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Articles

Physiological basis of induced moulting and tissue regeneration in fowls

FONDEMENTS PHYSIOLOGIQUES DE LA MUE PROVOQUEE ET DE LA REGENERATION DES TISSUS CHEZ LES VOLAILLES

PHYSIOLOGISCHE GRUNDLAGEN DER ZWANGSMAUSER UND GEWEBEREGENERATION BEIM GEFLÜGEL

LA BASE FISIOLÓGICA DE LA MUDA FORZADA Y DE LA REGENERACIÓN DEL TISÚ EN LAS GALLINAS

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Pages 56-68 | Published online: 23 Sep 2019

References

  • ATKINSON, R. L., BRADLEY, J. W., SCHOM, C. B., FERGUSON, T. M. and KRUEGER, W. F. (1974). Recycling Turkey hens. Poultry Science 53: 847–849.
  • BAKER, M., BRAKE, J. and McDANIEL, G. R. (1983). The relationship between body weight loss during an induced molt and postmolt egg production, egg weight, and shell quality in caged layers. Poultry Science 62: 409–413.
  • BEGIN, J. J. and JOHNSON, T. H. (1976). Effect of dietary salt on the performance of laying hens. Poultry Science 55: 2395–2404.
  • BEUVING, G. and VONDER, G. M. A. (1978). Effect of stressing factors on corticosterone levels in the plasma of laying hens. General and Comparative Endocrinology 35: 153.
  • BRAKE, J. and THAXTON, P. (1976). Changes in blood metabolites and body temperature during a forced molt. Poultry Science 55: 1558.
  • BRAKE, J. and THAXTON, P. (1977). Post-molt effect of high protein vs. low protein diets during a force molt. Poultry Science 56: 1347.
  • BRAKE, J. and THAXTON, P. (1979a). Physiological changes in caged layers during a forced molt. 1. Body temperature and selected blood constituents. Poultry Science 58: 699–706.
  • BRAKE, J. and THAXTON, P. (1979b). Physiological changes in caged layers during a forced molt. 2. Gross changes in organs. Poultry Science 58: 707–716.
  • BRAKE, J., THAXTON, P. and BENTON, E. H. (1979). Physiological changes in caged layers during a forced molt. 3. Plasma thyroxine, plasma triiodothyronine, adrenal cholesterol and total adrenal steroids. Poultry Science 58: 1345–1350.
  • BRAKE, J., BAKER, M. and MANNIX, J. G. (1981). Weight loss characteristics of the body, liver, ovary, oviduct and uterine lipid during a forced molt and their relationship to postmolt performance. Poultry Science 60: 1628.
  • CAMPER, P. M. and BURKE, W. H. (1977). Effects of prolactin on the gonadotropin induced rise in serum oestradiol and progesterone of the laying turkey. General and Comparative Endocrinology 32: 72–77.
  • CAMPOS, E. J. and BAIAO, N. C. (1979). The effects of methods of forced molting on performance of commercial layers. Poultry Science 58: 1040.
  • DECUYPERE, E., VERHEYEN, G., KÜHN, E. R. and BALTHAZART, J. (1984). Shortening of the egg laying stop period with LH-RH injection in molting hens. XVIIth World's Poultry Congress Helsinki, 1984.
  • DOUGLAS, C. R., HARMS, R. H. and WILSON, H. R. (1972). The use of extremely low dietary calcium to alter the production pattern of laying hens. Poultry Science 51: 2015–2020.
  • ETCHES, R. J., WILLIAMS, J. B. and RZASA, J. (1984). Effects of corticosterone and dietary changes in the hen on ovarian function, plasma LH and steroids and the response to exogenous LHRH. Journal of reproduction and fertility 70: 121–130.
  • FONTAINE, G. (1979). De invloed van de duur van de legonderbreking, na kunstmatige rui, op de prestaties van de W.L. hen gedurende het tweede legjaar. Publicatie Rijksstation voor Kleinveeteelt nr 253: 1–19.
  • GHAFGAZI, T., McDANIEL, M. C. and LACY, D. E. (1981). Zinc-induced inhibition of insulin secretion from isolated rat islets of Langerhans. Diabetes 30: 341–345.
