Dr. Oliver Mitesser
Dr. Oliver Mitesser
University of Würzburg
Field Station Fabrikschleichach
Glashüttenstraße 5
Field Station Fabrikschleichach
Glashüttenstraße 5
96181
Rauhenebrach
Telefon:
+49 931 31 86876

- Phenologie der Pflanzen und Tiere
- Evolution von Lebenslaufstrategien
- Soziale Insekten
- Mathematische und statistische Modellierung
2023[ to top ]
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Diversity and specialization responses to climate and land use differ between deadwood fungi and bacteria in Ecography (2023). e06807.
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Ambient and substrate energy influence decomposer diversity differentially across trophic levels in Ecology Letters (2023). 26(7) 1157–1173.
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2022[ to top ]
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The rising moon promotes mate finding in moths in Communications Biology (2022). 5 393.
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Enhancing the structural diversity between forest patches—A concept and real-world experiment to study biodiversity, multifunctionality and forest resilience across spatial scales in Global Change Biology (2022). 29(6) 1437–1450.
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Response of cavity nesting birds to Lymantria dispar (Lepidoptera) and aerial spraying - An experimental approach in Forest Ecology and Management (2022). 524 120520.
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Dung-visiting beetle diversity is mainly affected by land use, while community specialization is driven by climate in Ecology and Evolution (2022). 12(10)
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Quantifying wood decomposition by insects and fungi using computed tomography scanning and machine learning in Scientific Reports (2022). 12(1)
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Diverse effects of climate, land use, and insects on dung and carrion decomposition in Ecosystems (2022).
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Temporal Soundscape Patterns in a Panamanian Tree Diversity Experiment: Polycultures Show an Increase in High Frequency Cover in Frontiers in Ecology and Evolution (2022). 10
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2021[ to top ]
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Tracking the temporal dynamics of insect defoliation by high-resolution radar satellite data in Methods in Ecology and Evolution (2021).
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Relationship of insect biomass and richness with land use along a climate gradient in Nature communications (2021). 12(1) 1–9.
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Natural Zeitgebers Under Temperate Conditions Cannot Compensate for the Loss of a Functional Circadian Clock in Timing of a Vital Behavior in Drosophila in Journal of Biological Rhythms (2021). 36(3) 271–285.
2020[ to top ]
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A Novel Thermal-Visual Place Learning Paradigm for Honeybees (Apis mellifera) in Frontiers in Behavioral Neuroscience (2020). 14 56.
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2018[ to top ]
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Overwintering temperature and body condition shift emergence dates of spring-emerging solitary bees in {PeerJ} (2018). 6 e4721.
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2017[ to top ]
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Mating timing, dispersal and local adaptation in patchy environments in Oikos (2017).
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2016[ to top ]
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The evolution of optimal emergence times: {Bet} hedging and the quest for an ideal free temporal distribution of individuals in Oikos (2016).
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