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141 results for “calving”
Fig. 9 in High winter loads of Oestrid larvae and Elaphostrongylus rangiferi are associated with emaciation in wild reindeer calves
Fig. 9. Calculated mean air temperature (◦C) in the main summer pasture area of the Hardangervidda wild reindeer population for individual summers (June–August) 1989–2018. The summers of 2014 and 2015 are marked with a black circle. The dotted horizontal line shows the mean (7.4 ◦C) for the 30- year-period.
Fig. 5 in High winter loads of Oestrid larvae and Elaphostrongylus rangiferi are associated with emaciation in wild reindeer calves
Fig. 5. Cephenemyia trompe larvae in the pharynx/nasopharynx of a calf killed on Hardangervidda in spring 2015. Note the paired, swollen retropharyngeal lymph nodes (Ln).
Fig. 4 in High winter loads of Oestrid larvae and Elaphostrongylus rangiferi are associated with emaciation in wild reindeer calves
Fig. 4. Translucent white first stage Cephenemyia trompe larvae (1 mm) in the nasal mucosa of a calf killed on Hardangervidda in autumn 2014.
Fig. 10 in High winter loads of Oestrid larvae and Elaphostrongylus rangiferi are associated with emaciation in wild reindeer calves
Fig. 10. Calculated number of summer days (June–August) with a mean air temperature ≥12 ◦C in the main summer pasture area of the wild reindeer population on Hardangervidda. The figure shows the mean and range for the 30-year period 1989–2018, and the mean for individual years 2014 and 2015 as well as for the five years with a higher mean temperature than in 2014.
Fig. 8 in High winter loads of Oestrid larvae and Elaphostrongylus rangiferi are associated with emaciation in wild reindeer calves
Fig. 8. Group of adult hair-thin, about 3–5 cm long Elahostrongylus rangiferi nematodes in the muscle fascia of a calf killed on Hardangervidda in spring 2015.
Fig. 1 in High winter loads of Oestrid larvae and Elaphostrongylus rangiferi are associated with emaciation in wild reindeer calves
Fig. 1. Map of southern Norway showing the location of the 24 Norwegian wild tundra reindeer populations. The Hardangervidda population (No. 16) is marked with brighter tan.
Fig. 2 in High winter loads of Oestrid larvae and Elaphostrongylus rangiferi are associated with emaciation in wild reindeer calves
Fig. 2. Kernel Density Analysis, visualizing the main pasture area of radio-collared females in the wild reindeer population in Hardangervidda during June, July, and number of GPS positions recorded. Calculated center at UTM 32V: 426706–6650377 and average altitude at 1283m. The center in the previously used summer area with an asterisk. The red lines represent summer trails for hikers marked by the Norwegian Tourist Association. (For interpretation of the references to color in this figure of this article.)
Fig. 7 in High winter loads of Oestrid larvae and Elaphostrongylus rangiferi are associated with emaciation in wild reindeer calves
Fig. 7. Verminous pneumonia in a calf killed on Hardangervidda in spring 2015. Numerous confluent granulomas containing Elaphostrongylus rangiferi eggs and hatched first stage larvae. Haematoxylin and eosin stain. Bar, 100 μm.
Fracture maps and calving fronts for Thwaites Glacier western terminus 2015-2021
<p>These data comprise observations of severe crevassing and calving front position over the Thwaites Glacier Ice Tongue (TGIT) between 2015 and 2021 in geotiff form, along with bitmap versions of Sentinel-1 backscatter images from which the observations were derived. A version of UNet was used to create the data from the backscatter images.<br> These data were collected in 2021 for the study of structural change on the TGIT.</p> <p>File information: tgit_cfs.tar.gz is a gz-compressed directory of binary calving front segmentations of the Thwaites Glacier Ice Tongue in geotiff format.<br> tgit_fms.tar.gz is a gz-compressed directory of binary fracture segmentations of the Thwaites Glacier Ice Tongue in geotiff format.</p>
Out-of-the-box calving front detection method using deep learning
<p>The calving front predictions of the <a href="https://www.nature.com/articles/s41592-020-01008-z">nnU-Net</a> on a benchmark <a href="https://doi.pangaea.de/10.1594/PANGAEA.940950">dataset</a>.<br> GitHub: https://github.com/ho11laqe/nnUNet_calvingfront_detection<br> Publication: https://tc.copernicus.org/preprints/tc-2023-34/</p>
Data from: Development and application of a scoring system for septum injuries in beef calves with and without a nose flap
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Data from: Development and application of a novel approach to scoring ear tag wounds in dairy calves
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Data from: Wound healing and pain sensitivity following caustic paste disbudding in dairy calves
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Data from: Response to novel feed in dairy calves is affected by prior hay provision and presentation method
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Data from: Behavioral changes in the first 3 weeks after disbudding in dairy calves
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Data from: Providing long hay in a novel pipe feeder or a bucket reduces some, but not all abnormal oral behaviors in milk-fed dairy calves
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Calving season habitat selection of maternal and non-maternal female moose in Southwest Alaska, U.S.A
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Data from: The biogeochemical boomerang: Site fidelity creates nutritional hotspots that may promote recurrent calving site reuse
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Data from: Digit ratio and length asymmetry in calves' limbs
<p>This study considered possible sexual dimorphism in the relative lengths of the second, third and fourth digits (digit ratio), in calves. Furthermore, a different length of the bone structures of the third (3D) and of the fourth (4D) digits has been examined as an evolutionary adaptation to locomotion on soft ground. The length of the digital bones of the right fore-limb of 33 females and 15 male calves was measured in vivo using a portable X-ray machine. The vestigial structure of the second digit (2D), and 3D and 4D, from metacarpus to the third phalanx were considered in a mixed model, as well as some ratios between 2D and different parts of 3D or 4D (2D:3D and 2D:4D). A covariate for the mean finger length was considered for digit ratios to control for possible biases due to shape allometry. Shorter first phalanx and trotter were found in 3D than in 4D, and the reverse for the third phalanx. The 2D was significantly shorter in females, as well as the second phalanges of 3D and 4D. Significant sex differences in 2D:3D and 2D:4D were found for some digit parts of 3D and 4D and for the first phalanges of 3D:4D. These ratios were always shorter in females, in contrast to that found in most mammals. The asymmetry between 3D and 4D could mean a functional adaptation for locomotion. Sex differences in 2D:4D and 3D:4D were found, but with a reverse pattern than in most mammal species (males > females rather than males < females). In this regard digit ratio in calves was similar to that of Old World monkeys. This study is the first investigation of digit ratio in Ungulates, whose limbs differ from the limbs of most Mammals, maintaining five digits. The reverse pattern of sex differences (digit ratios: males > females) could be due to the peculiar nature of the vestigial dewclaw of 2D and to the hormone patterns acting on this digit during development, but further research is required around this topic.</p>
Data and Figures for "Glacier Terminus Morphology Informs Calving Style"
<p>Data and figures for the submitted study "Glacier Terminus Morphology Informs Calving Style" (Pending review at GRL).</p> <p> </p> <p>Folders correspond to directories in notebooks provided on https://github.com/sgoliber/TerminusMorpho.</p> <p> </p> <p>The folder "figures" provides the figures in the manuscript.</p> <p><br><br>The folder "data" provides both primary and derived data for the study. Original<a href="https://www.pgc.umn.edu/guides/stereo-derived-elevation-models/pgc-dem-products-arcticdem-rema-and-earthdem/"> PGC DEMs</a> are not provided here due to size restriction, but can be downloaded directly from PGC. Please contact the author if you need the original files.</p>
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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.