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4,490 results for “Brazilian species”
Figure 5 in A new species of Cladochaeta Coquillettı 1900 (Diptera: Drosophilidae) associated with Sphodroscarta trivirgata (Amyot & Servilleı 1843) (Auchenorrhyncha: Aphrophoridae) from the Brazilian Amazon rainforest
Figure 5. Cladochaeta amorimi sp. nov., paratype female terminalia. (a) lateral view. (b) dorsal view. (c) ventral view. Abbreviations: at: apical tergite; ep: epiproct; hy: hypoproct; lb: lateral lobe; ps: penultimate sternite; pt: penultimate tergite.
Figure 2 in A new species of Cladochaeta Coquillettı 1900 (Diptera: Drosophilidae) associated with Sphodroscarta trivirgata (Amyot & Servilleı 1843) (Auchenorrhyncha: Aphrophoridae) from the Brazilian Amazon rainforest
Figure 2. Cladochaeta amorimi nov. sp., holotype. (a) Lateral habitus. (b) Head, lateral view. (c) Head and thorax, dorsal view. Abbreviations. a dc s: anterior dorcentral seta; a rc orb s: anterior reclinate orbital seta; acr s: acrosthical setulae; ap sctl s: apical scutellar seta; b sctl s: basal scutellar seta; i vt s: inner vertical seta; kepst s: katepisternal setae; o vt s: outer vertical seta; p dc s: posterior dorsocentral seta; pc orb s: proclinate orbital seta; pprn s: postpronotum setae; sbvb s: subvibrissal setae; sct: scutum; sctsctl sut: scutuscutellar suture; scutl: scutellum; vb: vibrissa. Scale bars: 0.5 mm.
Figure 3 in A new species of Cladochaeta Coquillettı 1900 (Diptera: Drosophilidae) associated with Sphodroscarta trivirgata (Amyot & Servilleı 1843) (Auchenorrhyncha: Aphrophoridae) from the Brazilian Amazon rainforest
Figure 3. Cladochaeta amorimi nov. sp., holotype. (a) Wing. (b) Head, frontal view. (c) Antenna. Abbreviations: a rc orb s: anterior reclinate orbital seta; ap. f: apical fork; ar: arista; r-m: basal medialcubital crossvein; d-1: first dorsal branch; d-2: second dorsal branch; d-3: third dorsal branch; d-4: forth dorsal branch; dm-m: discal medialcrossvein; fc: face; flgm 1: first flagellomere; h: humeral crossvein; i vt s: inner vertical seta; infr s: interfrontal setulae; M1: medial vein; M4: fourth medial vein; o vt s: outer vertical seta; oc s: ocellar seta; p rc orb s: posterior reclinate orbital seta; pc orb s: proclinate orbital seta; ped: pedicel; poc s: postocellar seta; R1: anterior branch of radius; R2+3: second longitudinal vein; R4+5: third longitudinal vein; sc: subcostal vein; scp: scape; vb: vibrissa; vent. br: ventral branch. Scale bars: 0.1 mm.
Figure 1 in A new species of Cladochaeta Coquillettı 1900 (Diptera: Drosophilidae) associated with Sphodroscarta trivirgata (Amyot & Servilleı 1843) (Auchenorrhyncha: Aphrophoridae) from the Brazilian Amazon rainforest
Figure 1. (a) Upland forest of the scientific station Ferreira Penna (ECFPn) in the national forest of Caxiuanã, Brazil. (b) Young plant Cecropia sciadophylla with an arrow pointing to the spittle mass produced by nymphs of Sphodroscarta trivirgata. (c) Spittle mass produced by nymphs of Sphodroscarta trivirgata with an arrow pointing to the pupae of Cladochaeta amorimi sp. nov. (d) Twig of Cecropia sciadophylla with pupal cases of Cladochaeta amorimi sp. nov. (e) Adult of Sphodroscarta trivirgata.
