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2010 | 54 | 1 |

Tytuł artykułu

Various types of hypophosphataemia in dairy cows and the clinical implications depending on the intensity of the deficiency

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The paper aimed at defining the specific biochemical parameters, as well as the use of treatment methods, according to types and intensity of the clinical signs of non-complicated hypophosphataemia in cows. The investigations were carried out on 300 HF cows in 15 herds in the Lublin Region. The mean milk yield in the herds was 36.8 ±2.8 dl. The cows were 3-9 years old and had a similar diet ratio. The animals with hypophosphataemia symptoms in the early stadium (2-7 d) were divided into three groups according to the intensity of clinical signs whereas the control group consisted of cows with no clinical signs of the illness. The inorganic phosphorus (Pi), total Ca, total Mg, K, Fe, total protein, Cu, bilirubin, FFA, and creatinine concentrations, as well as AST and AP activity, were determined in serum and plasma. The animals with markedly exhibited signs (recumbency and tremor) showed significantly decreased Pi, Mg, and FFA contents and simultaneously increased activity of AST and AP. In the group exhibiting minimal signs (group I), there were no significant disturbances in homeostasis except the low Pi concentration, so it was possible to use the specialised phosphorus preparations in the treatment. In the other groups (II, III), which exhibited more marked signs of the illness, it was necessary to improve the parenchymal organs functions in addition to phosphorus level normalisation.

Wydawca

-

Rocznik

Tom

54

Numer

1

Opis fizyczny

p.35-41,fig.,ref.

