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Nyssen, F., Brey, T., Lepoint, G., Bouquegneau, J.M., De Broyer, C., and Dauby, P.
(2002). A stable isotope approach to the eastern Weddell Sea trophic web: Focus on
benthic amphipods. Polar Biol. 25 , 280-287.
O'Gorman, E.J., Jacob, U., Jonsson, T., and Emmerson, M.C. (2010). Interaction
strength, food web topology and the relative importance of species in food webs.
J. Anim. Ecol. 79 , 682-692.
O'Gorman, E.J., and Emmerson, M.C. (2010). Manipulating interaction strengths and
the consequences for trivariate patterns in a marine food web. Adv. Ecol. Res. 42 ,
301-419.
Orejas, C. (2001). Role of benthic cnidarians in energy transfer processes in the
Southern Ocean marine ecosystem (Antarctica). Rep. Polar Res. 395, 186 pp.
Otto, S., Rall, B.C., and Brose, U. (2007). Allometric degree distributions facilitate
food web stability. Nature 450 , 1226-1229.
Pauly, D., Christensen, V., Dalsgaard, J., Froese, R., and Torres, F., Jr. (1998).
Fishing down marine food webs. Science 279 , 860-863.
Petchey, O.L., and Gaston, K.J. (2006). Functional diversity: Back to basics and
looking forward. Ecol. Lett. 9 , 741-758.
Petchey, O.L., Downing, A.L., Mittelbach, G.G., Persson, L., Steiner, C.F., and
Warren, P.H. (2004a). Species loss and the structure and functioning of
multitrophic aquatic ecosystems. Oikos 104 , 467-478.
Petchey, O.L., Hector, A., and Gaston, K.J. (2004b). How do different measures of
functional diversity perform? Ecology 85 , 847-857.
Petchey, O.L., Ekl¨ f, A., Borrvall, C., and Ebenman, B. (2008). Trophically unique
species are vulnerable to cascading extinction. Am. Nat. 171 , 568-579.
Peters, R.H. (1983). The Ecological Implications of Body Size. Cambridge University
Press, New York, NY, USA.
Pimm, S.L. (1982). Food Webs. Chapman and Hall, London, UK.
Pimm, S.L., Lawton, J.H., and Cohen, J.E. (1991). Food web patterns and their
consequences. Nature 350 , 660-674.
Post, D.M. (2002). Using stable isotopes to estimate trophic position: Models,
methods and assumptions. Ecology 83 , 703-718.
Purvis, A., Agapow, P.-M., Gittleman, J.L., and Mace, G.M. (2000). Nonrandom
extinction and the loss of evolutionary history. Science 288 , 328-330.
Raffaelli, D. (2007). Food webs, body size and the curse of the Latin binomial.
In: From Energetics to Ecosystems: The Dynamics and Structure of Ecological
Systems (Ed. by N. Rooney, K.S. McCann and D.L.G. Noakes), pp. 53-64.
Springer, Dordrecht.
Reisewitz, S.E., Estes, J.A., and Simenstad, C.A. (2006). Indirect food web interac-
tions: Sea otters and kelp forest fishes in the Aleutian archipelago. Oecologia 146 ,
623-631.
Reiss, J., Bridle, J., Montoya, J.M., and Woodward, G. (2009). Emerging horizons in
biodiversity and ecosystem functioning research. Trends Ecol. Evol. 24 , 505-514.
Riede, J.O., Rall, B.C., Banasek-Richter, C., Navarrete, S.A., Wieters, E.A.,
Emmerson, M.C., Jacob, U., and Brose, U. (2010). Scaling of food-web properties
with diversity and complexity across ecosystems. Adv. Ecol. Res. 42 , 139-170.
Riede, J.O., Brose, U., Ebenman, B., Jacob, U., Thompson, R., Townsend, C., and
Jonsson, T. (2011). Stepping in Elton's footprints: A general scaling model for body
masses and trophic levels across ecosystems. Ecol. Lett. 14 , 169-178.
Romanuk, T.N., Hayward, A., and Hutchings, J.A. (2011). Trophic level scales
positively with body size in fishes. Glob. Ecol. Biogeogr. 20 , 231-240.
Schoener, T.W. (1989). Food webs from the small to the large. Ecology 70 , 1559-1589.
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