Journal of Animal and Veterinary Advances

Year: 2011
Volume: 10
Issue: 20
Page No. 2631 - 2638

Hematological and Biochemical Responses of the Flowerhorn Fish to Hypoxia

Authors : Pakanit Kupittayanant and Wichitta Kinchareon

References

Bentley, S.A., A. Johnson and C.A. Bishop, 1993. A parallel evaluation of four automated hematology analyzers. Am. J. Clin. Pathol., 100: 626-632.
PubMed  |  

Bernet, D., H. Schmidt, T. Wahli, P. Burkhardt-Holm, 2001. Effluent from a sewage treatment works causes changes in serum chemistry of brown trout (Salmo trutta L.). Ecotoxicol. Environ. Saf., 48: 140-147.
CrossRef  |  PubMed  |  Direct Link  |  

Breitburg, D.L., N. Steinberg, S. DuBeau, C. Cooksey and E.D. Houde, 1994. Effects of low dissolved oxygen on predation on estuarine fish larvae. Mar. Ecol. Prog. Ser., 104: 235-246.
Direct Link  |  

Brett, J.R. and J.M. Blackburn, 1981. Oxygen requirements for growth of young coho (Oncorhynchus kisutch) and sockeye (O. nerka) salmon at 158°C. Can. J. Fish. Aquat. Sci., 38: 399-404.

Brett, J.R., 1979. Environmental Factors and Growth. In: Fish Physiology, Hoar, W.S., D.J. Randall and J.R. Brett (Eds.). Vol. VIII, Academic Press, New York, pp: 599-675.

Burtis, C.A. and E.R. Ashwood, 1996. Tietz Fundamentals of Clinical Chemistry. W.B. Saunders, Philadelphia, PA.

Burton, D.T., L.B. Richardson and C.J. Moore, 1980. Effect of oxygen reduction rate and constant low dissolved oxygen concentrations on two estuarine fish. Trans. Am. Fish. Soc., 109: 552-557.

Buttarello, M., M. Gadotti, C. Lorenz, E. Toffalori, N. Ceschini, A. Valentini and P. Rizzotti, 1992. Evaluation of four automated hematology analyzers. A comparative study of differential counts (imprecision and inaccuracy). Am. J. Clin. Pathol., 97: 345-352.
PubMed  |  

Cech, J.J. and D.E. Wohlschlag, 1973. Respiratory responses of the striped mullet, Mugil cephalus (L.) to hypoxic conditions. J. Fish Biol., 5: 421-428.
CrossRef  |  

Coles, E.H., 1986. Veterinary Clinical Pathology. 4th Edn., W.B. Saunders Co., Philadelphia, London, ISBN: 978-0721618289, Pages: 486.

Coutant, C.C., 1985. Striped bass, temperature and dissolved oxygen: A speculative hypothesis for environmental risk. Trans. Am. Fish. Soc., 114: 31-61.

Cowey, C.B. and M.J. Walton, 1989. Intermediary Metabolism. In: Fish Nutrition, Halver, J.E. (Ed.). Academic Press, San Diego, pp: 259-329.

Coz-Rakovac, R., I. Strunjak-Perovic, M. Hacmanjek, N.T. Popovic, Z. Lipej and B. Sostaric, 2005. Blood chemistry and histological properties of wild and cultured Sea Bass (Dicentrarchus labrax) in the North Adriatic Sea. Vet. Res. Commun., 29: 677-687.
CrossRef  |  

Dorfman, D. and J. Westman, 1970. Responses of some Anadromous Fishes to Varied Oxygen Concentrations and Increased Temperatures. Water Resources Research Institute, Rutgers, The State University, Brunswick, NJ.

Goldenfarb, P.B., F.P. Bowyer, E. Hall and E. Brosious, 1971. Reproducibility in the hematology laboratory: The microhematrocrit determination. Am. J. Clin. Pathol., 56: 35-39.
PubMed  |  Direct Link  |  

Handy, R.D. and M.H. Depledge, 1999. Physiological responses: Their measurement and use as environmental biomarkers in ecotoxicology. Ecotoxicology, 8: 329-349.
CrossRef  |  Direct Link  |  

Ishibashi, Y., T. Kotaki, M. Kataoka and Y. Yamada, 2007. Ontogeny of hypoxic tolerance and energy metabolism of larvae and juvenile in Japanese flounder Paralichthys olivaceus. J. Exp. Mar. Biol. Ecol., 352: 42-49.

