Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
1,078
datasets available to search
ShareScore release 0.9.0
Dataset results
1,078 results for “CAT”
Fig. 2 in Occurrence and regional distribution of Aelurostrongylus abstrusus in cats in Germany
Fig. 2 Light micrograph of a dehydrated, damaged and morphologically altered first-stage larva (L1) of Aelurostrongylus abstrusus after flotation using a concentrated salt solution with zinc chloride and sodium chloride (specific gravity, 1.3)
Fig. 1 in Occurrence and regional distribution of Aelurostrongylus abstrusus in cats in Germany
Fig. 1 Light micrograph of the posterior end of the first-stage larva (L1) of Aelurostrongylus abstrusus immobilised by heat
Cat
<p>«<a href="https://www.flickr.com/photos/56597995@N00/5507451122" target="_blank" rel="noopener noreferrer">El gato araña</a>» por <a href="https://www.flickr.com/photos/56597995@N00" target="_blank" rel="noopener noreferrer">dhammza</a> está bajo la licencia <a href="https://creativecommons.org/licenses/by-nc-nd/2.0/?ref=openverse" target="_blank" rel="noopener noreferrer">CC BY-NC-ND 2.0</a>.</p>
Dataset: Caterpillar Inc. (CAT) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Dataset: Red Cat Holdings, Inc. (RCAT) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Figure 1 in Hepatozoon spp. in stray cats from the metropolitan area of Rio de Janeiro, Brazil
Figure 1. Phylogenetic tree showing relationships between isolates obtained in the present study and sequences used in the recent evolutionary analysis on Hepatozoon felis (Panda et al., 2024 [46]). The evolutionary history was inferred by using the Maximum Likelihood method and Hasegawa-Kishino-Yano model. The tree with the highest log likelihood (—783.89) is shown. The percentage of trees in which the associated taxa clustered together is shown above the branches. The tree is drawn to scale, with branch lengths measured in the number of substitutions per site. This analysis involved 58 nucleotide sequences, and there was a total of 184 positions in the final dataset.
Figure 8 in Efficacy of a topical formulation containing esafoxolaner, eprinomectin and praziquantel (NexGard Combo ) against natural infestations with the cat louse, Felicola subrostratus under field conditions
Figure 8. Average score for clinical signs associated with lice in cats from Group 1 (NexGard Combo®).
Figure 9 in Efficacy of a topical formulation containing esafoxolaner, eprinomectin and praziquantel (NexGard Combo ) against natural infestations with the cat louse, Felicola subrostratus under field conditions
Figure 9. Average score for clinical signs associated with lice in cats from Group 2 (Frontline Combo®).
Figure 3 in Efficacy of a topical formulation containing esafoxolaner, eprinomectin and praziquantel (NexGard Combo ) against natural infestations with the cat louse, Felicola subrostratus under field conditions
Figure 3. Number of cats according to the clinical score for pruritus in Group 2 (Frontline Combo®).
Figure 5 in Efficacy of a topical formulation containing esafoxolaner, eprinomectin and praziquantel (NexGard Combo ) against natural infestations with the cat louse, Felicola subrostratus under field conditions
Figure 5. Number of cats according to the clinical score for hair loss in Group 2 (Frontline Combo®).
Figure 1 in Efficacy of a topical formulation containing esafoxolaner, eprinomectin and praziquantel (NexGard Combo ) against natural infestations with the cat louse, Felicola subrostratus under field conditions
Figure 1. Infestation with Felicola subrostratus in domestic cats. (a) Note the adult louse; (b) presence of adult louse and nits.
FIGURE 7 in On the morphological variation and taxonomy of the Geoffroy's cat Leopardus geoffroyi (d'Orbigny & Gervais, 1844) (Carnivora, Felidae)
FIGURE 7: Distribution of the factorial scores in the first and second principal components of the craniometrical variables (in decimal logarithm) of L. geoffroyi female specimens.
FIGURE 4 in On the morphological variation and taxonomy of the Geoffroy's cat Leopardus geoffroyi (d'Orbigny & Gervais, 1844) (Carnivora, Felidae)
FIGURE 4: Distribution of the specimens of L. geoffroyi studied. Numbers correspond to collection localities listed in the gazetteer (see Appendix 2). Gray shadow corresponds to the geographic range of the species suggested by IUCN.