  • GILBERT, A. B., PEDDIE, J., MITCHEL, G. G. and TEAGUE, P. W. (1981). The egg-laying response of the domestic hen to variation in dietary calcium. British Poultry Science 22: 537–548.
  • GILDERSLEEVE, R. P., SATTERLEE, D. G., JOHNSON, W. A. and SCOTT, T. R. (1982). The effect of forced molt treatments on selected steroids in hens. Poultry Science 61: 2362–2369.
  • HALL, G. O. (1946). The artificial control of egg production. Poultry Science 25: 3–13.
  • HANSEN, R. S. (1966). Reducing light to facilitate induced rest. Poultry Science 45: 1089.
  • HEMBREE, D. J., ADAMS, A. W. and CRAIG, J. V. (1980). Effects of force-molting by conventional and experimental light restriction methods on performance and agonistic behaviour of hens. Poultry Science 59: 215–223.
  • HIMENO, K. and TANABE, Y. (1957). Mechanism of molting in hen. Poultry Science 36: 835–842.
  • HOSHINO, S., WAKITI, M., SUZUKI, M. and YAMAMOTO, K. (1980). Effect of fasting on the levels of glucose, free fatty acids, growth hormone and somatomedin in the serum, and on the pituitary function of the chicken. Japanese Poultry Science 17: 329–335.
  • HOSODA, T., KANEKO, T., MOGI, K. and ABE, T. (1955). Effect of gonadotropic hormone on ovarian follicles and serum vitellin of fasting hens. Proceedings of the society for experimental biology and medicine 88: 502–504.
  • HURWITZ, S., BORSTEIN, S. and LEY, Y. (1975). Some response of laying hens to induced arrest of egg production. Poultry Science 54: 415–422.
  • HUYGHEBAERT, G., FONTAINE, G. and DE GROOTE, G. (1977). Vergelijkende studie van enkele kunstmatige ruimethoden bij W.L.-hennen. Landbouwtijdschrift 4: 958–977.
  • ISHIGAKI, R., EBISAWA, S., FUTAMURA. K. and YAMADA, Y. (1973). Forced molting in pullets and its effect on subsequent egg production in layers. Japanese Poultry Science 10: 12–17.
  • JOHNSON, A. L. and VAN TIENHOVEN, A. (1981). Pharmacokinetics of progesterone in laying and non-laying Hens (Gallus domesticus). Journal of Endocrinology 89: 1–12.
  • JUHN, M. and HARRIS, P. C. (1956). Responses in molt and lay of fowl to progestins and gonadotrophins. Proceedings of the society for experimental biology and medicine 92: 709–711.
  • JUHN, M. and HARRIS, P. C. (1958). Molt of capon feathering with prolactin. Proceedings of the society of experimental biology and medicine 9811: 669–672.
  • KOBAYASHI, H., MARUYAMA, K. and KAMBARA, S. (1955). Effect of thyroxine on the phosphatase activity of the pigeon skin. Endocrinology 57: 129–133.
  • KRUEGER, W. F., BRADLEY, J. W., ATKINSON, R. L. and THOMPSON, D. (1977). Factors influencing forced molting of commercial layers. Poultry Science 56: 2053–2054.
  • LEE, K., HOLIDAY, O. R. and PETTY, C. E. (1980). Effect of forced molt and rest on egg production, feed efficiency, and mortality of single comb White Leghorn hens. Poultry Science 59: 1566.
  • LUCK, M. R. and SCANES, C. G. (1978). Gonadotrophin secretion in the domestic fowl during calcium deficiency. General and Comparative Endocrinology 34: 80–81.
  • LUCK, M. R. and SCANES, C. G. (1979a). Plasma levels of ionized calcium in the laying hen (Gallus domesticus). Comparative Biochemistry and Biophysiology 63A: 177–181.
  • LUCK, M. R. and SCANES, C. G. (1979b). The relationship between reproductive activity and blood calcium in the calcium-deficient hen. British Poultry Science 20: 559–564.
  • LUCK, M. R. and SCANES, C. G. (1980). Ionic and endocrine factors influencing the secretion of Luteinizing Hormone by Chicken anterior pituitary cells in vitro. General and Comparative Endocrinology 41: 260–265.
