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Annika S. Nelson

Affiliation: Colorado State University
ORCID: 0000-0003-1759-6587
Works: 34 total (13 publications, 21 datasets, 0 documents)

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Works (34)

All (34)Publications (13)Datasets (21)
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Dataset

East River Pore Water FTICR-MS Data associated with "Geomorphic and Hydrogeochemical Controls on Fine-Scale Hyporheic Microbiome Assembly and Function"

2025DOI: 10.15485/1957786
Article

The Evolution and Ecology of Interactions Between Ants and Honeydew-Producing Hemipteran Insects

2022The Annual Review of Ecology, Evolution, and SystematicsDOI: 10.1146/annurev-ecolsys-102220-014840Cited 62 times
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

East River Surface and Pore Water FTICR-MS Data Associated with “Implications of sample treatment on characterization of the riverine environmental metabolome”

2021DOI: 10.15485/1813303
Dataset

Data from: Testing trade-offs and the dominance-impoverishment rule among ant communities

2021DOI: 10.5061/dryad.crjdfn31rCited 1 times
Article

Seasonal Manganese Transport in the Hyporheic Zone of a Snowmelt-Dominated River (East River, Colorado)

2020Hydrogeology JournalDOI: 10.1007/s10040-020-02146-6Cited 21 times
Article

Are ants botanists? Ant associative learning of plant chemicals mediates foraging for carbohydrates

2020Ecological EntomologyDOI: 10.1111/een.12794Cited 8 times
Article

Testing trade-offs and the dominance–impoverishment rule among ant communities

2020Journal of BiogeographyDOI: 10.1111/jbi.13911Cited 7 times
Article

Heterogeneity in Hyporheic Flow, Pore Water Chemistry, and Microbial Community Composition in an Alpine Streambed

2019JGR: BiogeosciencesDOI: 10.1029/2019jg005226Cited 49 times
Article

Plant chemical mediation of ant behavior

2019Current Opinion in Insect ScienceDOI: 10.1016/j.cois.2018.12.003Cited 25 times
Article

Progressive sensitivity of trophic levels to warming underlies an elevational gradient in ant–aphid mutualism strength

2019OikosDOI: 10.1111/oik.05650Cited 25 times
Article

Elevational cline in herbivore abundance driven by a monotonic increase in trophic level sensitivity to aridity

2019Journal of Animal EcologyDOI: 10.1111/1365-2656.13034Cited 7 times
Article

Hyporheic Zone Microbiome Assembly Is Linked to Dynamic Water Mixing Patterns in Snowmelt-Dominated Headwater Catchments

2019Journal of Geophysical Research: BiogeosciencesDOI: 10.1029/2019JG005189Cited 28 times
Thesis

The effects of climate change and biodiversity loss on mutualisms

2019
Dataset

Data from: Elevational cline in herbivore abundance driven by a monotonic increase in trophic level sensitivity to aridity

2019DOI: 10.5061/dryad.j6kn128Cited 1 times
Dataset

Data from: Progressive sensitivity of trophic levels to warming underlies an elevational gradient in ant-aphid mutualism strength

2018DOI: 10.5061/dryad.kf2553jCited 1 times
Article

Abiotic mediation of a mutualism drives herbivore abundance.

2016Ecology Letters
Student Paper

The effects of light intensity on ant-aphid mutualisms on Osha (Ligusticum porteri).

2014
Student Paper

How do riparian songbirds (Passerines) coexist? Effects of vegetative structural complexity on habitat selection in willow (<i>Salix</i> spp.)

2012