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967 results for “cerrado”
FIGURE 7 in A new species of Bachia Gray, 1845 (Squamata: Gymnophthalmidae) from the Eastern Brazilian Cerrado, and data on its ecology, physiology and behavior
FIGURE 7. Variation on head scalation on Bachia bresslaui: A) the holotype from an unknown locality at São Paulo state (MZUSP 4737); B) from Brasilia, DF (MZUSP 91658), with a similar head scalation to the holotype; C) from an unknown locality (MZUSP 91599), showing contact between parietal and supralabial; D) from Bataguassu, MS (MZUSP 78211) also with parietal and supralabial in contact, and with no contact between frontal and nasal; E) from UHE Ponte de Pedra, MT (MZUSP 98760), showing seven supralabials, and also; F) from Itiquira, MT (MZUSP 99345).
FIGURE 4 in A new species of Bachia Gray, 1845 (Squamata: Gymnophthalmidae) from the Eastern Brazilian Cerrado, and data on its ecology, physiology and behavior
FIGURE 4. Distributional records of Bachia species of B. bresslaui group at the Central Brazil. Examined specimens are represented by symbols outlined in white; Type localities represented by central black dot. Two records of B. bresslaui at Planalto dos Gerais presented with an question mark were not examined and may represent B. geralista sp. nov. São Paulo state record presented with a question mark represents the unknown type locality for Bachia bresslaui.
FIGURE 5 in A new species of Bachia Gray, 1845 (Squamata: Gymnophthalmidae) from the Eastern Brazilian Cerrado, and data on its ecology, physiology and behavior
FIGURE 5. Habitat and microhabitat of Bachia geralista sp. nov., at Peruaçu valley region: (A) an individual and its track imprinted in the sandy soil; (B) typical cerrado vegetation found at the area; (C) a Pequi tree (Caryocar brasiliense); (D) the large cover of leaves under a Pequi tree; (E) detail of soil profile covered by a large layer of leaves; (F) general view of the regenerated cerrado habitat, dominated by Porcada bushes (Copaifera martii).
FIGURE 6 in A new species of Bachia Gray, 1845 (Squamata: Gymnophthalmidae) from the Eastern Brazilian Cerrado, and data on its ecology, physiology and behavior
FIGURE 6. Physiological and behavioral results: A) Box-plots represent maximum daily temperatures reached in the different microhabitats available to B. geralista sp. nov. Horizontal grey bars show temperatures voluntarily experienced by 10 individuals of B. geralista sp. nov. within laboratory thermal gradients. Dashed red line indicates highest temperature experienced by B. geralista sp. nov. in the lab, grey indicates voluntary maximum. B) Use of tail in one captive B. geralista sp. nov., arrow indicates cloacal region. C) Juveniles B. geralista sp. nov. grouped together within the terrarium.
FIGURE 3 in A new species of Bachia Gray, 1845 (Squamata: Gymnophthalmidae) from the Eastern Brazilian Cerrado, and data on its ecology, physiology and behavior
FIGURE 3. Paratypes of Bachia geralista sp. nov. (A) from Parque Nacional Grande Sertão Veredas, MG (MZUSP 99473) and (B) from São Desidério, BA (MZUSP 100021).
FIGURE 1 in A new species of Bachia Gray, 1845 (Squamata: Gymnophthalmidae) from the Eastern Brazilian Cerrado, and data on its ecology, physiology and behavior
FIGURE 1. Lateral (A), dorsal (B) and ventral (C) views of the head of the holotype of Bachia geralista sp. nov. (MZUSP 99408). Bar represents 5 mm.
FIGURE 2 in A new species of Bachia Gray, 1845 (Squamata: Gymnophthalmidae) from the Eastern Brazilian Cerrado, and data on its ecology, physiology and behavior
FIGURE 2. Living paratopotypes of Bachia geralista sp. nov. from Parque Nacional Cavernas do Peruaçu, Minas Gerais state, Brazil, showing color pattern with a distinct dorsolateral yellowish stripe (A) and with a dorsolateral stripe faded (B).
FIGURE 4 in Ephemeroporus quasimodo sp. nov. (Crustacea: Cladocera: Chydoridae), a new species from the Brazilian Cerrado
FIGURE 4. Ephemeroporus quasimodo sp. nov., appendages of parthenogenetic female: A–E, limb I (A, endites; B, maxillar process and endite seta j; C, IDL and ODL; D–F, setae d to f of endite 2); G–H, limb II (G, endite and gnathobase; H, exopodite); I-M, limb III (I. exopodite; J, distal endite and inner portion; K, basal endite and gnathobase; L, bottle-shaped sensillum of basal endite; M, geniculated seta of gnathobase); N–Q, limb IV (N, exopodite; O, endite and gnathobase; P, inner portion; Q, distal armature of gnathobase); R–S, Limb V (R. general view; S. inner portion); T, epipodites (ep) of limb I to V. mp: maxillar process; s: sensillum.
FIGURE 1 in Ephemeroporus quasimodo sp. nov. (Crustacea: Cladocera: Chydoridae), a new species from the Brazilian Cerrado
FIGURE 1. Ephemeroporus quasimodo sp. nov., from Lagoa do Henrique, Brasília (type locality): A, adult parthenogenetic female, holotype (MZUSP 30277); B, ephippial female; C, male.
