Pyramids and cascades: a synthesis of food chain functioning and stability
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[1] S. Jennings,et al. Measurement of body size and abundance in tests of macroecological and food web theory. , 2007, The Journal of animal ecology.
[2] M. Rosenzweig. Paradox of Enrichment: Destabilization of Exploitation Ecosystems in Ecological Time , 1971, Science.
[3] Guy Bunin,et al. Generic assembly patterns in complex ecological communities , 2018, Proceedings of the National Academy of Sciences.
[4] Jonathan M. Chase,et al. Species Turnover and the Regulation of Trophic Structure , 1997 .
[5] R. Arditi,et al. Coupling in predator-prey dynamics: Ratio-Dependence , 1989 .
[6] J. Beddington,et al. Mutual Interference Between Parasites or Predators and its Effect on Searching Efficiency , 1975 .
[7] J. Fox. The dynamics of top‐down and bottom‐up effects in food webs of varying prey diversity, composition, and productivity , 2007 .
[8] A. J. Lotka. Elements of mathematical biology , 1956 .
[9] B. Worm,et al. META-ANALYSIS OF COD-SHRIMP INTERACTIONS REVEALS TOP-DOWN CONTROL IN OCEANIC FOOD WEBS , 2003 .
[10] Neo D. Martinez,et al. Allometric scaling enhances stability in complex food webs. , 2006, Ecology letters.
[11] Martin Edwards,et al. From plankton to top predators: bottom-up control of a marine food web across four trophic levels. , 2006, The Journal of animal ecology.
[12] Donald L. DeAngelis,et al. A Model for Tropic Interaction , 1975 .
[13] Helmut Hillebrand,et al. All wet or dried up? Real differences between aquatic and terrestrial food webs , 2006, Proceedings of the Royal Society B: Biological Sciences.
[14] Dynamical structure of energy trophic levels , 1993 .
[15] P. Lundberg,et al. Trophic and individual efficiencies of size-structured communities , 2009, Proceedings of the Royal Society B: Biological Sciences.
[16] K. McCann,et al. Cross-ecosystem differences in stability and the principle of energy flux. , 2011, Ecology letters.
[17] D. Pauly,et al. Primary production required to sustain global fisheries , 1995, Nature.
[18] K. Andersen,et al. The theoretical foundations for size spectrum models of fish communities , 2016 .
[19] V. Volterra. Variations and Fluctuations of the Number of Individuals in Animal Species living together , 1928 .
[20] S. D. Cooper,et al. WHAT DETERMINES THE STRENGTH OF A TROPHIC CASCADE , 2005 .
[21] Kevin S. McCann,et al. Biological Conditions for Chaos in a Three‐Species Food Chain , 1994 .
[22] Joseph W.-H. So,et al. Global stability and persistence of simple food chains , 1985 .
[23] Taksu Cheon,et al. Evolutionary stability of ecological hierarchy. , 2003, Physical review letters.
[24] M. Loreau,et al. Subsidy hypothesis and strength of trophic cascades across ecosystems. , 2008, Ecology letters.
[25] Wolfgang Walter,et al. Solution of the stability problem for a class of generalized volterra prey-predator systems☆ , 1984 .
[26] K. McCann. Food Webs (MPB-50) , 2011 .
[27] G. Barabás,et al. Self-regulation and the stability of large ecological networks , 2017, Nature Ecology & Evolution.
[28] Matteo Smerlak,et al. The predator-prey power law: Biomass scaling across terrestrial and aquatic biomes , 2015, Science.
[29] Elizabeth T. Borer,et al. A cross-ecosystem comparison of the strength of trophic cascades , 2002 .
[30] Raymond L. Lindeman. The trophic-dynamic aspect of ecology , 1942 .
[31] Kenneth G. Gerow,et al. Introduced Lake Trout Produced a Four-Level Trophic Cascade in Yellowstone Lake , 2010 .
[32] S. Fretwell. Food chain dynamics: the central theory of ecology? , 1987 .
[33] E. Lindquist,et al. Taxonomic Concepts in the Ascidae, with a Modified Setal Nomenclature for the Idiosoma of the Gamasina (Acarina: Mesostigmata) , 1965 .
[34] S. McNaughton,et al. Ecosystem-level patterns of primary productivity and herbivory in terrestrial habitats , 1989, Nature.
[35] J. Shurin,et al. The strength of trophic cascades across ecosystems: predictions from allometry and energetics , 2005 .
[36] Jean-François Arnoldi,et al. Unifying dynamical and structural stability of equilibria , 2016, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[37] J. E. Marsden,et al. Transactions of the American Fisheries Society , 2013 .
[38] J. Herskowitz,et al. Proceedings of the National Academy of Sciences, USA , 1996, Current Biology.
