Geoscience Reference
In-Depth Information
REFERENCES
Barnes, C., Bethea, D.M., Brodeur, R.D., Spitz, J., Ridoux, V., Pusineri, C., Chase, B.C.,
Hunsicker, M.E., Juanes, F., Kellermann, A., Lancaster, J., M ´ nard, F., et al.(2008).
Predator and prey body sizes in marine food webs. Ecology 89 , 881.
Barnes, C., Maxwell, D., Reuman, D.C., and Jennings, S. (2010). Global patterns in
predator-prey size relationships reveal size dependency of trophic transfer efficien-
cy. Ecology 91 , 222-232.
Baumg¨rtner, D., and Rothhaupt, K.-O. (2003). Predictive length-dry mass regres-
sions for freshwater invertebrates in a pre-alpine lake littoral. Int. Rev. Hydrobiol.
88 (5), 453-463.
Benke, A.C., Huryn, A.D., et al. (1999). Length-mass relationships for freshwater
macroinvertebrates in North America with particular reference to the southeastern
United States. J. North Am. Benthol. Soc. 18 , 308-343.
Benoit, E., and Rochet, M. (2004). A continuous model of biomass size spectra
governed by predation and the effects of fishing on them. J. Theor. Biol. 226 , 9-21.
Berlow, E., Dunne, J., Martinez, N., Stark, P., Williams, R., and Brose, U. (2009).
Simple prediction of interaction strengths in complex food webs. Proc. Natl. Acad.
Sci. USA 106 , 187-191.
Blanchard, J., Dulvy, N., Jennings, S., Ellis, J., Pinnegar, J., Tidd, A., and Kell, L.
(2005). Do climate and fishing influence size-based indicators of Celtic Sea fish
community structure? ICES J. Mar. Sci. 62 , 405-411.
Brose, U. (2010). Body-mass constraints on foraging behaviour determine population
and food-web dynamics. Funct. Ecol. 24 , 28-34.
Brose, U., Jonsson, T., Berlow, E.L., Warren, P., Banasek-Richter, C., Bersier, L.-F.,
Blanchard, J.L., Brey, T., Carpenter, S.R., Blandenier, M.-F.C., Cushing, L.,
Dawah, H.A., et al. (2006a). Consumer-resource body-size relationships in natural
food webs. Ecology 87 , 2411-2417.
Brose, U., Williams, R.J., and Martinez, N.D. (2006b). Allometric scaling enhances
stability in complex food webs. Ecol. Lett. 9 , 1228-1236.
Brose, U., Ehnes, R.B., Rall, B.C., Vucic-Pestic, O., Berlow, E.L., and Scheu, S.
(2008). Foraging theory predicts predator-prey energy fluxes. J. Anim. Ecol. 77 ,
1072-1078.
Brown, J.H., and Gillooly, J.F. (2003). Ecological food webs: High-quality data
facilitate theoretical unification. Proc. Natl. Acad. Sci. USA 100 , 1467-1468.
Brown, J., Gillooly, J., Allen, A., Savage, V., and West, G. (2004). Toward a
metabolic theory of ecology. Ecology 85 , 1771-1789.
Brown, L.E., Edwards, F.K., Milner, A.M., Woodward, G., and Ledger, M.E. (2011).
Food web complexity and allometric scaling relationships in stream mesocosms:
Implications for experimentation. J. Anim. Ecol. 80 , 884-895.
Burgherr, P., and Meyer, E.I. (1997). Regression analysis of linear body dimensions
vs. dry mass in stream macroinvertebrates. Arch. Hydrobiol. 139 , 101-112.
Camerano, L. (1880). Dell' equilibrio dei viventi merc´ la reciproca distruzione. Atti
R. Accad. Sci. Torino. 15 , 393-414.
Campos, H., Arenas, J., Steffen, W., Ag¨ ero, G., Villalobos, L., and Gonzalez, G.
(1985). Investigaci´n de la capacidad de carga para el cultivo de salmonideos de las
hoyas hidrogr´ficas del Lago Villarrica. Instituto Fomento Pesquero Valdivia Chile.
Cohen, J.E. (1978). Food Webs and Niche Space. University Press, Princeton, NJ.
Cohen, J.E. (2007). Body sizes in food chains of animal predators and parasites.
In: Body Size: The Structure and Function of Aquatic Ecosystems (Ed. by
Search WWH ::




Custom Search