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.
808
datasets available to search
ShareScore release 0.9.0
Dataset results
808 results for “dogs”
BarkMeowDB - WAV Files of Dogs and Cats
<p>A small dataset that contains dogs' barking sounds and cats' meowing sounds. Used for 'hello-world' binary audio classification using machine learning and deep learning.</p>
Fig. 4 in First Report of a Case of Prostatitis Due to Acanthamoeba in a Dog
Fig. 4. Phylogenetical analysis of the DF3 sequence of the Acanthamoeba strain isolated from the prostate revealed that the strain belonged to genotype T4.
Text-fig. 1. Bottom view of the spoke bone of the excavated greyhound-like dog (above) and the spoke bone of a dog of the same size category (below). The gracility of the spoke bone of the greyhound-like dog is clearly visible. Photo by D. Nývlt. in Genetic Analysis Of Possibly The Oldest Greyhound Remains Within The Territory Of The Czech Republic As Proof Of A Local Elite Presence At Chotěbuz-Podobora Hillfort In The 8 -9 Century Ad
Text-fig. 1. Bottom view of the spoke bone of the excavated greyhound-like dog (above) and the spoke bone of a dog of the same size category (below). The gracility of the spoke bone of the greyhound-like dog is clearly visible. Photo by D. Nývlt.
Figure 7. A in Genetic characterization of the raccoon dog (Nyctereutes procyonoides), an alien species in the Baltic region
Figure 7. A median joining network based on mtDNA sequences of N. procyonoides. The circles represent haplotypes, with size proportional to relative frequencies. The network branches linking the cycles indicate one mutation step; two or more mutations are represented by slashes crossed with the network branches.
Figure 6. A in Genetic characterization of the raccoon dog (Nyctereutes procyonoides), an alien species in the Baltic region
Figure 6. A geographical distribution of the mtDNA control region haplotypes in Europe. Pie charts show the proportions of haplotypes.
Figure 5. A in Genetic characterization of the raccoon dog (Nyctereutes procyonoides), an alien species in the Baltic region
Figure 5. A Bayesian phylogenetic tree constructed from haplotypes of N. procyonoides, based on the complete sequences of the mitochondrial control region. Numbers above the branches show the Bayesian posterior probabilities. Lithuanian haplotypes were marked with solid triangles. I and II indicate the number of the haplogroup.
Figure 4. A in Genetic characterization of the raccoon dog (Nyctereutes procyonoides), an alien species in the Baltic region
Figure 4. A maximum parsimony tree constructed from haplotypes of N. procyonoides, based on the mtDNA control region. Numbers above the branches show the bootstrap values. Lithuanian haplotypes were marked with solid triangles. I and II indicate the number of the haplogroup.
Figure 2. A in Genetic characterization of the raccoon dog (Nyctereutes procyonoides), an alien species in the Baltic region
Figure 2. A maximum likelihood tree constructed from haplotypes of N. procyonoides, based on the mtDNA control region. Numbers above the branches show the bootstrap values. Lithuanian haplotypes were marked with solid triangles. I, II, and III indicate the number of the haplogroup.
Figure 1. A in Genetic characterization of the raccoon dog (Nyctereutes procyonoides), an alien species in the Baltic region
Figure 1. A map showing: (a) the distribution of raccoon dog N. procyonoides in Europe (Kauhala and Kowalczyk, 2011), and (b) the sampling localities of the present study (triangles). (b) Introduction sites are marked by circles (according to Bobrov et al., 2008). The distribution of mtDNA haplotypes belonging to haplogroup II are marked in outlined triangles.
Figure 3 in The first record of raccoon dog (Nyctereutes procyonoides) in Turkey
Figure 3. Average precipitation (rain and snow) between 2007 and 2018 (data adapted from https://www.snow-forecast.com/resorts/Sarikamis/history).
Figure 2 in The first record of raccoon dog (Nyctereutes procyonoides) in Turkey
Figure 2. Camera trap screenshot of a raccoon dog walking on snow recorded at 22:31 on May 10, 2019, and the same location on June 5, 2019. These pictures were extracted from two different videos and the first and third pictures from the left have been processed with image tools to be more visible and comparable with other species, especially from the family Mustelidae. The habitat, which is shown in this photo, is the same location where we recorded the target species.
