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427 results for “Ducks”
FIG. 6 in The modern ontological natures of the Cairina moschata (Linnaeus, 1758) duck. Cases from Perú, the northern hemisphere, and digital communities
FIG. 6. — Seller of domestic birds in popular market,Trujillo (photo Jorge Gamboa).
Data: Implanted satellite transmitters affect sea duck movement patterns at short and long time scales
<p>This data file consists of state-space model-derived locations and individual data used to analyze transmitter effects for sea ducks in Eastern North America and is associated with the manuscript "Implanted satellite transmitters affect sea duck movement patterns at short and long time scales" published in Condor. Columns are organized as follows:</p> <p>id - unique identifier</p> <p>species - species from which the centroid was obtained (BLSC = black scoter, COEI = common eider, LTDU = long-tailed duck, SUSC = surf scoter, WWSC = white-winged scoter)</p> <p>date - date of location (mm/dd/yy)</p> <p>jday - Julian date of location</p> <p>tracking_day - number of days post-transmitter deployment</p> <p>year - calendar year of location</p> <p>lon - longitude of location</p> <p>lat - latitude of location</p> <p>b - average assignment of location to either migrant (1) or resident (2) across all runs of the state-space model</p> <p>b.5 - most probable behavioral category based on average state assignment (1 = b ≤ 1.5 ; 2 = b > 1.5)</p> <p>sex - sex of individual (M = male, F = female)</p> <p>age - age of individual (HY = hatch year, SY = second year, TY = third year, ASY = after second year, ATY = after third year, AHY = after hatch year</p> <p>capture_reg - general area where individual was captured</p> <p>capture_subreg - specific region within capture region where individual was captured</p> <p>stage - period of the annual cycle to which the centroid belongs (W = winter, B = breeding, S = spring staging, M = fall staging and molt, WM = winter migration, BM = breeding migration, MM = molt migration, SM = spring migration)</p> <p>site - position of centroid within season (i.e., W1 = first site occupied during winter, W2 = second site occupied, etc.)</p> <p>cycle - number of annual cycles following transmitter attachment (1 = first cycle after attachment, 2 = second cycle after attachment, etc.)</p> <p>season - season of annual cycle in which centroid occurred (W = winter, F = fall, B = breeding, S = spring)</p>
Data from: Who is spreading avian influenza in the moving duck flock farming network of Indonesia?
Duck populations are considered to be a reservoir of Highly pathogenic avian influenza (HPAI) virus H5N1 in some agricultural production systems, as they are able to shed the virus for several days without clinical signs. Countries endemically affected with HPAI in Asia are characterised by production systems where ducks are fed on post-harvest spilled rice. During this scavenging process it is common for ducks to come into contact with other duck flocks or wild birds, thereby providing opportunities for virus spread. Effective risk management for HPAI has been significantly compromised by a limited understanding of management of moving duck flocks in these countries, despite of a small number of recent investigations. Here, for the first time, we described the management of moving duck flocks and the structure of the moving duck flock network in quantitative terms so that factors influencing the risk of HPAIV transmission can be identified. By following moving duck flock farmers over a period of 6 months in Java, Indonesia, we were able to describe the movement of flocks and to characterise the network of various types of actors associated with the production system. We used these data to estimate the basic reproductive number for HPAI virus spread. Our results suggest that focussing HPAI prevention measures on duck flocks alone will not be sufficient. Instead, the role of transporters of moving duck flocks, hatcheries and rice paddy owners, in the spread of the HPAI virus needs to be recognised.
Data from: Survival and phenology of ducklings of Mallard, Domestic Duck and Gadwall in The Netherlands
<p>Previous analysis of demographic parameters of the Mallard (<em>Anas platyrhynchos</em>) population hinted at low duckling survival driving the decline, but no empirical data on duckling survival in the Netherlands were available. To address this knowledge gap, we initiated a citizen science project in 2016 to collect basic information about Mallard breeding biology and duckling survival. In the slipstream of this project, we also collected data for Domestic Duck (<em>A. platyrhynchos forma domestica</em>) and Gadwall (<em>Mareca strepera</em>) for comparison. </p> <p>Here we archive the research data underlying the analyses and graphs of the this publication in Limosa (2024, 97:49-61): "Survival and phenology of dablings of Mallard <em>Anas platyrhynchos</em>, Domestic Duck <em>A. platyrhynchos forma domestica</em> and Gadwall <em>Mareca strepera</em> in The Netherlands" (Dutch title: "Overleving en fenologie van kuikens van Wilde Eend, Soepeend en Krakeend in Nederland") by Erik Kleyheeg, Loes van den Bremer, Chris van Turnhout, Ties Maris, Eelke Jongejans & Niek van Rabenswaaij.