Bibliographie
53
BOULINEAU-COATANEA, F. (1969). Régime alimentaire du bar Dicentrarchus
Labrax L. sur la côte atlantique bretonne. Bulletin du muséum national d’histoire
naturelle. N°41, p. 1106-1122.
BRAASTAD, B., KATLE, J. (1989). Behavioural differences between laying hen
populations selected for high and low efficiency of food utilisation. Poultry science.
N°30, p. 533-544.
BULLE, F., PAULINO, P., SANCHES, A. et al. (2007). Growth, carcass quality, et
protein et energy metabolism in beef cattle with different growth potentials et residual
feed intakes. Animal science. N°85, p. 928-936.
BULMER, M. G., BULLl, J. (1982). Models of polygenic sex determination and sex
ratio control. Evolution. N° 36, p. 13-26.
BUREAU, D.P., AZEVEDO, P.A., TAPIA-SALAZAR, M. et al. (2000). Pattern and
cost of growth and nutrient deposition in fish and shrimp: potential implications and
applications. In : CRUZ-SUAREZ, L.E. Yacutan. Mexico: Mérida, p. 108-109.
CERQUEIRA, V.R. (1986). L’élevage larvaire intensif du loup Dicentrarchus labrax,
Influence de la lumière, de la densité en proies et de la température sur l’aluminium, sur
le transit digestif et sur les performances zootechniques. Thèse de doctorat.
Océanographie biologique. France : Université d’Aix-Marseille II, 205 p.
CHATAIN, B. (1994). Estimation et amélioration des performances zootechniques de
l’élevage larvaire de Dicentrarchus labrax et de Sparus auratus. Thèse de Doctorat.
Science. France : Université d’Aix-Marseille II, 169 p.
CHAPMAN, B.B., MORRELL, L.J., KRAUSE, J. (2010). Unpredictability in food
supply during early life influences boldness in fish. Behavioral Ecology. N°2, p. 501-506.
CHO, C. Y. (1992). Feeding Systems for Rainbow-Trout and Other Salmonids with
Reference to Current Estimates of Energy and Protein-Requirements. Aquaculture.
N°100, p. 107-123.
CHO, C. Y., BUREAU, D.P. (1997). Reduction of waste output from salmonid
aquaculture. Through feeds and feeding. Progressive fish-culturist. N°59, p. 155-160 .
CHO, C. Y., BUREAU, D.P. (1998). Development of bioenergetic models and the
Fish-PRFEQsoftware to estimate production, feeding ration and waste output in
aquaculture. Aquatic living resources. N°11, p. 199-210.
53
BOULINEAU-COATANEA, F. (1969). Régime alimentaire du bar Dicentrarchus
Labrax L. sur la côte atlantique bretonne. Bulletin du muséum national d’histoire
naturelle. N°41, p. 1106-1122.
BRAASTAD, B., KATLE, J. (1989). Behavioural differences between laying hen
populations selected for high and low efficiency of food utilisation. Poultry science.
N°30, p. 533-544.
BULLE, F., PAULINO, P., SANCHES, A. et al. (2007). Growth, carcass quality, et
protein et energy metabolism in beef cattle with different growth potentials et residual
feed intakes. Animal science. N°85, p. 928-936.
BULMER, M. G., BULLl, J. (1982). Models of polygenic sex determination and sex
ratio control. Evolution. N° 36, p. 13-26.
BUREAU, D.P., AZEVEDO, P.A., TAPIA-SALAZAR, M. et al. (2000). Pattern and
cost of growth and nutrient deposition in fish and shrimp: potential implications and
applications. In : CRUZ-SUAREZ, L.E. Yacutan. Mexico: Mérida, p. 108-109.
CERQUEIRA, V.R. (1986). L’élevage larvaire intensif du loup Dicentrarchus labrax,
Influence de la lumière, de la densité en proies et de la température sur l’aluminium, sur
le transit digestif et sur les performances zootechniques. Thèse de doctorat.
Océanographie biologique. France : Université d’Aix-Marseille II, 205 p.
CHATAIN, B. (1994). Estimation et amélioration des performances zootechniques de
l’élevage larvaire de Dicentrarchus labrax et de Sparus auratus. Thèse de Doctorat.
Science. France : Université d’Aix-Marseille II, 169 p.
CHAPMAN, B.B., MORRELL, L.J., KRAUSE, J. (2010). Unpredictability in food
supply during early life influences boldness in fish. Behavioral Ecology. N°2, p. 501-506.
CHO, C. Y. (1992). Feeding Systems for Rainbow-Trout and Other Salmonids with
Reference to Current Estimates of Energy and Protein-Requirements. Aquaculture.
N°100, p. 107-123.
CHO, C. Y., BUREAU, D.P. (1997). Reduction of waste output from salmonid
aquaculture. Through feeds and feeding. Progressive fish-culturist. N°59, p. 155-160 .
CHO, C. Y., BUREAU, D.P. (1998). Development of bioenergetic models and the
Fish-PRFEQsoftware to estimate production, feeding ration and waste output in
aquaculture. Aquatic living resources. N°11, p. 199-210.
