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.
76
datasets available to search
ShareScore release 0.9.0
Dataset results
76 results for “Cebidae”
Fig. 3. Demodex midae n in A new species of Demodex (Acari: Demodecidae) from the skin of golden-handed tamarins, Saguinus midas (Primates: Cebidae)
Fig. 3. Demodex midae n. sp. (A) Holotype male, ventral view. (B) Holotype male, dorsal view. (C) Spines on the right palpus, male, ventral view. (D) Supracoxal spine, male, dorsal view, arrows indicate the orientation of the left spine as a view on the gnathosoma. (E) Claw on the leg of tarsi, male. (F) Aedeagus. (G) Female, ventral view. (H) Egg. ae: aedeagus, op: opisthosomal organ, sg: subgnathosomal setae (setae n), sc: supracoxal spine (setae elc.p), vu: vulva. Scale bars = 20 μm (A, B, G, H) and 1 μm (C–F).
Fig. 2 in A new species of Demodex (Acari: Demodecidae) from the skin of golden-handed tamarins, Saguinus midas (Primates: Cebidae)
Fig. 2. Demodectic mange in a male golden-handed tamarin (case 1). (A) Macrophage/histiocyte accumulate and form nodules around the follicles that have filled and expanded with demodecid mites. H&E. Scale bar = 1 mm. (B) Dilated hair follicles are filled with transverse or cross sections of demodecid mites. The monotonous infiltrating macrophage/histiocyte surrounding the follicle has round to slightly irregular nuclei and abundant eosinophilic cytoplasm. Numerous mitotic figures are seen. H&E. Scale bar = 50 μm. (C) Almost all macrophage/histiocytes are strongly immunolabeled with Iba-1. Scale bar = 1 mm. (D) Numerous macrophage/histiocytes are immunolabeled for Ki-67 with a Ki-67 labeling index of 85.5%. Scale bar = 50 μm. (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 A new species of Demodex (Acari: Demodecidae) from the skin of golden-handed tamarins, Saguinus midas (Primates: Cebidae)
Fig. 4. Maximum likelihood phylogenetic trees of Demodex (Trombidiformes: Cheyletoidea: Demodecidae). (A) 18S sequence-based rooted phylogenetic tree with Myobia (Trombidiformes: Prostigmata: Myobiidae) as outgroup and Cheletomimus and Neochelacheles (Trombidiformes: Cheyletoidea: Cheyletidae) as related species of Demodex. (B) 16S sequence-based midpoint-rooting tree. Accession numbers are shown in roman next to the taxa names. Nodes are labeled with bootstrap values greater than 60%. Scale bars represent substitutions per site.
Fig. 1 in A new species of Demodex (Acari: Demodecidae) from the skin of golden-handed tamarins, Saguinus midas (Primates: Cebidae)
Fig. 1. Photographs of a male red-handed tamarin of case 1. (A and B) On initial examination, hair loss, and scale are found on the face, especially severe on the left temple, with numerous psoriasis-like plaques. (C and D) Findings of five months after treatment with fluralaner showing resolution of related lesions. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Linked collectors and determiners for: Colecta de muestras fecales de primates (Atelidae y Cebidae) para la determinación de prevalencia de Plasmodium sp..
Natural history specimen data linked to collectors and determiners held within, "Colecta de muestras fecales de primates (Atelidae y Cebidae) para la determinación de prevalencia de Plasmodium sp.". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/b8c76c85-1658-46dc-bfd2-c8dc548c3557">https://bionomia.net/dataset/b8c76c85-1658-46dc-bfd2-c8dc548c3557</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/b8c76c85-1658-46dc-bfd2-c8dc548c3557">https://gbif.org/dataset/b8c76c85-1658-46dc-bfd2-c8dc548c3557</a>. Formatted as a Frictionless Data package.
Figure 1 in Inter-group conflicts involving adult female and male bearded capuchins, Sapajus libidinosus (Primates: Cebidae), in the context of provisioned resources: resource defense or sexual selection?
Figure 1. The study site is an isolated fragment of forest, surrounded by an urban matrix: Bosque Bougainville in Goiânia, Goiás, Brazil. Source: ArcGIS Data and Maps©.
Figure 7 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 7. Top view of male specimens of the skulls of T. i. imperator (A = MZUSP 11238) and T. i. subgrisescens (B = MZUSP 4806), illustrating the difference in the general aspect.While in T. i. imperator the skull is more delicate and noticeably smaller, the skull of T. i. subgrisescens has both greater size and robustness.