Figure 2 in A new species of Allorhogas (Hymenoptera: Braconidae: Doryctinae) inducing ovule galls on Miconia chamissois Naudinı a potentially invasive shrub in the Brazilian cerrado
Figure 2. Galls induced by Allorhogas uberlandiensis sp. nov. on the floral buds of its host plant, Miconia chamissois Naudin (Melastomataceae). (a) photograph of 'cerrado' biome showing plants of M. chamissois. (b) plant of M. chamissois. (c) fruits and 'fruit-like' galls. (d) internal longitudinal view of a 'fruit-like' gall showing the locules (GL) formed by the ovary hypertrophy. (e) internal transversal view showing the four locules, each one occupied by an ovule-gall. The insect remains inside the ovule-gall capsule until its emergence from pupa (IE). Afterwards, wings start to expand until it is still inside the fruit-like gall and after it leaves (EA) by opening another hollow (see in C; FLG). IF – Immature fruit, MF – Mature Fruit, FLG – Fruit-like gall, GL – Gall locule, IA – Emerged Adult, IE – Insect emergence, EOG – Empty Ovule-gall.
Figs. 14–15. M in Myrciamyia pterandrae (Diptera, Cecidomyiidae, Lopesiini), a new species of gall midge associated with Pterandra pyroidea A. Juss. (Malpighiaceae), an endemic plant in Brazilian Cerrado
Figs. 14–15. M. pterandrae Maia & Flor, sp. nov., male. 14. Abdomen (from sixth segment to end) (lateral view). 15. Terminalia (dorsal view). Scale bars in mm.
Figs. 16–17. M in Myrciamyia pterandrae (Diptera, Cecidomyiidae, Lopesiini), a new species of gall midge associated with Pterandra pyroidea A. Juss. (Malpighiaceae), an endemic plant in Brazilian Cerrado
Figs. 16–17. M. pterandrae Maia & Flor, sp. nov., female. 16. Abdomen (from sixth segment to end) (lateral view). 17. Ovipositor (lateral view). Scale bars in mm.
Figs. 9–13. M in Myrciamyia pterandrae (Diptera, Cecidomyiidae, Lopesiini), a new species of gall midge associated with Pterandra pyroidea A. Juss. (Malpighiaceae), an endemic plant in Brazilian Cerrado
Figs. 9–13. M. pterandrae Maia & Flor, sp. nov., adults. 9. Male head (frontal view). 10. Fifth male flagellomere. 11. Fifth female flagellomere. 12. Foreleg, tarsal claw and empodium (lateral view). 13. Hindleg, tarsal claws and empodium (lateral view). Scale bars in mm.
Figs. 4–6. M in Myrciamyia pterandrae (Diptera, Cecidomyiidae, Lopesiini), a new species of gall midge associated with Pterandra pyroidea A. Juss. (Malpighiaceae), an endemic plant in Brazilian Cerrado
Figs. 4–6. M. pterandrae Maia & Flor, sp. nov., immature stages. 4–5. Larva. 4. Spatula and lateral papillae (ventral view). 5. Terminal segment with terminal papillae (dorsal view).6.Pupal headand prothoracicspiracle (ventralview).Scalebarsinmm.
Figs 1–3. Host plant, P. pyroidea A in Myrciamyia pterandrae (Diptera, Cecidomyiidae, Lopesiini), a new species of gall midge associated with Pterandra pyroidea A. Juss. (Malpighiaceae), an endemic plant in Brazilian Cerrado
Figs 1–3. Host plant, P. pyroidea A. Juss. (Malpighiaceae). 1. General aspect. 2. Galled leaf (galls induced by M. pterandrae Maia & Flor, sp. nov.). 3. Plant reaction against the gall induction.
FIGURE 3 in Morphological identification of species of the Nuneztovari Complex of Anopheles (Diptera: Culicidae) from an area affected by a Brazilian hydroelectric plant
FIGURE 3. Difference in length of the subapical leaflets between An. goeldii/An. nuneztovari A and An. nuneztovari collected in the area of the Belo Monte HPP.
FIGURE 2. A–F in Morphological identification of species of the Nuneztovari Complex of Anopheles (Diptera: Culicidae) from an area affected by a Brazilian hydroelectric plant
FIGURE 2. A–F, Aedeagal morphology: A–C, An. goeldii/An. nuneztovari A; D–F, An. nuneztovari. The subapical leaflets are enclosed in red circles. G,H, Ventral claspette: G, An. goeldii/An. nuneztovari A; H, An. nuneztovari.
