary Journal Suppl. 46: 11-12.
CrossrefGoogle Scholar
Carlson, G.P., 1995. Interrelationships between fluid, electrolyte and acid-base balance during maximal exercise. Equine Veterinary Journal 27 Suppl. 18: 261-265.
Google Scholar
Carlson, G.P., Ocen, P.O. and Harrold, D., 1976. Clinicopathologic alterations in normal and exhausted endurance horses. Theriogenology 6: 93-104.
CrossrefGoogle Scholar
Carlson, G.P., 1983. Thermoregulation and fluid balance in the exercising horse. In: Snow, D.H., Persson, S.G.B. and Rose, R.J. (eds.) Equine exercise physiology. Granta Editions, Cambridge, UK, pp. 291-309.
Google Scholar
Cooper, D., Walley, K.R., Dodek, P.M., Rosenberg, F. and Russell, J.A., 1992. Plasma ionized calcium and blood lactate concentrations are inversely associated in human lactic acidosis. Intensive Care Medicine 18: 286-289.
CrossrefGoogle Scholar
Dumont, C.B., Okiyama, F.T., Barreto-Vianna, A.R. and Lima, E.M., 2014. The distance run is not the determining factor on the occurrence of electrolytic change for equine athletes disqualified in endurance competitions. Pakistan Veterinary Journal 34: 239-242.
Google Scholar
Fédération Equestre Internationale (FEI), 2017. FEI regulations 2017. Available at: http://tinyurl.com/zv2cpvw. Google Scholar
Geor, R.J. and McCutcheon, L.J., 1998. Thermoregulatory adaptations associated with training and heat acclimation. Veterinary Clinics of North America. Equine Practice 14: 97-120.
Google Scholar
Harris, P. and Snow, D.H., 1988. The effects of high intensity exercise on the plasma concentration of lactate, potassium and other electrolytes. Equine Veterinary Journal 20: 109-113.
CrossrefGoogle Scholar
Harris, P. and Snow, D.H., 1992. Plasma potassium and lactate concentrations in Thoroughbred horses during exercise of varying intensity. Equine Veterinary Journal 24: 220-225.
CrossrefGoogle Scholar
Hodgson, D.R., Davis, R.E. and McConaghy, F.F., 1994. Thermoregulation in the horse in response to exercise. British Veterinary Journal 150: 219-235.
CrossrefGoogle Scholar
José Filho, D.R., Pessin, A.E., Atoji, K., Souza, M.V., Gomes, C.L. and Silva, A.R., 2014. enteral fluid therapy: biochemical profile of horses treated with hypotonic enteral electrolyte solutions associated with energy sources. Journal of Equine Veterinary Science 34: 759-764.
CrossrefGoogle Scholar
Kingston, J.K., Geor, R.J. and McCutcheon, L.J., 1997. Rate and composition of sweat fluid losses are unaltered by hypohydration during prolonged exercise in horses. Journal of Applied Physiology 83: 1133-1143.
CrossrefGoogle Scholar
Kumar, V., Dedar, R.K., Bala, P.A., Singh, J. and Legha, R.A., 2015. Exercise performances of Marwari mares in a ten kilometre trail ride during peak winter in subtropical desert climate. In: Compendium of abstracts of the 2nd International Conference on Bio-resource and Stress Management. 7-10 January 2015. Professor Jayashankar Telangana State Agricultural University, Rajendranagar, Hyderabad, India, 157 pp.
Google Scholar
Kumar, V., 2015. Physiological responses and molecular signatures of exercise in horses. Scientific Works Series C. Veterinary Medicine LXI: 201-210.
Google Scholar
Lacerda-Neto, J.C., Sampaio, R.C.L., Ferraz, G.C., Teixeira-Neto, A.R., Pereira, D.M., Titto, E.A.L., Carvalho, M.B. and Queiroz-Neto, A., 2003. Effects of intermittent water cooling and electrolyte supplements on serum osmolality and electolytes of horses during low-intensity exercise. Revista Portuguesa de Ciências Veterinárias 98: 189-195.
Google Scholar
Lindinger, M.I. and Ecker, G.L., 2013. Gastric emptying, intestinal absorption of electrolytes and exercise performance in electrolyte-supplemented horses. Experimental Physiology 98: 193-206.
CrossrefGoogle Scholar
Madsen, M.F., Kanters, J.K. and Buhl, R., 2014. Heart rate recovery time in exercise testing of endurance horses. Equine Veterinary Journal 46 Suppl. 46: 7-7.
Google Scholar
Martins, J.A., Ramos, M.T., Miranda, A.C., Dimache, L.A., Silva, A.T., Azevedo, J.F., Oliveira, C.A., Silva, V.P., Trigo, P. and Almeida, F.Q., 2014. Blood and urinary variables in horses supplemented with electrolytes. Comparative Exercise Physiology 10: 123-130.
Wageningen Academic PublishersGoogle Scholar
Martinson, K., Hathaway, M., Ward, C., Johnson, R. and Cargill, M.S., 2017. Managing horses during hot weather. Available at: http://tinyurl.com/jc8sgbp. Google Scholar
McCutcheon, L.J., Geor, R.J., Hare, M.J., Kingston, J.L. and Staempfli, H.I., 1995. Sweat composition; comparison of collection methods and effects of exercise intensity. Equine Veterinary Journal Suppl. 18: 279-284.
