2017
|
Remarkable size-spectra stability in a marine system undergoing massive invasion
published
| article-journal
doi:10.1098/rsbl.2017.0159
|
2018-03-05
|
Size-dependent predation and correlated life history traits alter eco-evolutionary dynamics and selection for faster individual growth
published
| article-journal
doi:10.1007/s10144-018-0608-7
|
2017-12-18
|
Life history traits and functional processes generate multiple pathways to ecological stability
published
| article-journal
doi:10.1002/ecy.2070
|
2018
|
Morphological changes in American kestrels (Falco sparverius) at continental migration sites
published
| article-journal
| CC-BY-NC-ND
doi:10.1016/j.gecco.2018.e00400
|
2018
|
Condition-dependent foraging in the wolf spider Hogna baltimoriana
published
| article-journal
doi:10.1016/j.fooweb.2017.12.003
|
2017-04-23
|
The combined effects of reactant kinetics and enzyme stability explain the temperature dependence of metabolic rates
published
| article-journal
| CC-BY
doi:10.1002/ece3.2955
|
2018
|
Habitat, latitude and body mass influence the temperature dependence of metabolic rate
published
| article-journal
doi:10.1098/rsbl.2018.0442
|
2017-11-08
|
Size-dependent Catalysis of Chlorovirus Population Growth by A Messy Feeding Predator
published
| article-journal
doi:10.1007/s00248-017-1106-8
|
2019
|
The effects of management practices on grassland birds—An introduction to North American grasslands and the practices used to manage grasslands and grassland birds
unknown status
| unknown type
doi:10.3133/pp1842a
|
2019
|
The effects of management practices on grassland birds
unknown status
| unknown type
doi:10.3133/pp1842
|
2018-12-26
|
Data paper: FoRAGE (Functional Responses from Around the Globe in all Ecosystems) database: a compilation of functional responses for consumers and parasitoids
unknown status
| post
doi:10.1101/503334
|
2018
|
The FoRAGE (Functional Responses from Around the Globe in all Ecosystems) database: a compilation of functional responses for consumers and parasitoids
published
| dataset
doi:10.5063/f1c53j3p
|
2018
|
The FoRAGE (Functional Responses from Around the Globe in all Ecosystems) database: a compilation of functional responses for consumers and parasitoids.
published
| dataset
doi:10.5063/f17h1gtq
|
2020-01-10
|
Trade‐offs between morphology and thermal niches mediate adaptation in response to competing selective pressures
published
| article-journal
| CC-BY
doi:10.1002/ece3.5990
|
2020-07-21
|
Estimating predator functional responses using the times between prey captures
unknown status
| post
doi:10.1101/2020.07.19.208686
|
2020
|
The effects of management practices on grassland birds—Prairie Falcon (<i>Falco mexicanus</i>)
unknown status
| unknown type
doi:10.3133/pp1842s
|
2018-08-07
|
Predators modify the temperature dependence of life-history trade-offs
published
| article-journal
| CC-BY
doi:10.1002/ece3.4381
|
2018-12-26
|
Ecological pleiotropy and indirect effects alter the potential for evolutionary rescue
published
| article-journal
| CC-BY
doi:10.1111/eva.12745
|
2020-10-21
|
Appendix S1 and Tables S2 - S3 from Trophic cascades alter eco-evolutionary dynamics and body size evolution
published
| article-journal
| v1
| CC-BY
doi:10.6084/m9.figshare.13124980.v1
|
2020-10-21
|
Supplementary material from "Trophic cascades alter eco-evolutionary dynamics and body size evolution"
published
| stub
| CC-BY
doi:10.6084/m9.figshare.c.5182405
|
2020-10-21
|
Appendix S1 and Tables S2 - S3 from Trophic cascades alter eco-evolutionary dynamics and body size evolution
published
| article-journal
| CC-BY
doi:10.6084/m9.figshare.13124980
|
2020-10-21
|
Supplementary material from "Trophic cascades alter eco-evolutionary dynamics and body size evolution"
published
| stub
| v1
| CC-BY
doi:10.6084/m9.figshare.c.5182405.v1
|
2020
|
Trophic cascades alter eco-evolutionary dynamics and body size evolution
published
| dataset
| 4
| CC-0
doi:10.5061/dryad.hx3ffbgb9
|
2021-02-15
|
Estimating predator functional responses using the times between prey captures
published
| article-journal
doi:10.1002/ecy.3307
|
2021
|
Thermal adaptation in a holobiont accompanied by phenotypic changes in an endosymbiont
published
| dataset
| 2
| CC-0
doi:10.5061/dryad.g1jwstqrb
|
2021-07-11
|
Thermal adaptation in a holobiont accompanied by phenotypic changes in an endosymbiont
published
| article-journal
doi:10.1111/evo.14301
|
2021-08-15
|
Quantifying predator functional responses under field conditions reveals interactive effects of temperature and interference with sex and stage.
