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1,994 results for “Tailings”
Tail Vertebrae
Tail Vertebrae of Brachiosaurus Atalaiensis found on Atalaia, Lourinhã - Portugal. This specific example is assumed to have an average of 150 million years old. Source: Objaverse 1.0 / Sketchfab
Supplementary material 1 from: Haemig P (2014) Aztec introduction of the great-tailed grackle in ancient Mesoamerica: Formal defense of the Sahaguntine historical account. NeoBiota 22: 59-75. https://doi.org/10.3897/neobiota.22.6791
This file show in bold type the novel parts of my submitted manuscript
Raw Bibliobmetric Data for the article "The Scientific Landscape of Phytoremediation of Tailings: A Bibliometric and Scientometric Analysis"
<p>Bibliometric data for CiteSpace related to the scientific article "The Scientific Landscape of Phytoremediation of Tailings: A Bibliometric and Scientometric Analysis".</p>
Fig 1 in Tail and fin rot disease and antibiotics resistance pattern in major rainbow trout farms of Nepal
Fig 1: Survey and Sample Collection site
Accounting for viewshed area and animal availability when estimating density and recruitment of unmarked white-tailed deer
<p>Quantifying demography of wildlife is vital to population monitoring; however, studies using physical capture methods can prove challenging. Camera traps have gained popularity as a density estimator tool in recent decades due to noninvasive data collection, reduced labor, cost efficiency, and large-scale monitoring capabilities. Many wildlife populations are comprised of individuals with no unique natural markers for individual identification, resulting in the need for unmarked abundance models. The recently developed Space-to-Event (STE) model offers a method for density estimation of unmarked populations using timelapse photography. STE relates detections of animals to camera sampling area (i.e., viewshed), resulting in density estimates that can be extrapolated to abundance over large areas. Consequently, this makes STE sensitive to estimates of viewshed area as small changes in viewshed could significantly affect density estimation. Using STE, we estimated density and recruitment of white-tailed deer (<em>Odocoileus virginianus</em>) in a densely forested landscape using measurements of viewshed per camera. We compared estimates of abundance derived from uniquely measured viewshed to estimates of abundance derived from an assumed viewshed area held constant across all cameras. When using a constant viewshed across all cameras, our point estimates of abundance shifted away from uniquely measured viewshed estimates in predictable ways, depending upon how much area was sampled. Additionally, we demonstrated the need for further exploration of animal availability at fine temporal scales by comparing estimates of density derived from sampling the full diel period to estimates derived from periods of peak activity (i.e., crepuscular periods). Finally, we extended the usefulness of the STE model by using densities of fawns and adult females to derive estimates of fawn recruitment.</p>
Remote camera monitoring and arboreal trapping data for a reintroduced population of red-tailed phascogales (Phascogale calura)
<p>Effective monitoring methods are required to evaluate the success of wildlife reintroduction programs. To improve the threat status of the Vulnerable red-tailed phascogale (<em>Phascogale calura</em>), the Australian Wildlife Conservancy reintroduced the species to a fenced reserve at Mt. Gibson Wildlife Sanctuary. After trialing a variety of post-release monitoring methods, remote camera monitoring and arboreal trapping with an extensive period of pre-luring provided the most information with which to evaluate the success of the reintroduction. To date, reintroduced red-tailed phascogales have increased in both occupancy and population size following releases which began at Mt. Gibson in 2017. Other managers of red-tailed phascogale populations may find the described methods useful, particularly in the context of multi-species reintroductions where trap saturation can reduce capture rates of smaller species, such as phascogales.</p>
Figure 3 in The fast-calling short-tailed cricket Anurogryllus celerinictus Walker, 1973 (Orthoptera: Gryllidae) occurs in Cuba, Greater Antilles
Figure 3. Male genitalia of Anurogryllus celerinictus, views: a) dorsal, b) lateral, c) ventral.