Figure 2 in A comparison between affiliative and agonistic behaviours in wild and captive Sapajus libidinosus (Spix, 1823) (Mammalia, Primates, Cebidae)
Figure 2. Relative frequencies of social activities presented by free-living (Grey) and captive individuals (Black): (A) Affiliative behaviours and (B) Agonistic behaviours. We observed 10 different types of social behaviour, which occurred under both captivity and free-living conditions.
Figure 4 in A comparison between affiliative and agonistic behaviours in wild and captive Sapajus libidinosus (Spix, 1823) (Mammalia, Primates, Cebidae)
Figure 4. Captivity reduces agonistic interactions and does not change affiliative interactions. (A) Median and quartiles of the frequency of affiliative (A) and agonistic (B) behaviours presented by captive and free-living groups of S. libidinosus, separated by sex.
Figure 3 in A comparison between affiliative and agonistic behaviours in wild and captive Sapajus libidinosus (Spix, 1823) (Mammalia, Primates, Cebidae)
Figure 3. Relative frequency of social behaviours for each of the ten studied groups (BG = Baixa Grande; JB = Jurubeba; PF = Pedra Furada; OT = Oitenta; GT = Gato; FJZB = Fundação Jardim Zoológico de Brasília; PEDI = Parque Estadual Dois Irmãos; PZT2 = Parque Zoobotânico deTeresina (ilha 2); PZT3 = Parque Zoobotânico de Teresina (ilha 3); PZT1 = Parque Zoobotânico de Teresina (ilha 1). Under free-living conditions, agonistic behaviours were proportionally more frequent than were affiliative behaviours.
Figure 2 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 2. Comparison of some characters between T. i. imperator (A) and T. i. subgrisescens (B) (ventral view). Note the short white hairs tuft, blackish chin, and greyish-brown hairs on the lateral of the arm in A (arrow), and a long tuft of hairs, brown chin, and the lateral fringe of hairs silvery greyish in B (arrow).
Figure 6 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 6. Lateral of the face. Note the hairy ear in T. i. imperator (A) and naked in T. i. subgrisescens (B).
Figure 5 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 5. Rump and dorsal base of the tail grayish in T. i. imperator (A) and rufous in T. i. subgisescens (B).
Figure 4 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 4. Pelage patterns in T. i. imperator. (A, B, and C) MPEG 914, lectotype. (D, E, and F) MZUSP 4931 and 5012 from Manuel Urbano, Acre, Brazil. Note the dark greyish-brown tail (E), rufous belly (C, F), blackish throat and chin, no beard (F), and haired ear (B).
Figure 9 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 9. Bayesian phylogeny of the genus Saguinus inferred by Cytochrome-b abd 16S data. The posterior probability values are given above the branches.The outgroup was composed of Callimico, Callibella, Callithrix, Cebuella, Mico, and Lentopithecus species.
Figure 7 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 7. Top view of male specimens of the skulls of T. i. imperator (A = MZUSP 11238) and T. i. subgrisescens (B = MZUSP 4806), illustrating the difference in the general aspect.While in T. i. imperator the skull is more delicate and noticeably smaller, the skull of T. i. subgrisescens has both greater size and robustness. Applying the unified concept of species (de Queiroz, allopatric speciation (Gao et al., 2019), ecological stud- 2007) with several sources of evidence not only provides ies of T. imperator and T. subgrisescens might corroborate robustness to the delimitation of lineages, and there- our hypothesis of two lineages evolving independently fore species, but also allows inferences about more com- (Blanckaert et al., 2020). The second challenge is the deplex speciation processes to observe, such as parapatric limitation of the contact zone between the two taxa on speciation (Gao et al., 2019). Considering that parapat- the Acre-Peru border and checking for the presence or ric speciation occurs usually by the environmental gradi- absence of the hybridization zone, which could be due to ent (dispersion – Florio et al., 2012) and not by geograph- secondary contact or evolutionary processes that could ic/environmental ruptures as commonly postulated for be recent and ongoing.
Figure 1 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 1. Schematic skull of Tamarinus showing the delimitation of the measures used in the morphometric analyses.
Figure 10 in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 10. Map of the geographic distribution of T. imperator (circles) and T. subgrisescens (triangle).
Figure 8. PCA and MANOVA scatterplot representing S. i in Taxonomic status of Tamarinus imperator subgrisescens (Lönnberg, 1940) (Cebidae, Callitrichinae)
Figure 8. PCA and MANOVA scatterplot representing S. i. imperator (green) and S. i. subgrisescens from Peru (pink) and Brazilian Amazon (purple).
Data from: Phylogenomics of Amazonian squirrel monkeys (<em>Saimiri</em>: Primates, Cebidae)
Open the record for dataset details and reuse information.
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.