unknown status
| post
doi:10.1101/2021.08.15.456391
|
2018
|
The FoRAGE (Functional Responses from Around the Globe in all Ecosystems) database: a compilation of functional responses for consumers and parasitoids, v. 2021.
published
| dataset
doi:10.5063/db807s
|
2021
|
Prey diversity constrains the adaptive potential of predator foraging traits
published
| dataset
| 2
| CC-0
doi:10.5061/dryad.j6q573nfn
|
2021-11-08
|
Prey diversity constrains the adaptive potential of predator foraging traits
published
| article
doi:10.5281/zenodo.5585382
|
2021-11-08
|
Prey diversity constrains the adaptive potential of predator foraging traits
published
| article
doi:10.5281/zenodo.5585381
|
2020-11-04
|
Trophic cascades alter eco-evolutionary dynamics and body size evolution
published
| article-journal
doi:10.1098/rspb.2020.0526
|
2021-11-26
|
Prey diversity constrains the adaptive potential of predator foraging traits
published
| article-journal
doi:10.1111/oik.08800
|
2022-01-22
|
Predator functional responses and the biocontrol of aphids and mites
published
| article-journal
doi:10.1007/s10526-021-10127-1
|
2022-04-15
|
Quantifying predator functional responses under field conditions reveals interactive effects of temperature and interference with sex and stage
published
| article-journal
doi:10.1111/1365-2656.13703
|
2022
|
Temperature has a unimodal effect on the functional response of wolf spiders
published
| article-journal
| CC-BY-NC-ND
doi:10.1016/j.ecochg.2022.100063
|
2022-12-05
|
Predator feeding rates may often be unsaturated under typical prey densities
published
| personal_communication
doi:10.1111/ele.14151
|
2022-12-27
|
The consumption of viruses returns energy to food chains
published
| article-journal
| CC-BY-NC-ND
doi:10.1073/pnas.2215000120
|
2023-05-16
|
Ecological boundaries and constraints on viable eco‐evolutionary pathways
published
| article-journal
| CC-BY
doi:10.1111/oik.09893
|
2023-09-18
|
Data and code for: "Foraging rates from metabarcoding: Predators have reduced functional responses in wild, diverse prey communities."
published
| dataset
| 2023_09_18
| CC-BY
doi:10.5281/zenodo.8329424
|
2023-10-31
|
Temperature and predators as interactive drivers of community properties
published
| article-journal
| CC-BY
doi:10.1002/ece3.10665
|
2024-01-15
|
Heritable intraspecific variation among prey in size and movement interact to shape predation risk and potential natural selection
unknown status
| post
doi:10.1101/2024.01.11.575285
|
2022-11-24
|
Ecological boundaries and constraints on viable eco-evolutionary pathways
unknown status
| post
doi:10.1101/2022.11.21.517427
|
2024-07-02
|
How Hot is too Hot? Metabolic Responses to Temperature Across Life Stages of a Small Ectotherm
published
| article-journal
doi:10.1093/icb/icae093
|
2025-01-27
|
FR_n-prey-at-a-time
published
| article
| CC-BY
doi:10.6084/m9.figshare.28292147
|
2025-05-19
|
Warming increases the strength of trophic cascades.
unknown status
| post
doi:10.22541/au.174768339.96187611/v1
|
2020-06-19
|
Temperature alters the shape of predator–prey cycles through effects on underlying mechanisms
published
| article-journal
| CC-BY
doi:10.7717/peerj.9377
|
2022-09-18
|
Stochasticity directs adaptive evolution toward nonequilibrium evolutionary attractors
published
| article-journal
doi:10.1002/ecy.3873
|
2023-09-18
|
Data and code for: "Foraging rates from metabarcoding: Predators have reduced functional responses in wild, diverse prey communities."