  • LUCK, M. R. and SCANES, C. G. (1982). Calcium-homeostasis and the control of ovulation. Aspects of Avian Endocrinology: Practical and theoretical implications. Grad. Studies, Texas Techn. University 26: 1–411.
  • LUMIJARVI, D. H., KOIKE, T. I. and HILL, F. W. (1966). Effects of Na deficiency in the chick on water intake and fluid volumes, plasma electrolytes and plasma osmolality. Poultry Science 45: 1100–1101.
  • McCORMICK, C. C. and CUNNINGHAM, D. L. (1984). Forced resting by high dietary zinc: tissue zinc accumulation and reproductive organ weight changes. Poultry Science 63: 1207–1212.
  • MARTIN, G. A., MORRIS, T. B., GEHLE, M. H. and HARWOOD, D. H. (1973). Force-molting by limiting calcium intake. Poultry Science 52: 2058.
  • MILLAM, J. R. and MEYERDICK, C. F. (1983). Prolactin and luteinizing hormone levels during a forced molt in laying hens. Poultry Science Association, annual meeting.
  • MONSI, A. and ENOS, H. L. (1977). The effects of low dietary salt on egg production. Poultry Science 56: 1373–1380.
  • MORRIS, T. R. and NALBANDOV, A. V. (1961). The induction of ovulation in starving pullets using mammalian and avian gonadotrophins. Endocrinology 68: 687–697.
  • NESBETH, W. G., DOUGLAS, C. R. and HARMS, R. H. (1976). The potential use of dietary salt deficiency for the force resting of laying hens. Poultry Science 55: 2375–2379.
  • NEVALAINEN, T. J. (1969). The effect of calcium-deficient diet on the reproductive organs of the hen. Poultry Science 48: 653–659.
  • NOLES, R. K. (1966). Subsequent production and egg quality of forced molted hens. Poultry Science 45: 50–57.
  • NOVIKOC, B. G. and GARMATINA, S. M. (1982). The neurohormonal mechanisms of forced molt in chickens. Zootechnica International, February: 34–35.
  • OPEL, N., McGUIRE, and ARCOS, M. (1976). Physiological observations on recycling Turkey hens. Poultry Science 55: 2074–2075.
  • PALAFOX, A. L. and HO-A, E. (1980). Effect of zinc toxicity in laying White Leghorn pullets and hens. Poultry Science 59: 2024–2028.
  • PAYNE, R. B. (1972). Mechanisms and control of molt. In “Avian Biology” vol. II, 104–146. Ed. by Farner and King, Academic Press, New York.
  • PEREK, M., ECKSTEIN, B. and SOBEL, H. (1957). Histological observations on the anterior lobe of the pituitary gland in molting and laying hens. Poultry Science 36: 954–958.
  • PETHES, G. Y., SZELENYI, Z. and PÉCZELY, P. (1982). Changes in the plasma concentrations of thyroid hormones and sexual steroids during forced molt of male and female domestic chickens. Acta Veterinaria Academiae Scientiarum Hungaricae 30: 193–201.
  • PETHES, G. Y., PÉCZELY, P. and SZELENYI, Z. (1983). Changes in the concentration of plasma corticosterone in fowls during forced molt. Magyar Allatorvasok Lapja 38: 289–291.
  • PINO, J. A. (1955). Force molting (Interruption of egg laying) in White Leghorn hens by the use of enheptin (2-amino, 5-Nitrothiazole). Poultry Science 34: 540–543.
  • ROBERSON, R. H. and SCHAIBLE, P. J. (1960). The tolerance of growing chicks for high levels of different forms of zinc. Poultry Science 39: 893–896.
  • ROSS, E. and HERRICK, R. B. (1981). Forced rest induced by molt or low-salt diet and subsequent hen performance. Poultry Science 60: 63–67.
  • SCANES, C. G., SHARP, P. J., HARVEY, S., GODDEN, P. M. M., CHADWICK, A. and NEWCOMER, W. S. (1979). Variations in plasma prolactin, thyroid hormones, gonadal steroids and growth hormone in turkeys during the induction of egg laying and molt by different photoperiods. British Poultry Science 20: 143–148.