</p> <p> </p> <p>The data file <strong><span>“waarnemingen 2016-2020 Limosa.csv”</span></strong><span> contains the following variables:</span></p> <p><span>year: Year of the study (2016 up to 2020)</span></p> <p><span>date: Date of observation</span></p> <p><span>time: Time of observation</span></p> <p><span>ID: Identifier of observation</span></p> <p><span>ID_family: Identifier of mallard family/brood (useful in case of successive observations)</span></p> <p><span>species: Species (dom = domestic duck/feral mallard, gad = gadwall, mal = mallard)</span></p> <p><span>N_chicks: Reported number of chicks</span></p> <p><span>age: Estimated age in weeks (1 = 0 to 1 week old, etc.)</span></p> <p><span>age_days: Estimated age in days</span></p> <p><span>observer: Anonymized observer</span></p> <p><span>remark: Remark</span></p> <p><span>latitude: Latitude of observation</span></p> <p><span>longitude: Longitude of observation</span></p> <p><span>surface: Whether ducklings were on land or water</span></p> <p><span>shore: Type of shoreline nearest to ducklings (emb = timbering/revetment, nhv = high vegetation, nlv = low </span><span>vegetation, nno = no vegetation, oth = other)</span></p> <p><span>water: Water quality (cle = clear, tur = turbid, wee = covered with duckweed, oth = other) </span></p> <p><span>N_deaths: Number of ducklings observed perishing during the observation</span></p> <p><span>cause_deaths: Observed cause of death (agg = aggression, bre = grey heron, bui = buzzard, hon = dog, kat = cat, nijl = Egyptian goose, pre = predator unknown, sno = pike, zkr = carrion crown, zon = mammal unknown, oth = other)</span></p> <p><span>breadfeeding: Whether or not ducks are fed with bread regularly at the site of the observation</span></p>
Duck Bone (VCU_3D_2788)
This bone was archaeologically recovered from the south yard at James Madison's Montpelier. It was 3D scanned with a NextEngine Desktop 3D scanner. This object was 3D scanned to expand the digital offerings of the Virginia Foundation for the Humanities Encyclopedia Virginia related to slavery in Virginia. This scanning project is supported with funding from the National Endowment for the Humanities. Courtesy of James Madison's Montpelier. Source: Objaverse 1.0 / Sketchfab
Super Mario Bros. / Duck Hunt NES Cartridge
Created using photogrammetry for the Vintage Video museum Classic Nintendo entertainment system game super mario bros/duck hunt vintagevideomuseum.com Scan By austin Beaulier Austinbeaulier.com Source: Objaverse 1.0 / Sketchfab
Woman, Duck, And Tapestry
3D Scan from the Metropolitan Museum of Art in New York. Captured with SiteScape.ai on the iPad equipt iPad Pro Source: Objaverse 1.0 / Sketchfab
Data from: Who is spreading avian influenza in the moving duck flock farming network of Indonesia?
Open the record for dataset details and reuse information.
Real-time PCR analysis during mule duck development
GEO Series GSE157687. Anas platyrhynchos x Cairina moschata. 137 samples. Type: Expression profiling by RT-PCR.
Dietary Linseed Oil Affects the Polyunsaturated Fatty Acid and Transcriptome Profiles in the Livers and Breast Muscles of Ducks
GEO Series GSE214632. Anas platyrhynchos. 20 samples. Type: Expression profiling by high throughput sequencing.
Duck versus Quail
GEO Series GSE11029. Mus musculus; Homo sapiens; Coturnix japonica; Anas platyrhynchos; Gallus gallus. 17 samples. Type: Expression profiling by array.
NANOG is required for the long-term establishment of avian somatic reprogrammed cells [duck]
GEO Series GSE109969. Anas platyrhynchos. 6 samples. Type: Expression profiling by high throughput sequencing.
Expression data from low- and high-pathogenicity avian influenza-infected chicken and duck cells
GEO Series GSE33389. Gallus gallus; Anas platyrhynchos. 16 samples. Type: Expression profiling by array.
Sexually Dimorphic Sail Feathers in the Mandarin Duck: A Model for Lifelong Developmental Modulation [RNA-seq]
GEO Series GSE308466. Aix galericulata. 8 samples. Type: Expression profiling by high throughput sequencing.
Genome-wide circRNA profiling reveals that circGAS2-2 are abundantly expressed and regulates myoblast proliferation in indigenous Chinese duck breed
GEO Series GSE152947. Anas platyrhynchos. 6 samples. Type: Non-coding RNA profiling by high throughput sequencing.
Control of RNA pol II speed by PNUTS-PP1 and Spt5 dephosphorylation facilitates termination by a “sitting duck torpedo” mechanism
GEO Series GSE134198. Homo sapiens. 84 samples. Type: Expression profiling by high throughput sequencing; Genome binding/occupancy profiling by high throughput sequencing.
Genome-wide microRNA profiling and target gene prediction in different embryonic muscle developmental stage of duck breast
GEO Series GSE153629. Anas platyrhynchos. 6 samples. Type: Non-coding RNA profiling by high throughput sequencing.
Sexually Dimorphic Sail Feathers in the Mandarin Duck: A Model for Lifelong Developmental Modulation [ChIP-seq]
GEO Series GSE308467. Aix galericulata. 8 samples. Type: Genome binding/occupancy profiling by high throughput sequencing.
FIGURES 18–19 in Hydrodessus ducke sp. n. and new records of other species of the genus (Coleoptera, Dytiscidae, Bidessini)
FIGURES 18–19. Habitat of Hydrodessus ducke sp. n. Brazil: Amazonas State, Manaus County, Ducke Reserve, Ipiranga stream. Ana M.O. Pes copyright.
FIGURE 17 in Hydrodessus ducke sp. n. and new records of other species of the genus (Coleoptera, Dytiscidae, Bidessini)
FIGURE 17. Hydrodessus species, distributions. Star: H. biguttatus; circle: H. octospilus; square: H. keithi; triangle: H. brasiliensis; hexagon: H. pereirai; inverse triangle: H. latotibialis. Open symbols (previous records), solid symbols (new records).
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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)
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.