Vet Med - Czech, 2008, 53(6):333-346 | DOI: 10.17221/1860-VETMED

Effect of exercise on physiological, blood and endocrine parameters in search and rescue-trained dogs

S. Rovira, A. Munoz, M. Benito
Department of Animal Medicine and Surgery, Cardenal Herrera-CEU University, Avda, Seminario CEU, Moncada, Valencia, Spain

Exercise induces a variety of physiological and laboratorial changes of different magnitude and direction, depending on the characteristics of the performed exercise (duration and intensity) and on the fitness and training level of the dog. The present research aims to describe the normal response to a session of search and rescue exercise in trained dogs in order to distinguish these changes from those derived from exhaustion or diseases. Nine healthy and trained dogs of both sexes (five females and four males), aged between 24 months and seven years (mean: 3.5 years) were studied. Exercise consisted in a normal session of searching and rescue training of 20 min of duration, carried out in an open terrain. During the exercise, heart rate (HR) was monitored continuously with a HR-meter. Furthermore, respiratory rate (RR) and rectal temperature (RT) were measured and venous blood samples were extracted at rest (R), immediately after exercise (E) and at 5, 15 and 30 min of a passive recuperation (5REC, 15REC and 30REC). The following laboratorial parameters were studied: red blood cells (RBC), hemoglobin concentration (HB), packed cell volume (PCV), RBC volumetric indices, white blood cells (WBC), creatinine (CREAT), total plasma protein (TPP), lactate (LA), glucose (GLU), triacylglycerols (TAG), creatine kinase (CK), aspartate aminotransferase (AST), lactate dehydrogenase (LDH), Na, K, Cl, cortisol (CORT) and insulin (INS). Clinical signs indicative of exhaustion or exercise intolerance were not observed in the dogs during the study. HR increased with E and remained over the reference range until 30REC. RR and RT also rose with E, with the highest RR at 5REC. RBC, HB and PCV were not affected by E, whereas WBC increased at E. TPP, GLU, AST and K were not affect by E neither by REC. E induced elevations in CK, LDH, LA and INS, reaching R values at 30REC, 30REC, 15REC and 5REC, respectively. Plasma Na decreased with E and recovered at 30REC. Plasma Cl decreased with E, without additional significant changes. Circulating CORT concentrations were reduced with E, with the highest reduction at 10REC. Modifications of RR, RT, WBC, CREAT and TAG persisted throughout the recovery period. In conclusion, significant modifications in physiological and laboratorial parameters were induced by the searching and rescue exercise, with values outside the reference range for healthy dogs. These data provide a data base for evaluating ill or injured dogs during this type of exercise. In addition, there was not evidence of dehydration, electrolyte imbalances, and stress or muscle disorders in the studied dogs.

Keywords: dog; exercise; heart rate; hematology; hormones; lactate; metabolism

Published: June 30, 2008  Show citation

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Rovira S, Munoz A, Benito M. Effect of exercise on physiological, blood and endocrine parameters in search and rescue-trained dogs. Vet Med - Czech. 2008;53(6):333-346. doi: 10.17221/1860-VETMED.
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References