Data from: Reduced palatability, fast flight, and tails: Decoding the defence arsenal of Eudaminae skipper butterflies in a Neotropical locality
<p>Prey often rely on multiple defences against predators, such as flight speed, attack deflection from vital body parts, or unpleasant taste, but our understanding on how often and why they are co-exhibited remains limited. Eudaminae skipper butterflies use fast flight and mechanical defences (hindwing tails), but whether they use other defences like unpalatability (consumption deterrence), and how these defences interact, has not been assessed.</p> <p>We tested the palatability of 12 abundant Eudaminae species in Peru, using training and feeding experiments with domestic chicks. Further, we approximated the difficulty of capture explained by flight speed and quantified by wing loading. We performed phylogenetic regressions to find any association between multiple defences, body size, and habitat preference.</p> <p>We found a broad range of palatability in Eudaminae, within and among species. Contrary to current understanding, palatability was negatively correlated with wing loading, suggesting that faster butterflies tend to have lower palatability.</p> <p>The relative length of hind wing tails did not explain the level of butterfly palatability, showing that attack deflection and consumption deterrence are not mutually exclusive. Habitat preference (open or forested environments) did not explain the level of palatability either, although butterflies with high wing loading tended to occupy semi-closed or closed habitats.</p> <p>Finally, the level of unpalatability in Eudaminae is size dependent. Larger butterflies are less palatable, perhaps because of higher detectability/preference by predators. Altogether, our findings shed light on the contexts favouring the prevalence of single vs. multiple defensive strategies in prey.</p>
Fig. 1 in Trypanosomes genetic diversity, polyparasitism and the population decline of the critically endangered Australian marsupial, the brush tailed bettong or woylie (Bettongia penicillata)
Fig. 1. Geographical origin of the different species of marsupials trapped in this study.
Fig. 1 in Comparison of natural and artificial odor lures for nilgai (Boselaphus tragocamelus) and white-tailed deer (Odocoileus virginianus) in South Texas: Developing treatment for cattle fever tick eradication
Fig. 1. The location of the study site (Santa Rosa Ranch) near Riviera, TX.
Fig. 3 in Comparison of natural and artificial odor lures for nilgai (Boselaphus tragocamelus) and white-tailed deer (Odocoileus virginianus) in South Texas: Developing treatment for cattle fever tick eradication
Fig. 3. Lure bucket recessed into soil at each treatment location at the Santa Rosa Ranch.
Fig. 4 in Comparison of natural and artificial odor lures for nilgai (Boselaphus tragocamelus) and white-tailed deer (Odocoileus virginianus) in South Texas: Developing treatment for cattle fever tick eradication
Fig. 4. Distribution of animal visits to lure sites at the Santa Rosa Ranch, near Riviera, TX.
TAIL-seq for Xenopus laevis oocytes and embryos in various conditions (internal ID: ms97)
<p>This dataset contains the raw sequencing data from a TAIL-seq run for Xenopus laevis embryos. The cluster intensities of fluorescence signals are repacked as an HDF5 formatted file, then split into multiple parts to fit in the dataset size limitation of the Zenodo.</p>
TAIL-seq for X. laevis embryo injected with TUT4 and/or TUT7 morpholinos (internal ID: ms123)
<p>This dataset contains the raw sequencing data from a TAIL-seq run for Xenopus laevis embryos. The cluster intensities of fluorescence signals are repacked as an HDF5 formatted file, then split into multiple parts to fit in the dataset size limitation of the Zenodo.</p>
TAIL-seq for PABPC1, XRN1, RRP41 KD HeLa samples (internal ID: ms102)
<p>TAIL-seq, MiSeq run (internal ID: ms102)</p> <p>spkN, spk8, spk16, spk32, spk64, spk118, spk128 spike-ins</p> <p>siCont, siCont2, siPABP, siPABPXRN1, siPABPRRP41, siPABPXRN1RRP41 samples</p> <p>This dataset contains cluster intensities of fluorescence signals that are repacked as an HDF5 formatted file.</p> <p> </p>
PIC data for 2019 JGR paper (An event study of simultaneous earthward and tailward bursty fast flows in the Earth's mid-tail)
<p>The PIC data and an IDL script to read the data.</p>
Plate 1 in Population status and distribution assessment of Nicobar Long-Tailed Macaque Macaca Fascicularis Umbrosus (Miller, 1902) in Nicobar Group of Islands
Plate 1. Nicobar Long tailed Macaque in its natural forested habitat.
Figure 6 in Rediscovery of the scorpion tailed orb-weaver, Arachnura melanura Simon 1867 (Araneae: Araneidae) from India
Figure 6. Distribution map for Arachnura species in India.
Figure 2 in Ensemble distribution modeling of the Mesopotamian spiny-tailed lizard, Saara loricata (Blanford, 1874), in Iran: an insight into the impact of climate change
Figure 2. The habitat suitability map of the Mesopotamian spiny-tailed lizard in southwestern Iran.
Fig. 1 in Bartonella, Blechomonas and Trypanosoma in fleas from the long-tailed ground squirrel (Spermophilus undulatus) in northwestern China
Fig. 1. Map of northwestern China showing sampling sites and coordinates.
ScienceDex guides
Understand access before you commit
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.