Twórcy

autor
  • University of Life Science, 20-612 Lublin, Poland
autor
autor

Bibliografia

  • 1. Betterridge K.: A survey of the phosphorus and calcium contents of pastures and the serum inorganic phosphorus calcium contents of cows on four Manawatu dairy farms. New Zealand Vet J 1989, 137, 51-55.
  • 2. Bires J., Hlincikova S., Link R., Reichel P., Huska M.: Clinical and biochemical analysis of peripartal recumbency on a dairy farm. Proceedings of IV Central European Buiatric Congress, Lovran, 2003, pp. 199-204.
  • 3. Bjőrkman C., Jönsson G., Wroblewski R.: Concentrations of sodium, potassium, calcium, magnesium and chlorine in the muscle cells of downer cows and cows with parturient paresis. Res Vet Sci 1994, 57, 53 -57.
  • 4. Braun U., Dumelin J., Siegwart N., Bleui U., Hassig M.: Effect of intravenous calcium and oral sodium phosphate in cows with parturient paresis. Schweitz Arch Tierheilkd 2007, 149, 259-264.
  • 5. Braun U., Zulliger P., Liesegang A, Bleul U., Hassig M.: Effect of intravenous calcium borogluconate and sodium phosphate in cows with parturient paresis. Vet Rec 2009, 164, 296-299.
  • 6. Bronicki M., Dembiński Z.: Studies on the activity of selected hepatic enzymes in dairy cows in conjuction with lipid metabolism markers. Medycyna Wet 1994, 50, 268-271.
  • 7. Brydl E., Jurkovich V., Könyves L., Rafai P., Tegzes L.: Occurrence of subclinical metabolic disorders in large- scale dairy farms in Hungary in 2002. Proceedings of IV Central European Buiatric Congress, Lovran, 2003, pp. 167-172.
  • 8. Care A.D.: The absorption of phosphate from the digestive tract of ruminant animals. Br Vet J 1994, 150, 197-205.
  • 9. Cheng Y., Goff J.P., Horst R.L.: Restoring normal blood phosphorus concentrations in hypophosphatemic cattle with sodium phosphate. Vet Med 1998, 93, 383-386.
  • 10. Esslemont R.J., Kossaibati M.A.: Incidence of production diseases and other health problems in a group of dairy herds in England. Vet Rec 1996, 139, 486-490.
  • 11. Erdogan S., Celik S., Erdogan Z.: Seasonal and locational effects on serum, milk, liver and kidney chromium, manganese, cooper, zinc, and iron concentrations of dairy cows. Biol Tr Elem Res 2004, 98, 51 -61.
  • 12. Fenwick D.C.: The relationship between certain blood cations in cows with milk fever and both the state of consciousness and the position of cows when attended. Aust Vet J 1988, 65, 374-375.
  • 13. Gartner R. J. W., Murphy G. M., Hoey W. A.: Effects on induced, subclinical phosphorus deficiency on feed intake and growth of beef heifers. J Agric Sci Camb 1982, 88, 143-150.
  • 14. Grunberg W., Constable P., Schroder U., Staufenbiel R., Morin D., Rohn M.: Phosphorus homeostasis in dairy cows with abomasal displacement or abomasal volvulus. J Vet Intern Med 2005, 19, 894-898.
  • 15. Grunberg W., Staufenbiel R., Constable P.D., Dann H.M., Morin D.E., Drackley J.K.: Liver phosphorus content in Holstein-Friesian cows during the transition period. J Dairy Sci 2009, 92, 2106-2117.
  • 16. Horst R.L.: Regulation of calcium and phosphorus homeostasis in the dairy cows. J Dairy Sci 1986, 69, 604-616.
  • 17. Jubb T. F., Crough K. F.: Phosphorus supplementation of cattle. Aust Vet J 1988, 65, 264-267.
  • 18. Jubb T.F., Jerrett I.V., Browning J.W., Thomas K.W.: Haemoglobinuria and hypophopshatemia in postparturient dairy cows without dietary deficiency of phosphorus. Aust Vet J 1990, 67, 86-89.
  • 19. Kaya A., Akgül Y., Yüksek N.: Studies on the aetiology and treatment of hypophosphataemia developed naturally in cattle from Van region of Turkey. Medycyna Wet 2008, 61, 171-174.
  • 20. Mjoun K., Kalscheur K.F., Hippen A.R., Schingoethe D.J.: Ruminai phosphorus disappearance from corn and soybean feedstuffs. J Dairy Sci 2008, 91, 3938-3946.
  • 21. Montiel L., Tremblay A., Girard V., Chorfi Y.: Preanalytical factors affecting blood inorganic phosphate concentration in dairy cows. Vet Clin Pathol 2007, 36, 278-280.
  • 22. Moore F.: Serum chemistry profiles in dairy cows - a herd management tool? Vet Med 1997, 92, 986-991.
  • 23. Pehrson B., Svensson C., Jonsson M.: A comparative study of the effectiveness of calcium propionate and calcium chloride for the prevention of parturient paresis in dairy cows. J Dairy Sci 1998, 81, 2011-2016.
  • 24. Read M. V. P., Engels E. A. N., Smith W. A.: Phosphorus and the grazing ruminant blood and fecal grap samples as indicators of the P status of cattle. South Afr J Anim Sci 1986, 16, 18-22.
  • 25. Sharifi K., Mohri M., Rakhshani A.: The relationship between blood indicators of phosphorus status in cattle. Vet Clin Pathol. 2007, 36, 354-357.
  • 26. Shupe J. L., Butcher J. E., Call J. W., Olson A. E., Blake J. T.: Clinical signs and bone changes associated with phosphorus deficiency in beef cattle. Am J Vet Res 1988, 49, 1629-1636.
  • 27. Steen A.: Field study of dairy cows with reduced appetite in early lactation: clinical examinations, blood and rumen fluid analyses. Acta Vet Scand 2001, 42, 219-228.
  • 28. Wang X.L., Gallagher C.H., McClure T.J., Reeve V.E., Canfield P.J.: Bovine post-parturient haemoglobinuria: effect of inorganic phosphate on red cell metabolism. Res Vet Sci 1985, 39, 333-339.
  • 29. Winnicka A.: Wartości referencyjne podstawowych badań laboratoryjnych w weterynarii. Ed. SGGW, Warszawa, 2004.
  • 30. Wittwer F., Contreras P.A., Araya O.: Strategic health management of heifers reared under grazing conditions. Proceedings of XXII World Buiatrics Congress, Hannover, 2002, pp. 396-409.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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