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.
4,490
datasets available to search
ShareScore release 0.9.0
Dataset results
4,490 results for “Brazilian species”
FIGURE 12 in RedescriptionofAcropsisGrant,1958(Orthoptera:Tettigoniidae:Phaneropterinae Microcentrini) and description of new species from Brazilian and Colombian Amazon Rainforest
FIGURE 12. Acropsis julianae sp. nov., stridulatory file of male. A: left file; B: right file.
FIGURE 9 in RedescriptionofAcropsisGrant,1958(Orthoptera:Tettigoniidae:Phaneropterinae Microcentrini) and description of new species from Brazilian and Colombian Amazon Rainforest
FIGURE 9. Acropsis solimoesensis sp. nov., stridulatory file of male. A: left file; B: right file.
FIGURE 3 in RedescriptionofAcropsisGrant,1958(Orthoptera:Tettigoniidae:Phaneropterinae Microcentrini) and description of new species from Brazilian and Colombian Amazon Rainforest
FIGURE 3. Acropsis tectiformis, stridulatory file of male. A: left file; B: right file.
Figure 3 from: Santos D, Saraiva RVC, Ferraz TM, Arruda ECP, Buril MT (2020) A threatened new species of Ipomoea (Convolvulaceae) from the Brazilian Cerrado revealed by morpho-anatomical analysis. PhytoKeys 151: 93-106. https://doi.org/10.3897/phytokeys.151.49833
Figure 3 A, BIpomoea maranhensisA arrangement of vascular bundles in U; prominent/concave main rib shape B dorsiventral mesophyll C–FI. burchelliiC arrangement of vascular bundles in V; convex/flat main rib shape D mesophyll isobilateral E glandular trichomes restricted to the abaxial surface of the leaf (red arrow) F parenchymatous tissue with isodiametric cells (Photos by E. Pereira Arruda). AD: adaxial epidermis; AB: abaxial epidermis; Is: isodiametric cells; Pa: Parenchymatous tissue; Pp: palisade parenchyma; Sp: spongy parenchyma; Vb: vascular bundle; Tr: trichome.
Figure 1 from: Santos D, Saraiva RVC, Ferraz TM, Arruda ECP, Buril MT (2020) A threatened new species of Ipomoea (Convolvulaceae) from the Brazilian Cerrado revealed by morpho-anatomical analysis. PhytoKeys 151: 93-106. https://doi.org/10.3897/phytokeys.151.49833
Figure 1 A–FIpomoea maranhensisA branch with leaves (abaxial surface) and flowers B branch with leaves (adaxial surface) and floral buds C leaf in abaxial view presenting sericeous aspect D floral bud E sepals F ovary (Photos by F. Santos and Flora do Brasil 2019).
Figure 2 from: Santos D, Saraiva RVC, Ferraz TM, Arruda ECP, Buril MT (2020) A threatened new species of Ipomoea (Convolvulaceae) from the Brazilian Cerrado revealed by morpho-anatomical analysis. PhytoKeys 151: 93-106. https://doi.org/10.3897/phytokeys.151.49833
Figure 2 A–HIpomoea maranhensisA twining habit B primary and secondary veins on the abaxial surface C floral bud D sepals with apex long acuminate E flower F open corolla G stamen H gynoecium. Drawn by Regina Carvalho from Félix et al. 8136.
Fig. 7. A, C in Reassessment of the taxonomic status of Pseudopaludicola parnaiba (Anura, Leptodactylidae, Leiuperinae), with the description of a new cryptic species from the Brazilian Cerrado
Fig. 7. A, C. First and second dimensions of the Multidimensional scaling on the proximity scores from the randomForest analysis of adult males of Pseudopaludicola coracoralinae sp. nov. from the type locality (red dots) and P. facureae Andrade & Carvalho, 2013 from the type locality (blue dots). A. Morphometric traits. C. Acoustic traits. Each dot represents an adult male. The circles around the dots represent how males were classified. B, D. Dotcharts of variable importance score as indicated by the randomForest analysis. B. Morphometric traits. D. Acoustic traits.
