All Stories

  1. Effect of short-term intermittent exposure to estradiol on fish reproductive physiology
  2. The results of these invastigations support a local Mel synthesis in the sticklebacks' skin.
  3. Oocyte hydration in round goby as another invasive strategy
  4. Hormonal characteristic of round goby reproductive cycle
  5. Cortisol in Correlation to Other Indicators of Fish Welfare
  6. The cutaneous stress response system in fish
  7. oestradiol, AVT/IT system, round goby, genomic and non-genomic pathway
  8. Region specific changes in nonapeptide levels during client fish interactions with allopatric and sympatric cleaner fish
  9. The research and developing technology in the tissue regeneration, 3D culture and biomaterials.
  10. Commentary
  11. Agonistic interactions elicit rapid changes in brain nonapeptide levels in zebrafish
  12. Adaptation to salinity in Atlantic cod from different regions of the Baltic Sea
  13. Cortisol stimulates arginine vasotocin and isotocin release from the hypothalamo-pituitary complex of round goby (Neogobius melanostomus): Probable mechanisms of action
  14. Brain nonapeptide and gonadal steroid responses to deprivation of heterosexual contact in the black molly
  15. Urotensin II inhibits arginine vasotocin and stimulates isotocin release from nerve endings in the pituitary of gilthead sea bream (Sparus aurata)
  16. Effect of cortisol and urotensin I on AVT and IT secretion from pituitary cells of Sparus aurata
  17. Changes in brain arginine vasotocin, isotocin, plasma 11-ketotestosterone and cortisol in round goby, Neogobius melanostomus, males subjected to overcrowding stress during the breeding season
  18. Skin structure studies and molecular identification of the Atlantic cod Gadus morhua L. of unique golden pigmentation from the Svalbard Bank
  19. A novel approach to AVT and IT studies in fish brain and pituitary: In vitro perfusion technique
  20. Melatonin, vasotocin and isotocin as biomarkers of the condition of fish
  21. Hypothalamic arginine vasotocin and isotocin are involved in stress response in fish
  22. Melatonin concentrations during larval and postlarval development of gilthead sea breamSparus auratus: more than a time-keeping molecule?
  23. Effects of water salinity on melatonin levels in plasma and peripheral tissues and on melatonin binding sites in European sea bass (Dicentrarchus labrax)
  24. Melatonin and thyroxine as biomarkers of condition of white stork nestlings (Ciconia ciconia)
  25. High density and food deprivation affect arginine vasotocin, isotocin and melatonin in gilthead sea bream (Sparus auratus)
  26. Melatonin synthesis under calcium constraint in gilthead sea bream (Sparus auratus L.)
  27. Melatonin and thyroxine response to pollution in white stork nestlings (Ciconia ciconia): Aspects of rhythmicity and age
  28. Arginine vasotocin, isotocin and melatonin responses following acclimation of gilthead sea bream (Sparus aurata) to different environmental salinities
  29. Day–night specific binding of 2-[125I]Iodomelatonin and melatonin content in gill, small intestine and kidney of three fish species
  30. Disruption of the melatonin rhythm in wild and farmed fish: a consequence of prolonged thyroxine administration and calcium depletion
  31. Seasonal changes in brain melatonin concentration in the three-spined stickleback (Gasterosteus aculeatus): towards an endocrine calendar
  32. Concentration and Distribution of Neuropeptide Y, Galanin, beta-endorphin, Vasoactive Intestinal Peptide and Gonadotrophin-Releasing Hormone in the Hypothalamus of Gilts during Oestrogen-Induced Surge Secretion of Luteinizing Hormone
  33. Concentration and Distribution of Neuropeptide Y, Galanin, β-endorphin, Vasoactive Intestinal Peptide and Gonadotrophin-Releasing Hormone in the Hypothalamus of Gilts during Oestrogen-Induced Surge Secretion of Luteinizing Hormone
  34. Gonadotrophin-releasing hormone release in vitro from the stalk median eminence of cyclic and ovariectomized gilts in response to naloxone or morphine
  35. Does Apoptosis Occur during Follicular Atresia in the Follicular Walls of the Porcine Ovary?
  36. Does Apoptosis Occur during Follicular Atresia in the Follicular Walls of the Porcine Ovary?