Utilisation de modèles linéaires généralisés pour évaluer les stratégies de pêche thonière à la senne en présence d'espèces associées dans l'Atlantique ouest
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Daniel Gaertner | Mauricio Pagavino | Jesus Marcano | D. Gaertner | Mauricio Pagavino | Jesús Marcano
[1] David R. Anderson,et al. Data-Based Selection of an Appropriate Biological Model: The Key to Modern Data Analysis , 1992 .
[2] D. Heisey,et al. Use of a Log‐Linear Model with the EM Algorithm to Correct Estimates of Stock Composition and to Convert Length to Age , 1987 .
[3] P. Richardson,et al. North Brazil Current retroflection eddies , 1994 .
[4] A. DeMaris,et al. A framework for the interpretation of first-order interaction in logit modeling. , 1991, Psychological bulletin.
[5] R. E. Green. Relationship of the thermocline to success of purse seining for tuna , 1967 .
[6] Francis Laloë,et al. A simulation model of artisanal fisheries of Senegal , 1991 .
[7] F. Muller‐Karger,et al. The dispersal of the Amazon's water , 1988, Nature.
[8] R. Tomassone,et al. Discrimination et classement , 1988 .
[9] A. Agresti. Categorical data analysis , 1993 .
[10] B. Stéquert,et al. La pêche de surface des thonidés tropicaux dans l'Océan Indien , 1986 .
[11] James J. Opaluch,et al. Behavioral Modeling and Fisheries Management , 1984, Marine Resource Economics.
[12] Peter J. Allen,et al. Dynamics of discovery and exploitation: the case of the Scotian Shelf groundfish fisheries. , 1986 .
[13] J. K. Benedetti,et al. Strategies for the selection of log-linear models. , 1978, Biometrics.
[14] Murray Aitkin,et al. A Note on the Selection of Log-Linear Models , 1980 .
[15] A. DeMaris,et al. Interpreting Logistic Regression Results: A Critical Commentary , 1990 .
[16] Ray Hilborn,et al. Determinants of Catching Power in the British Columbia Salmon Purse Seine Fleet , 1985 .
[17] D. Demaster,et al. An Updated World Review of Interactions between Marine Mammals and Fisheries , 1992 .
[18] Jean-Michel Stretta,et al. Analyse des facteurs biotiques et abiotiques associés aux bancs de thons , 1986 .
[19] N. Draper,et al. Applied Regression Analysis , 1966 .
[20] R. Evans,et al. Atlantic Skipjack Tuna: Influences of Mean Environmental Conditions on Their Vulnerability to Surface Fishing Gear , 1981 .
[21] David B. Sampson,et al. Fishing tactics and fish abundance, and their influence on catch rates , 1991 .
[22] J. Whittaker,et al. A Flexible Strategy for Fitting Complex Log-Linear Models , 1978 .
[23] David R. Anderson,et al. Modeling Survival and Testing Biological Hypotheses Using Marked Animals: A Unified Approach with Case Studies , 1992 .
[24] J. Hampton,et al. FISHING FOR TUNAS ASSOCIATED WITH FLOATING OBJECTS: A REVIEW OF THE WESTERN PACIFIC FISHERY , 1993 .
[25] P. Cayré,et al. Biologie des thons , 1988 .
[26] F. Muller‐Karger,et al. Pigment distribution in the Caribbean sea: Observations from space , 1989 .
[27] J. Ferraris. Démarche méthodologique pour l'analyse des comportements tactiques et stratégiques des pêcheurs artisans sénégalais , 1995 .
[28] L. Lebart,et al. Statistique exploratoire multidimensionnelle , 1995 .
[29] S. T. Buckland,et al. Estimating trends in abundance of dolphins associated with tuna in the eastern tropical Pacific Ocean, using sightings data collected on commercial tuna vessels , 1992 .
[30] P. Prouzet,et al. Caractérisation biologique et variation des captures de la grande alose (Alosa alosa) par unité d'effort sur le fleuve Adour (Pyrénées Atlantiques, France) , 1994 .
[31] P. McCullagh,et al. Generalized Linear Models , 1984 .