Fig. 10 in Notes on the Brazilian species of Purenleon Stange (Neuroptera: Myrmeleontidae), with description of two new species
Fig. 10. Purenleon rafaeli sp. n.: a) male terminalia, lateral view; b) male genitalia, lateral view; c) male genitalia, posteroventral view; d) male genitalia, posterior view; e) female terminalia, lateral view; f) female pregenital plate, lateral view; g) female pregenital plate, posterior view; h) female terminalia, posterior view. E = ectoproct; G = gonarcus; LG = lateral gonapophyses; M = mediuncus; P = paramere; PG = posterior gonapophyses; PP = pregenital plate; S = sternite; T = tergite. Scale bar = 0.5mm.
Fig. 9 in Notes on the Brazilian species of Purenleon Stange (Neuroptera: Myrmeleontidae), with description of two new species
Fig. 9. Purenleon rafaeli sp. n.: a) head, anterior view; b) thorax, dorsal view; c) wings; d) mid tibia. Scale bar = 1mm.
Fig. 3 in Notes on the Brazilian species of Purenleon Stange (Neuroptera: Myrmeleontidae), with description of two new species
Fig. 3. Holotype of Purenleon cautus (Walker): a) habitus dorsal; b) labels. Scale bar = 10mm. Photos provided by Benjamin Price (BMNH).
FIGURE 5. Acropsis tectiformis, female. A in RedescriptionofAcropsisGrant,1958(Orthoptera:Tettigoniidae:Phaneropterinae Microcentrini) and description of new species from Brazilian and Colombian Amazon Rainforest
FIGURE 5. Acropsis tectiformis, female. A: habitus, dorsal view; B: head, frontal view; C: head and pronotum, dorsal view; D: head and pronotum, lateral view; E: Thoracic sternites, ventral view; F–G: Terminalia in ventral and dorsal view respectively; H: ovipositor, lateral view. Abbreviations: Mes: mesobasisternum; Met: metabasisternum; Cer: cerci; Ovp: ovipositor; Pl: subgenital plate.
FIGURE 7 in Unraveling the species diversity and relationships in the Leptodactylus mystaceus complex (Anura: Leptodactylidae), with the description of three new Brazilian species
FIGURE 7. Trill call (formed by 35 nonpulsed notes) of Leptodactylus cupreus from Porto Seguro (Bahia state, northeastern Brazil). Call recorded by C. S. Cassini and V. G. D. Orrico on 3 April 2012. See Cassini et al. (2013) for a quantitative description of the species' call.
FIGURE 3 in Unraveling the species diversity and relationships in the Leptodactylus mystaceus complex (Anura: Leptodactylidae), with the description of three new Brazilian species
FIGURE 3. (a) Pairwise genetic distances (x-axis) of 96 individuals belonging to the Leptodactylus mystaceus complex using a 377-bp 16S gene fragment dataset, showing the most likely transition gap between intraspecific (left) and interspecific genetic (right) distances as identified by the ABGD analysis. (b) Summary results of species delimitations based on the mitochondrial dataset using ABGD (with four distinct priors of relative gap width) and bGMYC models. b = Total genetic breaks found in each model. Abbreviations are as follows: barr = L. barrioi, didy = L. didymus, kilo = L. kilombo, elen = L. elenae, myst = L. mystaceus, cf.myst = L. cf. mystaceus, notk = L. notoaktites, spix = L. spixi, and watu = L. watu.
FIGURE 8 in Unraveling the species diversity and relationships in the Leptodactylus mystaceus complex (Anura: Leptodactylidae), with the description of three new Brazilian species
FIGURE 8. Holotype of Leptodactylus kilombo (CHUFPB 28204; SVL = 37.6 mm). (a) Dorsal and (b) ventral body; (c) palm of hand; (d) sole of foot; (e) head in profile. Scale bars = 5 mm.
FIGURE 3 in A new superfamily and family of Hadziida (Amphipoda: Senticaudata), with a description of a new genus and new species from the Brazilian continental shelf
FIGURE 3. Magnovis elizabethae sp. nov.; Holotype, male 12 mm, Campos Basin (40°20'16''W, 20°19'8''S), MBT 180, Campos Basin, Brazil, UFBA 3123. Scale bars: 0.3 mm.
ScienceDex guides
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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.