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A list of all the posts and pages found on the site. For you robots out there, there is an XML version available for digesting as well.
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Posts
Blog Post number 1
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This is a sample blog post. Lorem ipsum I can’t remember the rest of lorem ipsum and don’t have an internet connection right now. Testing testing testing this blog post. Blog posts are cool.
people
Ze Hui Kong
Experimental ecologist
Aditya H. Kamath
Marine ecologist
Buse Uysaler
Ecosystem modeller
Karen Revoredo
Ecologist
María Agulló Samper
Network ecologist
Susanne Kortsch
Community and food web ecologist
Tawfiqur Rahman
Experimental ecologist
publications
Climate-driven regime shifts in Arctic marine benthos
Published in Proceedings of the National Academy of Sciences, 2012
Kortsch, S., Primicerio, R., Beuchel, F., Renaud, P. E., Rodrigues, J., Lønne, O. J., & Gulliksen, B. (2012). Climate-driven regime shifts in Arctic marine benthos. Proceedings of the National Academy of Sciences, 109(35), 14052–14057.
Recommended citation: Kortsch, S., Primicerio, R., Beuchel, F., Renaud, P. E., Rodrigues, J., Lønne, O. J., & Gulliksen, B. (2012). Climate-driven regime shifts in Arctic marine benthos. Proceedings of the National Academy of Sciences, 109(35), 14052–14057.
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Climate change alters the structure of arctic marine food webs due to poleward shifts of boreal generalists
Published in Proceedings of Royal Society Biological sciences, 2015
Exploring how food-web robustness depends on network structure and extinction thresholds.
Recommended citation: Kortsch S, Primicerio R, Fossheim M, Dolgov A, Aschan M (2015) Climate change alters the structure of arctic marine food webs due to poleward shifts of boreal generalists." roceedings of Royal Society Biological sciences, 282:20151546.
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Identifying Important Species in Meta-Communities
Published in Methods in Ecology and Evolution, 2024
A framework for identifying ecologically important species across interconnected meta-communities.
Recommended citation: Rollin, G., Kortsch, S., Lages, J., & Gauzens, B. (2024). "Identifying important species in meta-communities." Methods in Ecology and Evolution.
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Temperature variability regulates the interactive effects of warming and pharmaceutical on aquatic ecosystem dynamics
Published in Journal of Theoretical Biology, 2024
Temperature variability modulates the combined effects of climate warming and pharmaceutical-induced behavioural change on aquatic ecosystem dynamics.
Recommended citation: Qian, G., Wu, D., Zhang, L., & Kortsch, S. (2024). Temperature variability regulates the interactive effects of warming and pharmaceutical on aquatic ecosystem dynamics. Journal of Theoretical Biology, 595, 111948.
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Food web robustness depends on the network type and threshold for extinction
Published in Oikos, 2024
Exploring how food-web robustness depends on network structure and extinction thresholds.
Recommended citation: Ståhl, P. P. G., Riikka, P. D., Zhang, L., Nordström, M. C., & Kortsch, S. (2025). "Food web robustness depends on the network type and threshold for extinction." Oikos, e11139.
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Warming simplifies marine ecological networks through losses in trophic and non-trophic interactions
Published in Marine Ecology Progress Series, 2026
Experimental warming reduced community biomass, caused the loss of foundation species and predators, and simplified trophic and non-trophic ecological networks.
Recommended citation: Kraufvelin, L., Pansch, C., Wolf, F., Barboza, F. R., Vajedsamiei, J., Nordström, M. C., & Kortsch S. (2026). Warming simplifies marine ecological networks through losses in trophic and non-trophic interactions. Marine Ecology Progress Series, 782, 1–18. https://doi.org/10.3354/meps15092
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Pollinators support the nutrition and income of vulnerable communities
Published in Nature, 2026
Linking pollinator biodiversity and ecological networks to the nutrition, livelihoods, and economic resilience of vulnerable smallholder communities.
Recommended citation: Timberlake, T. P., Sapkota, S., Saville, N. M., Cirtwill, A. R., Baral, S. C., Bhusal, D. R., Devkota, K., Giri, S., Harris-Fry, H. A., Joshi, D., Kortsch, S., Myers, S. S., Roslin, T., Smith, M. R., & Memmott, J. (2026). “Pollinators support the nutrition and income of vulnerable communities.” Nature, 654, 683–688.
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Food web complexity underlies biodiversity effects on ecosystem functioning
Published in Nature, 2026
Demonstrating how food-web complexity mediates biodiversity effects on ecosystem functioning across marine, freshwater, and soil ecosystems.
Recommended citation: Barnes, A. D., Brose, U., Eisenhauer, N., Berti, E., Brauns, M., Eggert, S. L., Garcia-Callejas, D., Giling, D. P., Hall, R. O., Jr., Hines, J., Jochum, M., Korobushkin, D. I., Kortsch, S., Kratina, P., Manca, M., Mor, J.-R., Nordström, M. C., O’Gorman, E. J., Ott, D., Perkins, D. M., Rosenbaum, B., Saifutdinov, R. A., Saito, V. S., Tanentzap, A. J., Vinagre, C., & Gauzens, B. (2026). "Food web complexity underlies biodiversity effects on ecosystem functioning." Nature. https://doi.org/10.1038/s41586-026-10710-5
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research-projects
Read about ‘Heatwave-driven Rewiring of Food Webs’
We investigate how marine heatwaves reorganise or rewire food webs by altering species interactions, biodiversity, and ecosystem functioning. Combining mesocosm experiments, DNA metabarcoding, ecological network analysis, and ecosystem modelling, we aim to predict how warming reshapes coastal ecosystems.
Carbon Cycling in Coastal Ecosystems
How Substrate and Habitat-modifiers Drive Variation in Coastal Carbon Dynamics.
Foundation species, biodiversity, and ecological networks
Understanding how habitat-forming species structure coastal communities and ecological networks.
Food Webs Across Changing Seas
Comparing ecological networks from polar to temperate marine ecosystems.
teaching
Functional Marine Ecology 15 Cr
Master’s course, Åbo Akademi University, 2019
This course included lectures, and project work. I was responsible for the food web part of this functional marine ecology course.
Field Ecology Course 15 Cr Online Course
Master’s course, University of Helsinki , 2021
This field ecology course was held online due to covid. Students did their field work close to their own homes.
