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2501Modelled mid‐trophic pelagic prey fields improve understanding of marine predator foraging behaviourby Green, D. B., Bestley, S., Trebilco, R., Corney, S. P., Lehodey, P., McMahon, C. R., Guinet, C., Hindell, Mark A.“... gridded metrics of seal density and diving behaviour from 13 yr of tracking data. We statistically...”
Published in Ecography (2020)
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2502by UAB Student Media“... "all three camputes can have as uuarudor in an area where there may not be tomeooe 10 limitedtocount...”
Published 1994
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2503by Scholl, David W., Kirby, Stephen H., von Huene, Roland, Ryan, Holly, Wells, Ray E., Geist, Eric L.“..., a statistically supported statement (see Summary and Conclusions) can be made that high-magnitude...”
Published in Geosphere (2015)
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2504by Juliana A Silva, Ana Isabelle Pinheiro, Maria Luiza Dourado, Lilian Medina, Adriano Queiroz, Luiz Henrique Guimarães, Marcus Miranda Lessa, Ednaldo L Lago, Paulo Roberto L Machado, Mary E Wilson, Edgar M Carvalho, Albert Schriefer“...Background Leishmaniases are neglected tropical diseases that inflict great burden to poor areas...”
Published in PLOS Neglected Tropical Diseases (2022)
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2505by de Graaf, Ramona Christine“... can assist in planning effective conservation areas. Syngnathus leptorhynchus is an eelgrass-dependent...”
Published 2006
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2506by De Graaf, Ramona Christine“... can assist in planning effective conservation areas. Syngnathus leptorhynchus is an eelgrass-dependent...”
Published 2006
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2507by Piersma, Theunis, Lok, Tamar, Chen, Ying, Hassell, Chris J., Yang, Hong-Yan, Boyle, Adrian, Slaymaker, Matt, Chan, Ying-Chi, Melville, David S., Zhang, Zheng-Wang, Ma, Zhijun“...–Australasian Flyway, in combination with data on habitat loss along the Yellow Sea (where these birds refuel...”
Published 2015
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2508Modelled mid-trophic pelagic prey fields improve understanding of marine predator foraging behaviourby Green, DB, Bestley, S, Trebilco, R, Corney, SP, Lehody, P, McMahon, CR, Guinet, C, Hindell, MA“... gridded metrics of seal density and diving behaviour from 13 yr of tracking data. We statistically...”
Published in Ecography (2020)
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2509by Yao, Qichao, Brown, Peter M., Liu, Shirong, Rocca, Monique E., Trouet, Valerie, Zheng, Ben, Chen, Haonan, Li, Yinchao, Liu, Duanyang, Wang, Xiaochun“... because of short and incomplete records in many areas of the world. We developed the first multicentury...”
Published in Geophysical Research Letters (2017)
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2510by Dash, Prasanjit, Ignatov, Alexander, Martin, Matthew, Donlon, Craig, Brasnett, Bruce, Reynolds, Richard W., Banzon, Viva, Beggs, Helen, Cayula, Jean-Francois, Chao, Yi, Grumbine, Robert, Maturi, Eileen, Harris, Andy, Mittaz, Jonathan, Sapper, John, Chin, Toshio M., Vazquez-Cuervo, Jorge, Armstrong, Edward M., Gentemann, Chelle, Cummings, James, Piollé, Jean-François, Autret, Emmanuelle, Roberts-Jones, Jonah, Ishizaki, Shiro, Høyer, Jacob L., Poulter, Dave“... and visualized using maps, histograms, time series plots and Hovmöller diagrams, for all combinations of products...”
Published in Deep Sea Research Part II: Topical Studies in Oceanography (2012)
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2511“... years) are concurrent with retreating glacier fronts, an increase in melt areas, ice surface lowering...”
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2512by Bowler, Diana E., Bjorkman, Anne D., Dornelas, Maria, Myers-Smith, Isla H., Navarro, Laetitia M., Niamir, Aidin, Supp, Sarah R., Waldock, Conor, Winter, Marten, Vellend, Mark, Blowes, Shane A., Böhning-Gaese, Katrin, Bruelheide, Helge, Elahi, Robin, Antão, Laura H., Hines, Jes, Isbell, Forest, Jones, Holly P., Magurran, Anne E., Cabral, Juliano Sarmento, Bates, Amanda E.“... population density. We used multivariate statistics to examine the spatial relationships among the drivers...”
Published in People and Nature (2020)
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2513by Dash, Prasanjit, Ignatov, Alexander, Martin, Matthew, Donlon, Craig, Brasnett, Bruce, Reynolds, Richard W., Banzon, Viva, Beggs, Helen, Cayula, Jean-Francois, Chao, Yi, Grumbine, Robert, Maturi, Eileen, Harris, Andy, Mittaz, Jonathan, Sapper, John, Chin, Toshio M., Vazquez-Cuervo, Jorge, Armstrong, Edward M., Gentemann, Chelle, Cummings, James, Piollé, Jean-François, Autret, Emmanuelle, Roberts-Jones, Jonah, Ishizaki, Shiro, Høyer, Jacob L., Poulter, Dave“... and visualized using maps, histograms, time series plots and Hovmöller diagrams, for all combinations of products...”
Published in Deep Sea Research Part II: Topical Studies in Oceanography (2012)
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2514Modelled mid-trophic pelagic prey fields improve understanding of marine predator foraging behaviourby Green, DB, Bestley, S, Trebilco, R, Corney, SP, Lehody, P, McMahon, CR, Guinet, C, Hindell, MA“... gridded metrics of seal density and diving behaviour from 13 yr of tracking data. We statistically...”
Published in Ecography (2020)
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2515Modelled mid-trophic pelagic prey fields improve understanding of marine predator foraging behaviourby Green, D., Bestley, S., Trebilco, R., Corney, S., Lehodey, P., Mcmahon, C., Guinet, C., Hindell, Mark“... spatially gridded metrics of seal density and diving behaviour from 13 yr of tracking data. We statistically...”
Published in Ecography (2020)
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2516Modelled mid-trophic pelagic prey fields improve understanding of marine predator foraging behaviourby Green, D., Bestley, S., Trebilco, R., Corney, S., Lehodey, P., Mcmahon, C., Guinet, C., Hindell, Mark“... spatially gridded metrics of seal density and diving behaviour from 13 yr of tracking data. We statistically...”
Published in Ecography (2020)
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2517Modelled mid-trophic pelagic prey fields improve understanding of marine predator foraging behaviourby Green, DB, Bestley, S, Trebilco, R, Corney, SP, Lehody, P, McMahon, CR, Guinet, C, Hindell, MA“... gridded metrics of seal density and diving behaviour from 13 yr of tracking data. We statistically...”
Published in Ecography (2020)
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2518Modelled mid-trophic pelagic prey fields improve understanding of marine predator foraging behaviourby Green, D., Bestley, S., Trebilco, R., Corney, S., Lehodey, P., Mcmahon, C., Guinet, C., Hindell, Mark“... spatially gridded metrics of seal density and diving behaviour from 13 yr of tracking data. We statistically...”
Published in Ecography (2020)
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2519Modelled mid-trophic pelagic prey fields improve understanding of marine predator foraging behaviourby Green, D., Bestley, S., Trebilco, R., Corney, S., Lehodey, P., Mcmahon, C., Guinet, C., Hindell, Mark“... spatially gridded metrics of seal density and diving behaviour from 13 yr of tracking data. We statistically...”
Published in Ecography (2020)
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2520by Petras, Justine“...Ice-walled lake plains (IWLPs) form along glacial margins in areas of stagnating ice. In Illinois...”
Published 2010
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