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Simple Life-History Omnivory: Responses to Enrichment and Harvesting in Systems with Intraguild PredationABRAMS, Peter A.The American naturalist. 2011, Vol 178, Num 3, pp 305-319, issn 0003-0147, 15 p.Article

Habitat complexity does not promote coexistence in a size-structured intraguild predation systemREICHSTEIN, Birte; SCHRÖDER, Arne; PERSSON, Lennart et al.Journal of animal ecology. 2013, Vol 82, Num 1, pp 55-63, issn 0021-8790, 9 p.Article

Weeds mediate the level of intraguild predation in arthropod food websTIXIER, P; DAGNEAUX, D; MOLLOT, G et al.Journal of applied entomology (1986). 2013, Vol 137, Num 9, pp 702-710, issn 0931-2048, 9 p.Article

ECOSYSTEM SIZE, BUT NOT DISTURBANCE, DETERMINES FOOD-CHAIN LENGTH ON ISLANDS OF THE BAHAMASTAKIMOTO, Gaku; SPILLER, David A; POST, David M et al.Ecology (Durham). 2008, Vol 89, Num 11, pp 3001-3007, issn 0012-9658, 7 p.Article

Trophic levels and trophic tangles : The prevalence of omnivory in real food webs : Ecology of fungal symbioses in tropical forestsTHOMPSON, Ross M; HEMBERG, Martin; STARZOMSKI, Brian M et al.Ecology (Durham). 2007, Vol 88, Num 3, pp 612-617, issn 0012-9658, 6 p.Article

Contrasting energy pathways at the community level as a consequence of regime shiftsJUN XU; ZHOURUI WEN; ZHIXIN KE et al.Oecologia. 2014, Vol 175, Num 1, pp 231-241, issn 0029-8549, 11 p.Article

Short-term ecological and behavioural responses of Mediterranean ant species Aphaenogaster gibbosa (Latr. 1798) to wildfireLAZARO-GONZALEZ, Alba; ARNAN, Xavier; BOULAY, Raphael et al.Insect conservation and diversity (Print). 2013, Vol 6, Num 5, pp 627-638, issn 1752-458X, 12 p.Article

Predicting diet and consumption rate differences between and within species using gut ecomorphologyGRIFFEN, Blaine D; MOSBIACK, Hallie.Journal of animal ecology. 2011, Vol 80, Num 4, pp 854-863, issn 0021-8790, 10 p.Article

Robert F. Denno (1945―2008): Insect Ecologist ExtraordinaireEUBANKS, Micky D; RAUPP, Michael J; FINKE, Deborah L et al.Annual review of entomology. 2011, Vol 56, pp 273-292, issn 0066-4170, 20 p.Article

Predator foraging behaviour drives food-web topological structureLAZZARO, Xavier; LACROIX, Gérard; GAUZENS, Benoit et al.Journal of animal ecology. 2009, Vol 78, Num 6, pp 1307-1317, issn 0021-8790, 11 p.Article

CONSEQUENCES OF OMNIVORY FOR TROPHIC INTERACTIONS ON A SALT MARSH SHRUBHO, Chuan-Kai; PENNINGS, Steven C.Ecology (Durham). 2008, Vol 89, Num 6, pp 1714-1722, issn 0012-9658, 9 p.Article

River and wetland food webs in Australia's wet-dry tropics : general principles and implications for managementDOUGLAS, Michael M; BUNN, Stuart E; DAVIES, Peter M et al.Marine and freshwater research. 2005, Vol 56, Num 3, pp 329-342, issn 1323-1650, 14 p.Conference Paper

Might nitrogen limitation promote omnivory among carnivorous arthropods? : OmnivoryDENNO, Robert F; FAGAN, William F.Ecology (Durham). 2003, Vol 84, Num 10, pp 2522-2531, issn 0012-9658, 10 p.Article

Omnivory and the indeterminacy of predator function: Can a knowledge of foraging behavior help? : OmnivoryROSENHEIM, Jay A; CORBETT, Andrew.Ecology (Durham). 2003, Vol 84, Num 10, pp 2538-2548, issn 0012-9658, 11 p.Article

The evolution and maintenance of omnivory: Dynamic constraints and the role of food quality : OmnivoryDIEHL, Sebastian.Ecology (Durham). 2003, Vol 84, Num 10, pp 2557-2567, issn 0012-9658, 11 p.Article

Interaction strengths in balanced carbon cycles and the absence of a relation between ecosystem complexity and stabilityNEUTEL, Anje-Margriet; THORNE, Michael A. S.Ecology letters (Print). 2014, Vol 17, Num 6, pp 651-661, issn 1461-023X, 11 p.Article

Niche Evolution, Trophic Structure, and Species Turnover in Model Food WebsINGRAM, Travis; HARMON, Luke J; SHURIN, Jonathan B et al.The American naturalist. 2009, Vol 174, Num 1, pp 56-67, issn 0003-0147, 12 p.Article

Investigating the diet of the omnivorous mirid Dicyphus hesperus using stable isotopesBENNETT, J. A; GILLESPIE, D. R; VANLAERHOVEN, S. L et al.Bulletin of entomological research. 2009, Vol 99, Num 4, pp 347-358, issn 0007-4853, 12 p.Article

ESTIMATING NONLINEAR INTERACTION STRENGTHS : AN OBSERVATION-BASED METHOD FOR SPECIES-RICH FOOD WEBSNOVAK, Mark; WOOTTON, J. Timothy.Ecology (Durham). 2008, Vol 89, Num 8, pp 2083-2089, issn 0012-9658, 7 p.Article

Effects of leaf nitrogen content on oviposition site selection, offspring performance, and intraspecific interactions in an omnivorous bugGROENTEMAN, Ronny; GUERSHON, Moshe; COLL, Moshe et al.Ecological entomology (Print). 2006, Vol 31, Num 2, pp 155-161, issn 0307-6946, 7 p.Article

Host-plant-mediated interaction between populations of a true omnivore and its herbivorous preyJUNRUI ZHI; MARGOLIES, David C; NECHOLS, James R et al.Entomologia experimentalis et applicata. 2006, Vol 121, Num 1, pp 59-66, issn 0013-8703, 8 p.Article

Temporal and spatial variation to ant omnivory in pine forestsMOONEY, Kailen A; TILLBERG, Chadwick V.Ecology (Durham). 2005, Vol 86, Num 5, pp 1225-1235, issn 0012-9658, 11 p.Article

Simple trophic modules for complex food websBASCOMPTE, Jordi; MELIAN, Carlos J.Ecology (Durham). 2005, Vol 86, Num 11, pp 2868-2873, issn 0012-9658, 6 p.Article

Nectar-feeding by a predatory Ambush bug (Heteroptera: Phymatidae) that hunts on flowersYONG, Tze-Hei.Annals of the Entomological Society of America. 2003, Vol 96, Num 5, pp 643-651, issn 0013-8746, 9 p.Article

Continuous rearing of the predatory anthocorid Orius laevigatus without plant materialsDE PUYSSELEYR, V; HÖFTE, M; DE CLERCQ, P et al.Journal of applied entomology (1986). 2014, Vol 138, Num 1-2, pp 45-51, issn 0931-2048, 7 p.Article

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