  1. Abramson C.J., Platt S.R., Shelton G.D. (2004): Pyruvate dehydrogenase deficiency in a Sussex spaniel. Journal of Small Animal Practice, 45, 162-165. Go to original source... Go to PubMed...
  2. Arokoski J., Miettinen P.V.A., Saamanen A.M., Haapanen K., Parviainen M., Tammi M., Helminen M.J. (1993): Effects of aerobic long distance running training (up to 40 km/day) of 1-year duration on blood and endocrine parameters of female beagle dog. European Journal of Applied Physiology, 67, 321-329. Go to original source... Go to PubMed...
  3. Bjotvedt G., Weems C.W., Foley K. (1984): Strenuous exercise may cause health hazards for racing Greyhounds. Veterinary Medicine Small Animal Clinic, 79, 1481-1487.
  4. Breitschwerdt E.B., Komegay J.N., Wheeler S.J., Stevens J.B., Baty C.J. (1992): Episodic weakness associated with exertional lactic acidosis and myopathy in old English sheepdog littermates. Journal of American Veterinary Medical Association, 201, 731-736. Go to original source...
  5. Brzezinska Z. (1987): Muscle metabolism during prolonged physical exercise in dogs. Archives of International Physiology and Biochemistry, 95, 305-312.
  6. Burr J.R., Reinhart G.A., Swenson R.A., Swaim S.F., Vaughn D.M., Bradley D.M. (1997): Serum biochemical values in sled dogs before and after competing in long-distance races. Journal of American Veterinary Medical Association, 211, 175-179. Go to original source...
  7. Chanoit G.P., Lefebvre H.P., Orcel K., Laroute V., Toutain P.L., Braun J.P. (2001): Use of plasma creatine kinase pharmacokinetics to estimate the amount of exerciseinduced muscle damage in Beagles. American Journal of Veterinary Research, 62, 1375-1380. Go to original source... Go to PubMed...
  8. Dickinson P.J., Sullivan M. (1994): Exercise induced hyperthermia in a racing Greyhound. Veterinary Record, 135, 508. Go to original source... Go to PubMed...
  9. Donovan D.C., Jackson C.A., Colahan P.T., Norton N., Hurley D.J. (2007): Exercise-induced alterations in pro-inflammatory cytokines and prostaglandin Falpha in horses. Veterinary Immunology and Immunopathology, 118, 263-269. Go to original source... Go to PubMed...
  10. Foreman J.H., Lawrence L.M. (1991): Lameness and heart rate elevation in the exercising horse. Journal of Equine Veterinary Science, 11, 353-356. Go to original source...
  11. Foreman J.H., Bayly W.M., Grant B.D., Gollnick P.D. (1990): Standardized exercise test and daily heart rate responses of thoroughbreds undergoing conventional race training and detraining. American Journal of Veterinary Research, 51, 914-920. Go to original source...
  12. Gary A.T., Cohn L.A., Kerl M.E., Jensen W.A. (2004): The effect of exercise on urinary albumin excretion in dogs. Journal of Veterinary Internal Medicine, 18, 52-55. Go to original source... Go to PubMed...
  13. Gonzalez-Alonso J. (2007): Hyperthermia impairs brain, heart and muscle function in exercising humans. Sports Medicine, 37, 371-375. Go to original source... Go to PubMed...
  14. Hastings A.B., White F.C., Sanders T.M., Bloor C.M. (1982): Comparative physiological responses to exercise stress. Journal of Applied Physiology, 52, 1077-1083. Go to original source... Go to PubMed...
  15. Hinchcliff K.W., Olson J., Crusberg C., Kenyon J., Long R., Royle W., Weber W., Burr J. (1993): Serum biochemical changes in dogs competing in a long-distance sled race. Journal of American Veterinary Medical Association, 202, 401-405. Go to original source...
  16. Hinchcliff K.W., Reinhart G.A., Burr J.R., Swenson R.A. (1997): Exercise-associated hyponatremia in Alaskan sled dogs: urinary and hormonal responses. Journal of Applied Physiology, 83, 824-829. Go to original source... Go to PubMed...
  17. Hinchcliff K.W., Shaw L.C., Vukich N.S., Schmidt K.E. (1998): Effect of distance traveled and speed of racing on body weight and serum enzyme activity of sled dogs competing in a long-distance race. Journal of American Veterinary Medical Association, 213, 639-644. Go to original source...
  18. Hinchcliff K.W., Constable P.D., DiSilvestro R.A. (2004): Muscle injury and antioxidant status in sled dogs competing in a long-distance sled dog race. Equine Comparative Exercise Physiology, 1, 81-85. Go to original source...
  19. Ilkiw J.E., Davis P.E., Church D.B. (1989): Hematologic, biochemical, blood-gas, and acid-base values in greyhounds before and after exercise. American Journal of Veterinary Research, 50, 583-586. Go to original source...
  20. Kozlowski S., Brzezinska Z., Krub B., Kaciuba-Uscilko H., Greenleaf J.E., Nazar K. (1985): Exercise hyperthermia as a factor limiting physical performance: temperature effect on muscle metabolism. Journal of Applied Physiology, 59, 766-773. Go to original source... Go to PubMed...
  21. Lassen E.D., Craig A.H., Blythe L.L. (1986): Effects of racing on haematological and serum biochemical values in greyhounds. Journal of American Veterinary Medical Association, 188, 1299-1303. Go to original source...
  22. Matwichuk C.L., Taylor S., Shmon C.L., Kass P.H., Shelton G.D. (1999): Changes in rectal temperature and hematologic, biochemical, blood gas, and acid-base values in healthy Labrador Retrievers before and after strenuous exercise. American Journal of Veterinary Research, 60, 88-92. Go to original source...
