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Dataset results
285 results for “hummingbirds”
Linked collectors and determiners for: Geographic distribution of lizards (genus Plestiodon) and hummingbirds endemics of México (Distribución geográfica de lagartijas (género Plestiodon) y colibríes endémicos de México).
Natural history specimen data linked to collectors and determiners held within, "Geographic distribution of lizards (genus Plestiodon) and hummingbirds endemics of México (Distribución geográfica de lagartijas (género Plestiodon) y colibríes endémicos de México)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/6ef46ac2-8d5d-4a5b-a4f8-ea055d0e745d">https://bionomia.net/dataset/6ef46ac2-8d5d-4a5b-a4f8-ea055d0e745d</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/6ef46ac2-8d5d-4a5b-a4f8-ea055d0e745d">https://gbif.org/dataset/6ef46ac2-8d5d-4a5b-a4f8-ea055d0e745d</a>. Formatted as a Frictionless Data package.
Wyoming hummingbird breath d13C
<p>Here, we present data from two experiments conducted n the Rocky Mountains of Wyoming, USA to assess the relative use of feeder and flower nectar by Broad-tailed and Rufous hummingbirds using two distinct methods to measure the δ<sup>13</sup>C values of exhaled CO<sub>2</sub> – manual sample collection (2010) and automated analysis (2018). </p>
Hummingbird TTS Ear Tube Delivery Study
ClinicalTrials.gov study NCT02165384. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Study of the Hummingbird TTS™ Tympanostomy Tube System
ClinicalTrials.gov study NCT03503591. IPD Sharing: NO. Countries: 1. Publications: 0.
Data from: Post-glacial northward expansion and genetic differentiation between migratory and sedentary populations of the broad-tailed hummingbird (Selasphorus platycercus)
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Data from: Taxonomic, phylogenetic and trait betadiversity in South American hummingbirds
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Wyoming hummingbird breath d13C
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Data from: Body mass as a supertrait linked to abundance and behavioural dominance in hummingbirds: a phylogenetic approach
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Data from: Competition for hummingbird pollination shapes flower color variation in Andean Solanaceae
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Data from: Selection on Polemonium brandegeei (Polemoniaceae) flowers under hummingbird pollination: in opposition, parallel, or independent of selection by hawkmoths?
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Data from: Hummingbirds control hovering flight by stabilizing visual motion
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Data from: Three-dimensional simulation for fast forward flight of a calliope hummingbird
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Data from: Morphological adaptations for relatively larger brains in hummingbird skulls
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Data from: Abundance drives broad patterns of generalisation in plant-hummingbird pollination networks
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Data from: Hummingbirds control turning velocity using body orientation and turning radius using asymmetrical wingbeat kinematics
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Data from: Evolution of sweet taste perception in hummingbirds by transformation of the ancestral umami receptor
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Data from: Hovering hummingbird wing aerodynamics during the annual cycle
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Data from: Hovering in the heat: effects of environmental temperature on heat regulation in foraging hummingbirds
At high temperature (>40 ºC) endotherms experience reduced passive heat dissipation (radiation, conduction, and convection) and increased reliance on evaporative heat loss. High temperatures challenge flying birds due to heat produced by wing muscles. Hummingbirds depend on flight for foraging, yet inhabit hot regions. We used infrared thermography to explore how lower passive heat dissipation during flight impacts body-heat management in broad-billed (<i>Cynanthus latirostris</i>, 3.0g), black-chinned (<i>Archilochus alexandri</i>, 3.0g), Rivoli's (<i>Eugenes fulgens</i>, 7.5g), and blue-throated (<i>Lampornis clemenciae</i>, 8.0g) hummingbirds in southeastern Arizona and calliope hummingbirds (<i>Selasphorus calliope</i>, 2.6 g) in Montana. Thermal gradients driving passive heat dissipation through eye, shoulder and feet dissipation areas are eliminated between 36-40 ºC. Thermal gradients persisted at higher temperatures in smaller species, possibly allowing them to inhabit warmer sites. All species experienced extended daytime periods lacking thermal gradients. Broad-billed hummingbirds lacking thermal gradients regulated mean total-body surface temperature at ~38 ºC suggesting behavioral thermoregulation. Blue-throated hummingbirds were inactive when lacking passive heat dissipation, so might have the lowest temperature tolerance of the four species. Use of thermal refugia permitted hummingbirds to tolerate higher temperatures, but climate change could eliminate refugia, forcing distributional shifts in hummingbird populations.
The Ecology of Plant Hummingbird Interactions (EPHI) - Brazil
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Figure 1 from: Ouvernay D, Ferreira I, Morrone JJ (2018) Areas of endemism of hummingbirds (Aves: Apodiformes: Trochilidae) in the Andean and Neotropical regions. Zoologia 35: 1-13. https://doi.org/10.3897/zoologia.35.e13673
Figure 1 Generalized tracks for Trochilidae in the Neotropical and Andean regions.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.