Fig. 6. A in Reassessment of the taxonomic status of Pseudopaludicola parnaiba (Anura, Leptodactylidae, Leiuperinae), with the description of a new cryptic species from the Brazilian Cerrado
Fig. 6. A. Oscillogram of the entire advertisement call of Pseudopaludicola coracoralinae sp. nov. with the introductory notes followed by three series of tonal notes. B. Audiospectrogram (top) and corresponding oscillogram (bottom) detailing three notes. The male was recorded on 8 November 2016 at 18:08 h; air temperature 26°C, water temperature 29°C; recording_label: Pseudop_ coracoralinaePalmeirasGoiasGO5cFSA_AAGmt.
Fig. 3 in Reassessment of the taxonomic status of Pseudopaludicola parnaiba (Anura, Leptodactylidae, Leiuperinae), with the description of a new cryptic species from the Brazilian Cerrado
Fig. 3. Maximum likelihood tree recovered for the phylogenetic relationships of Pseudopaludicola Miranda-Ribeiro, 1926 based on the 12S rRNA, tRNA-val and 16S rRNA mitochondrial genes. Numbers near the nodes are bootstrap values and black dots represent bootstrap = 100; support below species level is not shown.
Fig. 2. A in Reassessment of the taxonomic status of Pseudopaludicola parnaiba (Anura, Leptodactylidae, Leiuperinae), with the description of a new cryptic species from the Brazilian Cerrado
Fig. 2. A. First and second dimensions of the Multidimensional scaling on the proximity scores from the randomForest analysis considering acoustic traits of adult males of Pseudopaludicola canga Giaretta & Kokubum, 2003 from the type locality (red dots), P. parnaiba Roberto, Cardozo & Ávila, 2013 from the type locality (green dots), Pseudopaludicola sp. 3 sensu Veiga-Menoncello et al. 2014 (blue dots) and P. canga from TO (purple dots). Each dot represents an adult male. The circles around the dots represent how males were classified. B. Dotcharts of variable importance score considering acoustic traits as indicated by the randomForest analysis.
Fig. 1 in Reassessment of the taxonomic status of Pseudopaludicola parnaiba (Anura, Leptodactylidae, Leiuperinae), with the description of a new cryptic species from the Brazilian Cerrado
Fig. 1. Partial map of South America showing the Brazilian domains and samples of the species included in our molecular, morphological and acoustic comparisons. The type localities of the species are indicated with stars: Pseudopaludicola coracoralinae sp. nov. in Palmeiras de Goiás, GO (red star), P. facureae Andrade & Carvalho, 2013 in Uberlândia, MG (blue star), P. canga Giaretta & Kokubum, 2003 in Marabá, PA (yellow star) and P. parnaiba Roberto, Cardozo & Ávila, 2013 in Ribeiro Gonçalves, PI (green star). Municipalities: 1 = Barreirinhas (MA); 2 = Santo Amaro do Maranhão (MA); 3 = Aragominas (TO); 4 = Palmas (TO); 5 = Mateiros (TO); 6 = São Desidério (BA). Veiga-Menoncello et al. (2014) first noticed a taxonomic unit which they called as Pseudopaludicola sp. 3 from Barreirinhas, MA. Since then it has been treated as a species not yet formally described. It is represented here as P. canga from the localities 1 and 2.
Fig. 4 in Reassessment of the taxonomic status of Pseudopaludicola parnaiba (Anura, Leptodactylidae, Leiuperinae), with the description of a new cryptic species from the Brazilian Cerrado
Fig. 4. Pseudopaludicola coracoralinae sp. nov., holotype (ZUEC 24704, SVL = 13.1 mm), an adult ♂ from Palmeiras de Goiás, GO, Brazil. A. Dorsal view. B. Ventral view. C. Head, lateral view. D. Head, dorsal view. E. Right hand, ventral view. F. Right foot, ventral view. Scale bar (only for C, D, E, F) = 5 mm.
