INDIVIDUAL VARIABILITY AND SPATIAL HETEROGENEITY IN FISH POPULATION-MODELS

被引:127
作者
TYLER, JA
ROSE, KA
机构
[1] Environmental Sciences Division, Oak Ridge National Laboratory, Oak Ridge, 37831, TN, P.O. Box 2008
关键词
D O I
10.1007/BF00043262
中图分类号
S9 [水产、渔业];
学科分类号
0908 ;
摘要
Fish populations consist of non-identical individuals inhabiting heterogeneous environments and moving about the environment in a manner that maximizes their individual fitness. No study has fully integrated these characteristics of fish populations into a single model. In this paper we propose a new class of model that includes each characteristic in a unified description of populations. To lay the foundation for these models we review models concerning (1) population dynamics in heterogeneous environments, (2) the effects of individual variability on population dynamics, and (3) individual movement and habitat selection rules. The models that we propose allow investigators to explore the population-level consequences of novel changes in the environment, and of different individual fitness maximization strategies. The strengths of our proposed class of model lie in their mechanistic, individual-level description of fish growth, movement and survival. Correctly depicting these mechanisms presents important challenges in developing such models. Despite these challenges, mechanistic models like those we propose should greatly increase our understanding of the interaction between environmental heterogeneity and fish population dynamics and distributions. © 1994 Chapman & Hall.
引用
收藏
页码:91 / 123
页数:33
相关论文
共 154 条
[21]  
2
[22]   POTENTIAL IMPORTANCE OF SPATIAL AND TEMPORAL HETEROGENEITY IN PH, AL, AND CA IN ALLOWING SURVIVAL OF A FISH POPULATION - A MODEL DEMONSTRATION [J].
BRECK, JE ;
DEANGELIS, DL ;
VANWINKLE, W ;
CHRISTENSEN, SW .
ECOLOGICAL MODELLING, 1988, 41 (1-2) :1-16
[23]   BUFFER EFFECT AND PRODUCTIVITY IN TIT POPULATIONS [J].
BROWN, JL .
AMERICAN NATURALIST, 1969, 103 (932) :347-&
[24]  
BRUGERT RM, 1991, T AM FISH SOC, V120, P486
[25]   RANDOM SEARCH BY HERBIVOROUS INSECTS - A SIMULATION-MODEL [J].
CAIN, ML .
ECOLOGY, 1985, 66 (03) :876-888
[26]   AN EMPIRICAL DEMONSTRATION OF RISK-SENSITIVE FORAGING PREFERENCES [J].
CARACO, T ;
MARTINDALE, S ;
WHITTAM, TS .
ANIMAL BEHAVIOUR, 1980, 28 (AUG) :820-830
[27]   RISK-SENSITIVITY - AMBIENT-TEMPERATURE AFFECTS FORAGING CHOICE [J].
CARACO, T ;
BLANCKENHORN, WU ;
GREGORY, GM ;
NEWMAN, JA ;
RECER, GM ;
ZWICKER, SM .
ANIMAL BEHAVIOUR, 1990, 39 :338-345
[28]  
CEZILLY F, 1991, ACTA OECOL, V12, P683
[29]   OPTIMAL FORAGING, MARGINAL VALUE THEOREM [J].
CHARNOV, EL .
THEORETICAL POPULATION BIOLOGY, 1976, 9 (02) :129-136
[30]  
CHRISTENSEN SW, 1988, AM FISH SOC MONOGR, V4, P133