published
| dataset
| 2023_09_18
| CC-BY
doi:10.5281/zenodo.8329423
|
2018
|
The FoRAGE (Functional Responses from Around the Globe in all Ecosystems) database: a compilation of functional responses for consumers and parasitoids, v.4 (2023).
published
| dataset
doi:10.5063/f1sn07dd
|
2023-12-11
|
Data and code for: "Foraging rates from metabarcoding: Predators have reduced functional responses in wild, diverse prey communities."
published
| dataset
| CC-BY
doi:10.5281/zenodo.10359098
|
2024-02-02
|
A framework for understanding climate change impacts through intra- and interspecific asymmetries in climate change responses
unknown status
| post
doi:10.22541/au.169470726.65740114/v3
|
2024-06-14
|
28. Pathways of Density Dependence and Natural Selection in Modern Humans
published
| chapter
| CC-BY
doi:10.11647/obp.0251.28
|
2024-07-29
|
Simple, universal rules predict trophic interaction strengths
unknown status
| post
| CC-BY
doi:10.1101/2024.07.26.605380
|
2024
|
OS-Prey (Omnibus study of prey) V2
published
| dataset
doi:10.5063/f1xk8d14
|
2025
|
Are type 3 functional responses just statistical apparitions?
published
| article-journal
| CC-BY
doi:10.1002/ecs2.70247
|
2020
|
Using patterns in prey DNA digestion rates to quantify predator diets
published
| dataset
| 1
| CC-0
doi:10.5061/dryad.tx95x69tx
|
2022-04-01
|
FoRAGE database: A compilation of functional responses for consumers and parasitoids
published
| article-journal
doi:10.1002/ecy.3706
|
2022-08-11
|
Predator feeding rates may often be unsaturated under typical prey densities
unknown status
| post
doi:10.1101/2022.08.09.503207
|
2022-04-15
|
Quantifying predator functional responses under field conditions reveals interactive effects of temperature and interference with sex and stage
published
| article-journal
doi:10.1111/1365-2656.13703
|
2022
|
Data from: Functionally redundant multimodal predator cues elicit changes in prey foraging behavior
published
| dataset
| 2
| CC-0
doi:10.5061/dryad.xsj3tx9kd
|
2023-02-13
|
Intraguild predation is increased in areas of low prey diversity in a generalist predator community
published
| article-journal
doi:10.1111/1365-2656.13901
|
2023-08-31
|
Viral Chemotaxis of Paramecium Bursaria Altered by Algal Endosymbionts
published
| article-journal
doi:10.1007/s00248-023-02292-w
|
2018
|
The FoRAGE (Functional Responses from Around the Globe in all Ecosystems) database: a compilation of functional responses for consumers and parasitoids, v.4 (2023).
published
| dataset
doi:10.5063/f1xd1044
|
2023-05-01
|
Lessons from Chloroviruses: the Complex and Diverse Roles of Viruses in Food Webs
published
| article-journal
doi:10.1128/jvi.00275-23
|
2023
|
The effects of management practices on grassland birds—Golden Eagle (Aquila chrysaetos)
unknown status
| unknown type
doi:10.3133/pp1842o
|
2024
|
Foraging rates from metabarcoding: Predators have reduced functional responses in wild, diverse prey communities
published
| article-journal
doi:10.1111/ele.14394
|
2024
|
A framework for understanding climate change impacts through non‐compensatory intra‐ and interspecific climate change responses
published
| article-journal
| CC-BY
doi:10.1111/gcb.17378
|
2024-12-22
|
Integrating predator energetic balance, risk-taking behavior and microhabitat in functional response: Untangling indirect interactions in a multispecies vertebrate community
unknown status
| post
| CC-BY-NC-ND
doi:10.1101/2024.12.20.629406
|
2025-01-27
|
FR_n-prey-at-a-time
published
| article
| v1
| CC-BY
doi:10.6084/m9.figshare.28292147.v1
|
2025
|
Simple, Universal Rules Predict Trophic Interaction Strengths
published
| article-journal
doi:10.1111/ele.70126
|