about
Developing and Integrating Advanced Movement Features Improves Automated Classification of Ciliate SpeciesDynamic species classification of microorganisms across time, abiotic and biotic environments-A sliding window approach.BEMOVI, software for extracting behavior and morphology from videos, illustrated with analyses of microbesDispersal propensity in Tetrahymena thermophila ciliates - a reaction norm perspective.The ecological forecast horizon, and examples of its uses and determinantsTemporal scale dependent interactions between multiple environmental disturbances in microcosm ecosystems.The practice of prediction: What can ecologists learn from applied, ecology-related fields?Biodiversity increases and decreases ecosystem stabilityBottom-up and top-down control of dispersal across major organismal groupsBig answers from small worlds: a user's guide for protist microcosms as a model system in ecology and evolutionWarming can destabilise predator-prey interactions by shifting the functional response from Type III to Type II:Linking intraspecific trait variation to community abundance dynamics improves ecological predictability by revealing a growth-defence trade-offThe interplay between movement, morphology and dispersal in Tetrahymena ciliatesWarming reduces the effects of enrichment on stability and functioning across levels of organisation in an aquatic microbial ecosystemWarming can destabilize predator-prey interactions by shifting the functional response from Type III to Type II
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description
researcher ORCID ID = 0000-0003-0679-1045
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wetenschapper
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Frank Pennekamp
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Frank Pennekamp
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Frank Pennekamp
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Frank Pennekamp
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Frank Pennekamp
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Frank Pennekamp
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Frank Pennekamp
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Frank Pennekamp
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Frank Pennekamp
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Frank Pennekamp
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Frank Pennekamp
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Frank Pennekamp
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P1153
55221890300
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P31
P496
0000-0003-0679-1045