Figure 2 in New species of Australopericoma Vaillant (Diptera: Psychodidae) from the Brazilian semiarid region and key to males of the genus
Figure 2. Australopericoma paraibana Cordeiro & Bravo sp. nov. (A) dorsal view of male terminalia in detail; (B) gonopods and gonocoxal bridge in detail.
Figure 3 in Food niche of Exomalopsis (Exomalopsis) fulvofasciata Smith (Hymenoptera: Apidae) in Brazilian savannah: the importance of oil-producing plant species as pollen sources
Figure 3. Absolute abundance of pollen types and the number of types observed in each sample. (A) Ecological Station of Panga, MG (ESP), and (B) State Park of Serra de Caldas Novas, GO (SPSCN).
Figure 5 in Food niche of Exomalopsis (Exomalopsis) fulvofasciata Smith (Hymenoptera: Apidae) in Brazilian savannah: the importance of oil-producing plant species as pollen sources
Figure 5. Abundance of pollen types according to grain size categories: small (S) and medium (M) in two natural areas. (A) Ecological Station of Panga, MG (ESP), and (B) State Park of Serra de Caldas Novas, GO (SPSCN).
Figure 1 in Food niche of Exomalopsis (Exomalopsis) fulvofasciata Smith (Hymenoptera: Apidae) in Brazilian savannah: the importance of oil-producing plant species as pollen sources
Figure 1. Number of Exomalopsis fulvofasciata recorded on Byrsonima flowers in the two savannah areas. Ecological Station of Panga, MG (ESP) – 1 to 9 and State Park of Serra de Caldas Novas, GO (SPSCN) – 10 to18.
Figure 4 in Food niche of Exomalopsis (Exomalopsis) fulvofasciata Smith (Hymenoptera: Apidae) in Brazilian savannah: the importance of oil-producing plant species as pollen sources
Figure 4. Abundance of pollen types according to the anther type: poricidals (P) and non-poricidals (NP). (A) Ecological Station of Panga, MG (ESP), and (B) State Park of Serra de Caldas Novas, GO (SPSCN).
Figure 14 in Updating the taxonomy of the bee genus Megalopta (Hymenoptera: Apidae, Augochlorini) including revision of the Brazilian species
Figure 14. Distribution records of Megalopta species. (A) M. aegis Vachal (grey circles) and M. aeneicollis Friese (black squares); (B) M. nitidicollis Friese; (C) M. sulciventris Friese; (D) M. amoena Spinola.
Figure 11 in Updating the taxonomy of the bee genus Megalopta (Hymenoptera: Apidae, Augochlorini) including revision of the Brazilian species
Figure 11. Males of Megalopta. (A, C, D). Posterolateral view of mesosoma; (A) M. karitiana sp. n. from Ouro Preto do Oeste, Brazil; (B) ventral view of sternum 3‒4 of M. mapinguari sp. n. from Rio Branco, Brazil; (C) M. mapinguari sp. n. from Rio Branco, Brazil; (D) M. xavante sp. n. from Nova Xavantina, Brazil; (E) dorsal view of mesosoma of M. atlantica Santos & Silveira from Ipanema, Brazil; (F) posterior view of mesosoma of M. purpurata Smith (holotype) from Tefé, Brazil. Scale bar 1 mm.
Figure 10 in Updating the taxonomy of the bee genus Megalopta (Hymenoptera: Apidae, Augochlorini) including revision of the Brazilian species
Figure 10. Males of Megalopta. (A, C) Frontal view of head; (B, D) frontal view of flagellomeres; (A) M. purpurata Smith (holotype) from Tefé, Brazil; (B) M. atlantica Santos & Silveira from Ipanema, Brazil; (C) M. yanomami sp. n. from Parauapebas, Brazil; (D) M. piraha sp. n. from Manaus, Brazil; (E) lateral view of sternum 4 of M. guarani sp. n. from Chapada dos Guimarães, Brazil; (F) posterolateral view of basal area of mesosoma M. guarani sp. n. from Chapada dos Guimarães, Brazil. Scale bar 1 mm, except in E, scale bar 0.1 mm.
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.