Metabolic theories in ecology
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[1] Sebastiaan A.L.M. Kooijman,et al. Existence and Stability of Microbial Prey-Predator Systems , 1994 .
[2] James H. Brown,et al. Effects of Size and Temperature on Metabolic Rate , 2001, Science.
[3] F. David,et al. On the Dynamics of Exploited Fish Populations , 1959, Fish & Fisheries Series.
[4] S. Kooijman,et al. What the hen can tell about her eggs: egg development on the basis of energy budgets , 1986, Journal of mathematical biology.
[5] Jan Kozłowski,et al. Is West, Brown and Enquist's model of allometric scaling mathematically correct and biologically relevant? , 2004 .
[6] R. Sterner. A ONE‐RESOURCE “STOICHIOMETRY”? , 2004 .
[7] Bai-lian Li,et al. Ontogenetic growth: models and theory , 2004 .
[8] H. Cyr,et al. AN ILLUSION OF MECHANISTIC UNDERSTANDING , 2004 .
[9] Sebastiaan A.L.M. Kooijman,et al. Dynamic energy budgets in biological systems , 1993 .
[10] M. Murphy. Nutrition and Metabolism , 1996 .
[11] J. Elser,et al. Ecological Stoichiometry: The Biology of Elements from Molecules to the Biosphere , 2002 .
[12] Allometric scaling in animals and plants , 2001, Journal of mathematical biology.
[13] Thomas R Anderson,et al. Stoichiometry and food-chain dynamics. , 2004, Theoretical population biology.
[14] P. Marquet,et al. METABOLIC ECOLOGY: LINKING INDIVIDUALS TO ECOSYSTEMS , 2004 .
[15] Samuel Glasstone,et al. The Theory Of Rate Processes , 1941 .
[16] James H. Brown,et al. Toward a metabolic theory of ecology , 2004 .
[17] Kenneth Blaxter,et al. Energy Metabolism in Animals and Man , 1989 .
[18] M. Kleiber. Body size and metabolic rate. , 1947, Physiological reviews.
[19] J. Weitz,et al. Re-examination of the "3/4-law" of metabolism. , 2000, Journal of theoretical biology.
[20] R. Peters. The Ecological Implications of Body Size , 1983 .
[21] Max Kleiber,et al. The Fire of Life: An Introduction to Animal Energetics , 1975 .
[22] M. Kleiber. Body size and metabolism , 1932 .
[23] Sebastiaan A.L.M. Kooijman,et al. Energy budgets can explain body size relations , 1986 .
[24] S. Kooijman,et al. Comparative kinetics of embryo development. , 1993, Bulletin of mathematical biology.
[25] James H. Brown,et al. The origin of allometric scaling laws in biology from genomes to ecosystems: towards a quantitative unifying theory of biological structure and organization , 2005, Journal of Experimental Biology.
[26] Sebastiaan A.L.M. Kooijman,et al. Dynamic Energy and Mass Budgets in Biological Systems , 2000 .
[27] A. Clarke,et al. Costs and consequences of evolutionary temperature adaptation. , 2003 .
[28] Thomas R. Anderson,et al. C and N gross growth efficiencies of copepod egg production studied using a Dynamic Energy Budget model , 2004 .
[29] R. Beverton,et al. On the dynamics of exploited fish populations , 1993, Reviews in Fish Biology and Fisheries.
[30] Amos Maritan,et al. Size and form in efficient transportation networks , 1999, Nature.
[31] S. Kooijman,et al. Application of a Dynamic Energy Budget Model to Lymnaea stagnalis (L.) , 1989 .
[32] C. Carey. Avian Energetics and Nutritional Ecology , 1996, Springer US.
[33] Sebastiaan A.L.M. Kooijman,et al. Application of a dynamic energy budget model to Mytilus edulis (L.) , 1993 .
[34] James H. Brown,et al. A general model for ontogenetic growth , 2001, Nature.
[35] Sebastiaan A.L.M. Kooijman,et al. BODY TEMPERATURE AFFECTS THE SHAPE OF AVIAN GROWTH CURVES , 1993 .
[36] R. Nisbet,et al. Survival and production in variable resource environments , 2000, Bulletin of mathematical biology.
[37] A. Clarke. Is there a Universal Temperature Dependence of metabolism , 2004 .
[38] O Dreyer,et al. Allometric scaling and central source systems. , 2001, Physical review letters.
[39] Geoffrey B. West,et al. The predominance of quarter-power scaling in biology , 2004 .
[40] S.A.L.M. Koojiman,et al. The Stoichiometry of Animal Energetics , 1995 .
[41] J. Elser,et al. FUNDAMENTAL CONNECTIONS AMONG ORGANISM C:N:P STOICHIOMETRY, MACROMOLECULAR COMPOSITION, AND GROWTH , 2004 .
[42] O. Diekmann,et al. The Dynamics of Physiologically Structured Populations , 1986 .
[43] Geoffrey B. West,et al. Yes, West, Brown and Enquist"s model of allometric scaling is both mathematically correct and biologically relevant , 2005 .
[44] J. Harte. THE VALUE OF NULL THEORIES IN ECOLOGY , 2004 .
[45] Andrea Rinaldo,et al. Supply–demand balance and metabolic scaling , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[46] J. Kozłowski,et al. West, Brown and Enquist's model of allometric scaling again: the same questions remain , 2005 .
[47] James H. Brown,et al. Growth models based on first principles or phenomenology , 2004 .
[48] James H. Brown,et al. A General Model for the Origin of Allometric Scaling Laws in Biology , 1997, Science.