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1,140 results for “down feathers”
Figure 2 from: Han Y-D, Mironov SV, Min G-S (2022) Two new species of feather mites (Acariformes, Astigmata) from the black-tailed godwit, Limosa limosa (Charadriiformes, Scolopacidae), in Korea. ZooKeys 1088: 81-97. https://doi.org/10.3897/zookeys.1088.80307
Figure 2 Alloptes (Conuralloptes) neolimosae sp. nov., female A dorsal view B ventral view.
Figure 1 from: Han Y-D, Mironov SV, Min G-S (2022) Two new species of feather mites (Acariformes, Astigmata) from the black-tailed godwit, Limosa limosa (Charadriiformes, Scolopacidae), in Korea. ZooKeys 1088: 81-97. https://doi.org/10.3897/zookeys.1088.80307
Figure 1 Alloptes (Conuralloptes) neolimosae sp. nov., male A dorsal view B ventral view.
Figure 5 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Mukhim DKB, Adam C (2017) A new feather mite species of the genus Proterothrix Gaud, 1968 (Acarina, Proctophyllodidae) from the Large Niltava, Niltava grandis (Passeriformes, Muscicapidae) – an integrative description. ZooKeys 661: 1-14. https://doi.org/10.3897/zookeys.661.11793
Figure 5 - Proterothrix chachulae sp. n., female paratype: ventral view of idiosoma.
Figure 1 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Mukhim DKB, Adam C (2017) A new feather mite species of the genus Proterothrix Gaud, 1968 (Acarina, Proctophyllodidae) from the Large Niltava, Niltava grandis (Passeriformes, Muscicapidae) – an integrative description. ZooKeys 661: 1-14. https://doi.org/10.3897/zookeys.661.11793
Figure 1 - Proterothrix chachulae sp. n., male holotype: dorsal view of idiosoma.
Figure 4 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Mukhim DKB, Adam C (2017) A new feather mite species of the genus Proterothrix Gaud, 1968 (Acarina, Proctophyllodidae) from the Large Niltava, Niltava grandis (Passeriformes, Muscicapidae) – an integrative description. ZooKeys 661: 1-14. https://doi.org/10.3897/zookeys.661.11793
Figure 4 - Proterothrix chachulae sp. n., female paratype: dorsal view of idiosoma.
Figure 2 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Mukhim DKB, Adam C (2017) A new feather mite species of the genus Proterothrix Gaud, 1968 (Acarina, Proctophyllodidae) from the Large Niltava, Niltava grandis (Passeriformes, Muscicapidae) – an integrative description. ZooKeys 661: 1-14. https://doi.org/10.3897/zookeys.661.11793
Figure 2 - Proterothrix chachulae sp. n., male holotype: ventral view of idiosoma.
Fig. 1 in New record of two feather mites (Acari: Sarcoptiformes: Astigmata) from Korea
Fig. 1. Zachvatkinia larica, male. Scale bar: 0.2 mm.
Figure 4 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Khlur B MD, Adam C (2018) A new feather mite species of the genus Trouessartia Canestrini, 1899 (Acarina, Trouessartiidae) – an integrative description (morphology and DNA barcoding data). ZooKeys 789: 19-35. https://doi.org/10.3897/zookeys.789.27829
Figure 4 Trouessartianiltavae Constantinescu, sp. n., female paratype: dorsal view of idiosoma.
Figure 2 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Khlur B MD, Adam C (2018) A new feather mite species of the genus Trouessartia Canestrini, 1899 (Acarina, Trouessartiidae) – an integrative description (morphology and DNA barcoding data). ZooKeys 789: 19-35. https://doi.org/10.3897/zookeys.789.27829
Figure 2 Trouessartianiltavae Constantinescu, sp. n., male holotype: ventral view of idiosoma.
Figure 1 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Khlur B MD, Adam C (2018) A new feather mite species of the genus Trouessartia Canestrini, 1899 (Acarina, Trouessartiidae) – an integrative description (morphology and DNA barcoding data). ZooKeys 789: 19-35. https://doi.org/10.3897/zookeys.789.27829
Figure 1 Trouessartianiltavae Constantinescu, sp. n., male holotype: dorsal view of idiosoma.