Fig. 1 in Evaluating the use of a low dose fipronil bait in reducing black-tailed prairie dog (Cynomys ludovicianus) fleas at reduced application rates
Fig. 1. Flea prevalence (0.0–1.0) during pre-treatment and post-treatment for (A) captured black-tailed prairie dogs (Cynomys ludovicianus); and (B) active burrows. Vertical bars indicate the 95% confidence intervals (95% CI).
Fig. 1 in The raccoon dog (Nyctereutes procyonoides) as a reservoir of zoonotic diseases in Denmark
Fig. 1. Map of Denmark showing the origin of the collected raccoon dogs by county. The colour coding shows differences in the number of raccoon dogs collected. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 2 in Plague transforms positive effects of precipitation on prairie dogs to negative effects
Fig. 2. Relationship between visual count changes in prairie dogs (Cynomys spp.) and annual precipitation (cm) on plots without plague management and with plague management by treating burrows with deltamethrin dust for flea control. Population change (λ) was indexed by visual counts conducted in mid-summer of adults plus juveniles, and annual precipitation was cumulative during the 12-month period prior to the typical date of the second count (interval of 1 July-30 June). Visual counts are presented as treated in the analysis (re-scaled λ, natural log transformed), although the repeated measures analysis retained the pairings of treatments that cannot be illustrated here. Points above the dashed line indicate population increases; points below the dashed line indicate population declines with points on the zero-line indicating population collapse to 0 animals.
Fig. 1 in Plague transforms positive effects of precipitation on prairie dogs to negative effects
Fig. 1. Study sites in the western United States where the influence of precipitation on prairie dog population change was evaluated on paired plots with and without deltamethrin treatment to control the flea vectors of plague. Prairie dog sketch by D. Crawford.
Fig. 1 in Molecular detection and genotypes of Enterocytozoon bieneusi in farmed mink (Neovison vison), blue foxes (Alopex lagopus), and raccoon dogs (Nyctereutes procyonoides) in Xinjiang, China
Fig. 1. Phylogenetic relationships of the E. bieneusi genotypes. The relationships were inferred using NJ analysis of the ITS rRNA gene and the values generated greater than 50% are shown beside the nodes. Genotypes with hollow circles and filled circles are known and novel genotypes identified in this study, respectively.
Fig. 3 in The hidden threat: Exploring the parasite burden and feeding habits of invasive raccoon dogs (Nyctereutes procyonoides) in central Europe
Fig. 3. Examples of ecto- and endoparasites and parasite eggs found in fecal investigation of the examined raccoon dogs, A-B ectoparasites, C-D endoparasites, E-F eggs from endoparasites found through MIFC. A: Chaetopsylla globiceps; B: Trichodectes canis; C: Isthmiophora melis; D: Echinococcus multilocularis; E: eggs from Alaria alata; F: Egg from Toxocara canis.
Fig. 2 in The hidden threat: Exploring the parasite burden and feeding habits of invasive raccoon dogs (Nyctereutes procyonoides) in central Europe
Fig. 2. Examples of different stomach contents of the examined raccoon dogs, A-F each from one stomach. A: mouse, plants, amphibian; B: grass, maize, feathers and bird foot; C: amphibian, insects; D: insects; E: opened stomach filled with grass; F: hair, plant material, feathers, bones and hair.
Fig. 1 in The hidden threat: Exploring the parasite burden and feeding habits of invasive raccoon dogs (Nyctereutes procyonoides) in central Europe
Fig. 1. Origin of the examined raccoon dogs in the different federal states of Germany, red areas show the sampling sites (N = 73). (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 4 in The hidden threat: Exploring the parasite burden and feeding habits of invasive raccoon dogs (Nyctereutes procyonoides) in central Europe
Fig. 4. Diet of the raccoon dog Nyctereutes procyonoides according to percentages of the individual components, components that cannot be further determined are summarized in the respective class, with * marked species are most likely to have been eaten as carrion. On the right side are listed the parasites, which are transmitted via a known intermediate host, which made up part of the food of the examined animals.
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.