  • SCOTT, J. T., CREGER, C. R., LINTON, S. S. and FARR, F. M. (1976). Moulting the White Leghorn laying hen with zinc. Texas Nutritional Conference 1976.
  • SHAFFNER, C. S. (1955). Progesterone induced molt. Poultry Science 34: 840–842.
  • SHIPPEE, R. L., STAKE, P. E., KOEHN, U., LAMBERT, J. L. and SIMMONS, R. W. (1979). High dietary zinc or magnesium as forced-resting agents for laying hens. Poultry Science 58: 949–954.
  • SIEGEL, H. S. (1961). Effect of level of dietary salt on the histology of the adrenal and kidney of young chickens. Poultry Science 40: 1455–1456.
  • SMITH, A. H., BOND, G. H., RAMSEY, K. W., RECK, D. G. and SPOON, J. E. (1957). Size and rate of involution of the hen's reproductive organs. Poultry Science 36: 346–353.
  • STAKE, P. E., FREDERICKSON, T. N., OKULICZ, W., SHIPPEE, R. L. and FOURNIER, D. J. (1979). Tamoxifen induced forced-rest molt in laying hens. Poultry Science 58: 1111.
  • SUMMERS, J. D. and LEESON, S. (1977). Sequential effects of restricted feeding and force-molting on laying hen performance Poultry Science 56: 600–604.
  • SWANSON, M. H., BELL, D. D. and KUNEY, D. R. (1978). Effects of water restriction and feed withdrawal time on forced molt performance. Poultry Science 57: 1166.
  • TANABE, Y., HIMENO, K. and NOZAKI, H. (1957). Thyroid and ovarian function in relation to molting in the hen. Endocrinology 61: 661–666.
  • TANABE, Y., OGAWA, T. and NAKAMURA, T. (1981). The effect of short-term starvation on pituitary and plasma LH, plasma estradiol and progesterone, and on pituitary response to LH-RH in the laying hen (Gallus domesticus). General and comparative endocrinology 43: 392–398.
  • TAYLOR, T. G. (1965). Ca-endocrine relationships in the laying hens. Proceedings of the nutrition society 24: 49–54.
  • TAYLOR, T. G. (1970). How an eggshell is made. In “Birds”, Readings from Scientific American. W. H. Freeman & Company.
  • VAN REEN, (1953). Effect of excessive dietary zinc in the rat and the interrelationship with copper. Archives of Biochemistry 46: 337–344.
  • VAN TIENHOVEN, A. (1981). Neuroendocrinology of avian reproduction, with special emphasis on the reproductive cycle of the fowl (Gallus domesticus). World's Poultry Science Journal 37: 156–176.
  • VERHEYEN, G., DECUYPERE, E., KÜHN, E. R., FONTAINE, G. and DE GROOTE, G. (1983a). Arrêt de la ponte par induction chez la poult. Effet de différentes méthodes sur certains paramètres de production et sur les concentrations en hormones thyroidiennes, en prolactine, en Ca, P, Na et en protéines dans le sérum sanguin. Revue de l'Agriculture 36: 1535–1559.
  • VERHEYEN, G., HERREMANS, M., DECUYPERE, E. and KÜHN, E. R. (1983b). Influence of thyroxine and triiodothyronine injections on egg laying stop and molt in hens. Annales de la Société royale Zoologique de Belgique 113 (suppl. 1): 319–326.
  • VERHEYEN, G., DECUYPERE, E. and KÜHN, E. R. (1984). Dissociation of the role of thyroxine and triiodothyronine in relation to egg laying arrest and molt in hens. General and comparative endocrinology 53: 499A.
  • WHITEHEAD, C. C. and SHANNON, D. W. F. (1974). The control of egg production using a low-sodium diet. British Poultry Science 15: 429–434.
  • WHITEHEAD, C. C. and SHARP, P. J. (1976). An assessment of the optimal range of dietary sodium for inducing a pause in laying British Poultry Science 17: 601–611.
  • ZAWADOWSKY, B. M. (1925). The effect of feeding fowl on thyroid gland. Endocrinology 9: 125–136.

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