Figure 5 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Khlur B MD, Adam C (2018) A new feather mite species of the genus Trouessartia Canestrini, 1899 (Acarina, Trouessartiidae) – an integrative description (morphology and DNA barcoding data). ZooKeys 789: 19-35. https://doi.org/10.3897/zookeys.789.27829
Figure 5 Trouessartianiltavae Constantinescu, sp. n., female paratype: ventral view of idiosoma.
Figures 3–6. Tyranniphyllodes pitangi gen. n in Two new genera and five new species of the feather mite subfamily Proctophyllodinae (Astigmata: Proctophyllodidae) from suboscine birds in Brazil
Figures 3–6. Tyranniphyllodes pitangi gen. n., sp. n., male legs I–IV, dorsal views.
Feather traits, wing morphology and abundance of southern populations of Sylvia atricapilla related to altitudinal movements
<p>Moult of birds is shaped by environmental and genetic drivers whose relative contribution to the structure of feathers may differ within and between populations. In this study we compare some traits of tail feathers (growth bars, mass, rachis width and barb length) between four populations of the Eurasian blackcap (<i>Sylvia atricapilla</i>) breeding at different elevations within the southwestern Palaearctic. We tested if these traits were related to the primary productivity of habitats (a surrogate of food availability) or were better explained as an adaptation to altitudinal movements. The distribution of primary productivity was positively related to blackcap abundance suggesting that the species tracked the most productive areas to breed. In this environmental setting, wing morphology (wing length, concavity and pointedness) suggested that lowland blackcaps were sedentary while blackcaps from highland areas were involved in altitudinal movements. The feathers of blackcaps inhabiting the highlands showed wider growth bars and rachis than those of the most productive lowland areas, but did not differ in feather mass and barb length. Fast feather growth has been related to time constraints to moult and wider rachis to improve flight efficiency in migratory birds. Our results therefore suggest that differences in feather characteristics between southern populations of the Eurasian blackcap are better interpreted as an adaptive response to altitudinal migration than as a consequence of regional food availability.</p>
Figure 1 from: Han Y-D, Mironov SV, Kim J-H, Min G-S (2021) Feather mites (Acariformes, Astigmata) from marine birds of the Barton Peninsula (King George Island, Antarctica), with descriptions of two new species. ZooKeys 1061: 109-130. https://doi.org/10.3897/zookeys.1061.71212
Figure 1 Alloptes (Sternalloptes) antarcticus sp. nov., male A dorsal view B ventral view.
Figure 2 from: Han Y-D, Mironov SV, Kim J-H, Min G-S (2021) Feather mites (Acariformes, Astigmata) from marine birds of the Barton Peninsula (King George Island, Antarctica), with descriptions of two new species. ZooKeys 1061: 109-130. https://doi.org/10.3897/zookeys.1061.71212
Figure 2 Alloptes (Sternalloptes) antarcticus sp. nov., female A dorsal view B ventral view.
Figure 6 from: Han Y-D, Mironov SV, Kim J-H, Min G-S (2021) Feather mites (Acariformes, Astigmata) from marine birds of the Barton Peninsula (King George Island, Antarctica), with descriptions of two new species. ZooKeys 1061: 109-130. https://doi.org/10.3897/zookeys.1061.71212
Figure 6 Ingrassia chionis sp. nov., female A dorsal view B ventral view.
Figure 5 from: Han Y-D, Mironov SV, Kim J-H, Min G-S (2021) Feather mites (Acariformes, Astigmata) from marine birds of the Barton Peninsula (King George Island, Antarctica), with descriptions of two new species. ZooKeys 1061: 109-130. https://doi.org/10.3897/zookeys.1061.71212
Figure 5 Ingrassia chionis sp. nov., male A dorsal view B ventral view.
Figure 2 in A contribution to avian ectoparasite fauna of Turkey: the reports of feather mites and tick on the Great tit (Parus major L.)
Figure 2. Ixodes frontalis (larva), A. Coxae; B. Ventral of capitulum. Scale bar: 150 μm.
Green Feather Edged Whiteware
Green feather edged whiteware, Prospect Bluff Historic Sites, 1814-1816 Model by Emma Dietrich This model was made using RealityCapture software by Capturing Reality. Source: Objaverse 1.0 / Sketchfab
Figure 4 in Accumulation of chromium, cadmium and arsenic in white-tailed sea-eagle feathers ( Haliaeetus albicilla) from the Danube Delta Biosphere Reserve and surrounding (Romania)
Figure 4. Accumulation level of cadmium identified in the feathers sorted by age.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.