Jones, J.R.E., 1952. The reactions of fish to water of low oxygen concentration. J. Exp. Biol., 29: 403-415.
Direct Link  |  

Lallier, F., F. Boitel and J.P. Truchot, 1987. The effect of ambient oxygen and temperature on haemolymph l-lactate and urate concentrations in the shore crab Carcinus maenas. Comp. Biochem. Physiol. A, 86: 255-260.
CrossRef  |  

Moura, M.A.F., M.I.S. Oliveira and A.L. Val, 1997. Effects of hypoxia on leucocytes of two Amazon fish Colossoma macropomum and Hoplosternum littorale. Rev. U. Cien. Biol., 1: 13-22.

Muusze, B., J. Marcon, G. van den Thillart and V. Almeida-Val, 1998. Hypoxia tolerance of Amazon fish: Respirometry and energy metabolism of the cichlid Astronotus Ocellatus. Comp. Biochem. Physiol. A, 120: 151-156.
CrossRef  |  

Nilsson, G.E. and P.L. Lutz, 1993. Role of GABA in hypoxia tolerance, metabolic depression and hibernation: Possible links to neurotransmitter evolution. Comp. Biochem. Physiol. C, 105: 329-336.
CrossRef  |  

Pedersen, C.L., 1987. Energy budgets for juvenile rainbow trout at various oxygen concentrations. Aquaculture, 62: 289-298.
CrossRef  |  

Pihl, L.S., P. Baden and R.J. Diaz, 1991. Effects of periodic hypoxia on distribution of demersal fish and crustaceans. Mar. Biol., 108: 349-360.
CrossRef  |  

Pouliot, T. and J. De La Noue, 1989. Feed intake, digestibility and brain neurotransmitters of rainbow trout under hypoxia. Aquaculture, 79: 317-327.
CrossRef  |  

Steffensen, J.F., J.P. Lomholt and K. Johansen, 1982. Gill ventilation and oxygen extraction during graded hypoxia in two ecologically distinct species of flatfish, the flounder (Platichthys flesus) and the plaice (Pleuronectes platessa). Environ. Biol. Fish., 7: 157-163.

Stevens, M.L., 1977. Fundamentals of Clinic Hematology. W.B. Saunders, Philadelphia.

Sylvester, J.R., C.E. Nash and C.R. Emberson, 1975. Salinity and oxygen tolerances of eggs and larvae of Hawaiian striped mullet, Mugil cephalus L. J. Fish Biol., 7: 621-629.
CrossRef  |  

Van Dam, A.A. and D. Pauly, 1995. Simulation of the effects of oxygen on food consumption and growth of Nile tilapia, Oreochromis niloticus (L.). Aquacult. Res., 26: 427-440.
CrossRef  |  

Wannamaker, C.M. and J.A. Rice, 2000. Effects of hypoxia on movements and behavior of selected estuarine organisms from the southeastern United States. J. Exp. Mar. Bio. Ecol., 249: 145-163.
CrossRef  |  

Wepener, V., J.H. van Vuren and H.H. Du Preez, 1992. The effect of hexavalent chromium at different pH values on the haematology of Tilapia sparrmanii (Cichlidae). Comp. Biochem. Physiol. C, 101: 375-381.
CrossRef  |  Direct Link  |  

Witters, H.E., S. Puymbroek, I. Sande and O.L.J. Vanderborght, 1990. Haematological disturbances and osmotic shifts in rainbow trout, Oncorhynchus mykiss (Walbaum) under acid and aluminium exposure. J. Comp. Physiol. B, 160: 563-571.
CrossRef  |  

Witters, H.E., S. van Puymbroeck and O.L.J. Vanderborght, 1991. Adrenergic response to physiological disturbances in rainbow trout, Oncorhynchus mykiss, exposed to aluminum at acid pH. Can. J. Fish Aquat. Sci., 48: 414-420.

Yang, J.L. and H.C. Chen, 2003. Serum metabolic enzyme activities and hepatocyte ultrastructure of common carp after gallium exposure. Zool. Stud., 42: 455-461.
Direct Link  |  

Zhang, Z., Z. Ju, M.C. Wells and R.B. Walter, 2009. Genomic approaches in the identification of hypoxia biomarkers in model fish species. J. Exp. Mar. Biol. Ecol., 381: S180-S187.
CrossRef  |  

Design and power by Medwell Web Development Team. © Medwell Publishing 2024 All Rights Reserved