Google Scholar
McKeever, K.H., Hinchcliff, K.W., Reed, S.M. and Robertson, J.T., 1993. Plasma constituents during incremental treadmill exercise in intact and splenectomised horses. Equine Veterinary Journal 25: 233-236.
CrossrefGoogle Scholar
McKenzie, E.C., Esser, M.M. and Payton, M.E., 2014. Serum biochemistry changes in horses racing a multiday endurance event. Comparative Exercise Physiology 10: 215-222.
Wageningen Academic PublishersGoogle Scholar
Munsters, C.C., Van Iwaarden, A., Van Weeren, R. and Van Oldruitenborgh-Oosterbaan, M.M.S., 2014. Exercise testing in Warmblood sport horses under field conditions. Veterinary Journal 202: 11-19.
CrossrefGoogle Scholar
Robert, C., Goachet, A.G., Fraipont, A., Votion, D.M., Vanerck, E. and Leclerc, J.L., 2010. Hydration and electrolyte balance in horses during an endurance season. Equine Veterinary Journal 42 Suppl. 38: 98-104.
Google Scholar
Robert, C., Benamou-Smith, A. and Leclerc, J.L., 2002. Use of the recovery check in long-distance endurance rides. Equine Veterinary Journal 34 Suppl. 34: 106-111.
Google Scholar
Rose, R.J., Arnold, K.S., Church, S. and Paris, R., 1980. Plasma and sweat electrolyte concentrations in the horse during long distance exercise. Equine Veterinary Journal 12: 19-22.
CrossrefGoogle Scholar
Rose, R.J., Ilkiw, J.E. and Martin, I.C.A., 1979. Blood-gas, acid-base and haematological values in horses during an endurance ride. Equine Veterinary Journal 11: 56-59.
CrossrefGoogle Scholar
Sampieri, F., Schott II, H.C., Hinchcliff, K.W., Geor, R.J. and Jose-Cunilleras, E., 2006. Effects of oral electrolyte supplementation on endurance horses competing in 80 km rides. Equine Veterinary Journal Suppl. 36: 19-26.
Google Scholar
Sampieri, F., Schott II, H.C., Hinchcliff, K.W., Geor, R.J. and Jose-Cunilleras, E., 2007. Electrolyte supplementation for endurance horses: effects on fluid losses and performance. In: AAEP (ed.) Proceedings of the annual convention of the American Association of Equine Practitioners, Vol. 53. AAEP, Lexington, KY, USA, pp. 82-85.
Google Scholar
Schott, H.C., Marlin, D.J. and Geor, R.J., 2006. Changes in selected physiological and laboratory measurements in elite horses competing in a 160 km endurance ride. Equine Veterinary Journal Suppl. 36: 37-42.
Google Scholar
Spooner, H.S., Nielsen, B.D., Schott, H.C. and Harris, P.A., 2010. Sweat composition in Arabian horses performing endurance exercise on forage-based, low Na rations. Equine Veterinary Journal 42 Suppl. 38: 382-386.
Google Scholar
Spooner, H.S., Nielsen, B.D., Schott II, H.C., O’connor-Robison, C.I. and Harris, P.A., 2013. Hydration status of horses performing endurance exercise: II. Evidence for a role of dietary fibre type, not oil supplementation. Comparative Exercise Physiology 9: 199-207.
Wageningen Academic PublishersGoogle Scholar
Stefansdottir, G.J., Ragnarsson, S., Gunnarsson, V., Roepstorff, L. and Jansson, A., 2015. A comparison of the physiological response to tölt and trot in the Icelandic horse. Journal of Animal Science 93: 3862-3870.
CrossrefGoogle Scholar
Tennent-Brown, B.S., Wilkins, P.A., Lindborg, S., Russell, G. and Boston, R.C., 2010. Sequential plasma lactate concentrations as prognostic indicators in adult equine emergencies. Journal of Veterinary Internal Medicine 24: 198-205.
CrossrefGoogle Scholar
Toribio, R.E., 2011. Disorders of calcium and phosphate metabolism in horses. Veterinary Clinics of North America: Equine Practice 27: 129-147.
CrossrefGoogle Scholar
Verdegaal, E.J.M.M. and Franklin, S.H., 2016. Science in brief: highlights from the applied physiology, muscle and genetics abstracts at the international conference on equine exercise physiology. Equine Veterinary Journal 48: 9-12.
CrossrefGoogle Scholar
Viu, J., Jose-Cunilleras, E., Armengou, L., Cesarini, C., Tarancon, I., Rios, J. and Monreal, L., 2010. Acid-base imbalances during a 120 km endurance race compared by traditional and simplified strong ion difference methods. Equine Veterinary Journal 42 Suppl. S38: 76-82.
Google Scholar
Walker, W.T., Callan, R.J., Hill, A.E. and Tisher, K.B., 2014. Effects of oral powder electrolyte administration on packed cell volume, plasma chemistry parameters, and incidence of colic in horses participating in a 6-day 162-km trail ride. Canadian Veterinary Journal 55: 765.
Google Scholar
Waller, A.P., Ecker, G. and Lindinger, M.I., 2014. Electrolyte supplementation prior to prolonged submaximal exercise results in decreased PCO2 and tCO2 during exercise and recovery. Equine Veterinary Journal 46 Suppl. 46: 20.
Google Scholar
Wallsten, H., Olsson, K. and Dahlborn, K., 2012. Temperature regulation in horses during exercise and recovery in a cool environment. Acta Veterinaria Scandinavica 54: 42.
CrossrefGoogle Scholar

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