  23. McKenzie E.C., Jose-Cunilleras E., Hinchcliff K.W., Holbrook T.C., Royer C., Patyon M.E., Williamson K., Nelson S., Willard M.D., Davis M.S. (2007): Serum chemistry alterations in Alaskan sled dogs during five successive days of prolonged endurance exercise. Journal of American Veterinary Medical Association, 230, 1486-1492. Go to original source... Go to PubMed...
  24. Miles P.D., Finegood D.T., Lickley H.L., Vranic M. (1992): Regulation of glucose turnover at the onset of exercise in the dogs. Journal of Applied Physiology, 72, 2487- 2494. Go to original source... Go to PubMed...
  25. Munoz A., Riber C., Santisteban R., Rubio M.D., Aguera E.I., Castejon F.M. (1999a): Cardiovascular and metabolic adaptations in horses competing in cross-country events. Journal of Veterinary Medical Science, 61, 13-20. Go to original source... Go to PubMed...
  26. Munoz A., Santisteban R., Rubio M.D., Aguera E.I., Escribano B.M., Castejon F.M. (1999b): Locomotor, cardiocirculatory and metabolic adaptations to training in Andalusian and Anglo-Arabian horses. Research in Veterinary Science, 66, 25-31. Go to original source... Go to PubMed...
  27. Munoz A., Riber C., Santisteban R., Lucas R.G., Castejon F.M. (2002): Effect of training duration and exercise on blood-borne substrates, plasma lactate and enzyme concentration in Andalusian, Anglo-Arabian and Arabian breeds. Equine Veterinary Journal, 34, 245-251. Go to original source... Go to PubMed...
  28. Munoz A., Riber C., Satue K., Lucas R.G., Benito M. (2003): Relationship between systemic adaptation to physical effort and plasma potassium in untrained and trained Andalusian and Angloarabian horses. Journal of Equine Science, 14, 13-22. Go to original source...
  29. Munoz A., Cuesta I., Riber C., Gata J., Trigo P., Castejon F.M (2006): Trot asymmetry in relation to physical performance and metabolism in equine endurance rides. Equine Veterinary Journal 36, 50-54. Go to original source... Go to PubMed...
  30. Musch T.I., Haidet G.C., Ordway G.A., Longhurst J.C., Mitchell J.M. (1985): Dynamic exercise training in foxhounds. I. Oxygen consumption and hemodynamic responses. Journal of Applied Physiology, 59, 183-189. Go to original source... Go to PubMed...
  31. Nagata S., Takeda F., Kurosawa M., Mima K., Hiraga A., Kai M., Taya K. (1999): Plasma adenocorticotropin, cortisol and catecholamines response to various exercises. Equine Veterinary Journal, 30, 570-574. Go to original source... Go to PubMed...
  32. Nieman D.C., Pedersen B.K. (1999): Exercise and immune function. Recent developments. Sports Medicine, 27, 73-80. Go to original source... Go to PubMed...
  33. Nold J.L., Peterson L.J., Fedde M.R. (1991): Physiological changes in the running greyhound (Canis domesticus): influence of race length. Comparative Biochemistry and Physiology A, 100, 623-627. Go to original source... Go to PubMed...
  34. Pollitt C. (1993): Monitoring the heart rates of endurance horses. Part 4. Equine Athlete, 6, 1-8.
  35. Poso A.R., Hyyppa S. (1999): Metabolic and hormonal changes after exercise in relation to muscle glycogen concentrations. Equine Veterinary Journal, 30, 332-336. Go to original source... Go to PubMed...
  36. Querengaesser A., Ibsen C., Leibetseder J. (1994): Blood changes during training and racing in sled dogs. Journal of Nutrition, 124, 2760S-2764S. Go to original source... Go to PubMed...
  37. Rose R.J., Bloomberg M.S. (1989): Responses to sprint exercise in the greyhound: effects on haematology, serum biochemistry and muscle metabolites. Research in Veterinary Science 47, 212-218. Go to original source... Go to PubMed...
  38. Rovira S., Munoz A., Benito M. (2007a): Fluid and electrolyte shifts during and after agility competitions in dog. Journal of Veterinary Medical Science, 69, 32-35. Go to original source... Go to PubMed...
  39. Rovira S., Munoz A., Benito M. (2007b): Hematologic and biochemical changes during canine agility competitions. Veterinary Clinical Pathology 36, 30-35. Go to original source... Go to PubMed...
  40. Snow D.H., Harris R.C., Stuttard E. (1988): Changes in haematology and plasma biochemistry during maximal exercise in greyhounds. Veterinary Record 123, 487-489. Go to original source... Go to PubMed...
  41. Steiss J., Ahmad H.A., Cooper P., Ledford C. (2004): Physiologic responses in healthy Labrador Retrievers during field trial training and competition. Journal of Veterinary Internal Medicine, 18, 147-151. Go to original source... Go to PubMed...
  42. Warburton D.E.R., Welsh R.C., Haykowsky M.J., Taylor D.A., Humen D.P. (2002): Biochemical changes as a result of prolonged strenuous exercise. British Journal of Sports Medicine, 36, 301-303. Go to original source... Go to PubMed...
  43. Wardyn G.G., Rennard S.I., Brusnahan S.K., McGuire T.R., Carlson M.L., Smith L.M., McGranaghan S., Sharp J.G. (2008): Effect of exercise on hematological parameters, circulating side population cells, and cytokines. Experimental Hematology, 36, 216-223. Go to original source... Go to PubMed...
  44. Wodecki J., Heinrich C. (1993): Paralytic mioglobinuria in greyhounds. Tierarztliche Praxis, 21, 355-359.

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