FIGURE 1 in On the morphological variation and taxonomy of the Geoffroy's cat Leopardus geoffroyi (d'Orbigny & Gervais, 1844) (Carnivora, Felidae)
FIGURE 1: Reproduction of the original plates and syntypes of Leopardus geoffroyi (d'Orbigny & Gervais, 1844b, 1847): (A) overall view of the species (plate published in 1844); (B) overall view of the species (plate published in 1847); (C) specimen MNHN-ZM-MO-2001-298; (D) specimen MNHN-ZM-MO-2001-299; and (E) specimen MNHN-ZM-MO-2001-300.Photos of specimens by Cécile Callou (MNHN).
FIGURE 3 in On the morphological variation and taxonomy of the Geoffroy's cat Leopardus geoffroyi (d'Orbigny & Gervais, 1844) (Carnivora, Felidae)
FIGURE 3: Dorsal, ventral and lateral view of skull and lateral view of mandible of an adult male Geoffroy's cat (L. geoffroyi), showing 20 craniometrical variables used in the study. The abbreviations assigned to craniometrical variables correspond to those mentioned in the "Materials and methods" section of the text.
FIGURE 6 in On the morphological variation and taxonomy of the Geoffroy's cat Leopardus geoffroyi (d'Orbigny & Gervais, 1844) (Carnivora, Felidae)
FIGURE 6: Distribution of the factorial scores in the first and second principal components of the craniometrical variables (in decimal logarithm) of L. geoffroyi male specimens.
FIGURE 13 in On the morphological variation and taxonomy of the Geoffroy's cat Leopardus geoffroyi (d'Orbigny & Gervais, 1844) (Carnivora, Felidae)
FIGURE 13: Pattern of coloration and markings in L. geoffroyi: (A) MACN34.556 (unknown sex) from Villa Unión, La Rioja, Argentina; (B) AMNH39010 (male) from Pulqui, Oropeza, Chuquisaca, Bolivia; (C) MACN14590 (female) from Estación Romero, El Cuy, Río Negro, Argentina; (D) MACN47.404 (unknown sex) from Pozo de Maza, Formoza, Argentina; (E) AMNH41555 (unknown sex) from Lavalle, Santiago del Estero, Argentina; (F) AMNH41550 (unknown sex) from Lavalle, Santiago del Estero, Argentina. Bar = 100 mm.
FIGURE 2 in On the morphological variation and taxonomy of the Geoffroy's cat Leopardus geoffroyi (d'Orbigny & Gervais, 1844) (Carnivora, Felidae)
FIGURE 2: (A) lateral and ventral views of the skull (plate published in 1847); (B) lateral view from the skull of one of the syntypes, the specimen MNHN-ZM-MO-2001-300; and (C) dorsal view from the skull of one of the syntypes, the specimen MNHN-ZM-MO-2001-300. Photo of specimens by Cécile Callou (MNHN).
FIGURE 5 in On the morphological variation and taxonomy of the Geoffroy's cat Leopardus geoffroyi (d'Orbigny & Gervais, 1844) (Carnivora, Felidae)
FIGURE 5: Distribution of the putative subspecies of L. geoffroyi over the biomes of southern South America (data obtained from WWF – World Wide Fund for Nature). The stars represent the type localities of the putative subspecies.
FIGURE 12 in On the morphological variation and taxonomy of the Geoffroy's cat Leopardus geoffroyi (d'Orbigny & Gervais, 1844) (Carnivora, Felidae)
FIGURE 12: Geographical analysis of L. geoffroyi: (A) Population samples organized in six geographic groups (North, Northwest, Northeast 1, Northeast 2, Center and South) arranged on a southward direction from southern Bolivia to southern Argentina; (B) Diagrams of first principal component (see Figure 6) for male geographic groups; (C) Diagrams of first principal component (see Figure 7) for female geographic groups; (D) Diagrams of first principal component (see Figure 8) for the geographic groups of male, females and unknown sex specimens combined. Error bars show 95% interval of confidence the mean. The means are represented by black circles in the error bars. The number on the right side of each bar corresponds to the number of specimens for each geographical group.
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.