[39] Nicholas K Dulvy,et al. Ecosystem ecology: size-based constraints on the pyramids of life. , 2013, Trends in ecology & evolution.
[40] Donald R. Strong,et al. ARE TROPHIC CASCADES ALL WET? DIFFERENTIATION AND DONOR-CONTROL IN SPECIOSE ECOSYSTEMS' , 1992 .
[41] C. Duarte,et al. The dependence of herbivory on growth rate in natural plant communities , 1994 .
[42] C. R. White,et al. Mammalian basal metabolic rate is proportional to body mass2/3 , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[43] Brian D. Fath,et al. The relevance of ecological pyramids in community assemblages , 2007 .
[44] H. Welch. Relationships between Assimiliation Efficiencies and Growth Efficiencies for Aquatic Consumers , 1968 .
[45] Chase. Are there real differences among aquatic and terrestrial food webs? , 2000, Trends in ecology & evolution.
[46] Werner Ulrich,et al. Consumer-resource body-size relationships in natural food webs. , 2006, Ecology.
[47] P. W. Frank,et al. Annual Review of Ecology and Systematics , 1971 .
[48] Douglas S. Glazier,et al. Metabolic level and size scaling of rates of respiration and growth in unicellular organisms , 2009 .
[49] Steven L. Chown,et al. Mean mass-specific metabolic rates are strikingly similar across life's major domains: Evidence for life's metabolic optimum , 2008, Proceedings of the National Academy of Sciences.
[50] L. Slobodkin,et al. Community Structure, Population Control, and Competition , 1960, The American Naturalist.
[51] T. Jonsson. Conditions for Eltonian Pyramids in Lotka-Volterra Food Chains , 2017, Scientific Reports.
[52] H. Cyr,et al. Magnitude and patterns of herbivory in aquatic and terrestrial ecosystems , 1993, Nature.
[53] Sean C. Anderson,et al. The paradox of inverted biomass pyramids in kelp forest fish communities , 2016, Proceedings of the Royal Society B: Biological Sciences.
[54] M. Loreau,et al. How ecosystems recover from pulse perturbations: A theory of short- to long-term responses. , 2018, Journal of theoretical biology.
[55] C. Elton,et al. The Journal of Animal Ecology. , 1936 .
[56] Michel Loreau,et al. From Populations to Ecosystems: Theoretical Foundations for a New Ecological Synthesis , 2010 .
[57] Zhou Zhiming,et al. Global asymptotic stability for a class of many-variable volterra prey-predator systems☆ , 1981 .
[58] M. Power,et al. TOP-DOWN AND BOTTOM-UP FORCES IN FOOD WEBS: DO PLANTS HAVE PRIMACY? , 1992 .
[59] Owen L. Petchey,et al. Interaction strengths in food webs: issues and opportunities , 2004 .
[60] Chris Mungall,et al. Global biotic interactions: An open infrastructure to share and analyze species-interaction datasets , 2014, Ecol. Informatics.
[61] G. G. Stokes. "J." , 1890, The New Yale Book of Quotations.
[62] S. Joye,et al. A unifying theory for top-heavy ecosystem structure in the ocean , 2018, Nature Communications.
[63] Cole,et al. Trophic cascades revealed in diverse ecosystems. , 1999, Trends in ecology & evolution.
[64] Michio Kondoh,et al. Density-dependent interspecific interactions and the complexity–stability relationship , 2018, Proceedings of the Royal Society B: Biological Sciences.
[65] M. Loreau,et al. Stability trophic cascades in food chains , 2018, Royal Society Open Science.
[66] K. Banse,et al. Adult Body Mass and Annual Production/Biomass Relationships of Field Populations , 1980 .
[67] Micheli,et al. Eutrophication, Fisheries, and Consumer-Resource Dynamics in Marine Pelagic Ecosystems. , 1999, Science.
[68] U. Borgmann. Models on the Slope of, and Biomass Flow up, the Biomass Size Spectrum , 1987 .
[69] C. P. Madenjian,et al. Estimate of Net Trophic Transfer Efficiency of PCBs to Lake Michigan Lake Trout from Their Prey , 1998 .
[70] M. Loreau,et al. Resilience, reactivity and variability: A mathematical comparison of ecological stability measures. , 2015, Journal of theoretical biology.
[71] O. Schmitz,et al. Trophic Cascades in Terrestrial Systems: A Review of the Effects of Carnivore Removals on Plants , 2000, The American Naturalist.
[72] Charles C. Elton. Animal Ecology , 1927, Nature.
[73] J. Mazet,et al. Southern Sea Otter as a Sentinel of Marine Ecosystem Health , 2004, EcoHealth.