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Big-data approaches lead to an increased understanding of the ecology of animal movement. Science 375: eabg1780.
. 2022. Big-data approaches lead to an increased understanding of the ecology of animal movement. Science 375: eabg1780.
. 2022. Big-data approaches lead to an increased understanding of the ecology of animal movement. Science 375: eabg1780.
. 2022. Digital fisheries data in the Internet age: emerging tools for research and monitoring using online data in recreational fisheries. Fish and Fisheries 23: 926-940.
. 2022. Empirical evidence on the effects of climate on the viability of common carp (Cyprinus carpio) populations in European lakes. Biological Invasions 24: 1213-1227.
. 2022. Latitude, Elevation, and Mean Annual Temperature Predict Peat Organic Matter Chemistry at a Global Scale. Global Biogeochemical Cycles 36, doi:10.1029/2021GB007057
. 2022. Latitude, Elevation, and Mean Annual Temperature Predict Peat Organic Matter Chemistry at a Global Scale. Global Biogeochemical Cycles 36, doi:10.1029/2021GB007057
. 2022. Common presence of phototrophic Gemmatimonadota in temperate freshwater lakes. mSystems 9: e01241-20.
. 2021. Dissolved and gaseous nitrogen losses in forests controlled by soil nutrient stoichiometry. Environmental Research Letters 16: 064025.
. 2021. Heliorhodopsin evolution is driven by photosensory promiscuity in monoderms. mSphere 6: e00661-21.
. 2021. A role for lakes in revealing the nature of animal movement using high dimensional telemetry systems. Movement Ecology 9: 40.
. 2021. A role for lakes in revealing the nature of animal movement using high dimensional telemetry systems. Movement Ecology 9: 40.
. 2021. Shift from trait convergence to divergence along old field succession. Journal of Vegetation Science 32: e12986.
. 2021. The ability of Tetrahymena utriculariae (Ciliophora, Oligohymenophorea) to colonize traps of different species of aquatic carnivorous Utricularia. Journal of Eukaryotic Microbiology 67: 608–611.
. 2020. Expanding conservation culturomics and iEcology from terrestrial to aquatic realms. PLOS Biology 18: e3000935.
. 2020. 
Formulation matters! The failure of integrating landscape fragmentation policy. Sustainability 3962.
. 2020. Framing fragmentation in strategic policy documents of spatial planning and environmental domains: differences and similarities. Journal of Environmental Planning and Management 63: 415-432.
. 2020. Solar Radiation as the Likely Cause of Acid-Soluble Rare-Earth Elements in Sediments of Fresh Water Humic Lakes. Environ. Sci. Technol. 54: 1545-1553.
. 2020. Synchrony matters more than species richness in plant community stability at a global scale. PNAS 117: 24345-24351.
. 2020. Effects of trophic status, water level and temperature on shallow lake metabolism and metabolic balance: A standardized pan-European mesocosm experiment. Limnology and Oceanography 64: 616-631.
. 2019. Effects of trophic status, water level and temperature on shallow lake metabolism and metabolic balance: A standardized pan-European mesocosm experiment. Limnology and Oceanography 64: 616-631.
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. 2018.