FIGURE 3 in Ephemeroporus quasimodo sp. nov. (Crustacea: Cladocera: Chydoridae), a new species from the Brazilian Cerrado
FIGURE 3. Ephemeroporus quasimodo sp. nov., parthenogenetic female (A–G) and male (H–K). A–B, labrum; C, antennule; D–E, antenna (D, rami; E, setae); F–G, mandibles; H, male habitus; I, male antennule; J, male postabadomen; K, copulatory hook of male limb I.
FIGURE 5 in Ephemeroporus quasimodo sp. nov. (Crustacea: Cladocera: Chydoridae), a new species from the Brazilian Cerrado
FIGURE 5. Ephemeroporus quasimodo sp.nov. parthenogenetic female (A-G): A, habitus; B, dorsal view; C, detail of head, labral keel and antennae; D, postabdomen; E, postabdominal distal angle and claw; F, distal part of claws (arrow shows the flagellum); G, Postero-ventral angle and posterior margin of the carapace. Ephippial female (H–I): H, habitus. I, detail ephippium surface. Scale bars correspond to 100 µm (A, B, H), 10 µm (C, D, G, I), and 1 µm (E, F).
FIGURE 2 in Ephemeroporus quasimodo sp. nov. (Crustacea: Cladocera: Chydoridae), a new species from the Brazilian Cerrado
FIGURE 2. Ephemeroporus quasimodo sp. nov., parthenogenetic female: A, adult female (from Lagoa do Henrique); B–D, juveniles (B, from Lagoa Joaquim Medeiros; C–D, from Lagoa do Henrique); E–G, valve (E, general; F, anterior; G, ventralposterior angle); H–J, head shield (H, lateral view; I, dorsal view, not flattened; J, dorsal view, flattened); K–L, postabdomen (K, juvenile; L, adult).
FIGURE 18 in Three new species of Proceratophrys Miranda-Ribeiro 1920 from Brazilian Cerrado (Anura, Odontophrynidae)
FIGURE 18. Holotype of Proceratophrys dibernardoi sp. nov. (CHUNB 28131) from Municipality of Mineiros, State of Goiás, Brazil. A) dorsal view; B) ventral view; C) head profile; D) palmar view; E) plantar view. Bars equal 10 mm.
FIGURE 19 in Three new species of Proceratophrys Miranda-Ribeiro 1920 from Brazilian Cerrado (Anura, Odontophrynidae)
FIGURE 19. Dorsal view of individuals from series type of Proceratophrys dibernardoi. Females on upper row and males on inferior row.
FIGURE 14 in Three new species of Proceratophrys Miranda-Ribeiro 1920 from Brazilian Cerrado (Anura, Odontophrynidae)
FIGURE 14. Unvouchered male of Proceratophrys branti sp. nov. from Estação Ecológica do Jalapão, Municipality of Mateiros, State of Tocantins, Brazil. Photo: Janalee P. Caldwell.
FIGURE 10 in Three new species of Proceratophrys Miranda-Ribeiro 1920 from Brazilian Cerrado (Anura, Odontophrynidae)
FIGURE 10. Unvouchered adult male of Proceratophrys bagnoi sp. nov. from Serra da Mesa, Municipality of Minaçu, State of Goiás, Brazil. Photo: Antonio Sebben.
FIGURE 11 in Three new species of Proceratophrys Miranda-Ribeiro 1920 from Brazilian Cerrado (Anura, Odontophrynidae)
FIGURE 11. Holotype of Proceratophrys bagnoi sp. nov. (CHUNB 35803) from Serra da Mesa, State of Goiás, Brazil. A) dorsal view; B) ventral view; C) head profile; D) palmar view; E) plantar view. Bars equal 10 mm.
FIGURE 9 in Three new species of Proceratophrys Miranda-Ribeiro 1920 from Brazilian Cerrado (Anura, Odontophrynidae)
FIGURE 9. Detail of the eyelid ornamentation of Proceratophrys bagnoi sp. nov., showing warts belonging to the dorsal-ocular ridge of warts and tubercles of the upper eyelid. Note the development of the medial eyelid appendage.
FIGURE 8 in Three new species of Proceratophrys Miranda-Ribeiro 1920 from Brazilian Cerrado (Anura, Odontophrynidae)
FIGURE 8. Contact point between the ocular-dorsal ridge of warts and the external eyelid margin tubercles. A) posterior third in Proceratophrys branti sp. nov.; B) medial in Proceratophrys bagnoi sp. nov.; and C) posterior edge in Proceratophrys dibernardoi sp. nov.
FIGURE 6 in Three new species of Proceratophrys Miranda-Ribeiro 1920 from Brazilian Cerrado (Anura, Odontophrynidae)
FIGURE 6. Different patterns of rows of enlarged forearm tubercles. A) two rows of very close and enlarged forearm tubercles in Proceratophrys dibernardoi sp. nov. (bar = 3 mm); B) one row of enlarged tubercles, but showing some scattered ones, not organized in row, in Proceratophrys goyana (bar = 4 mm); C) two spaced rows of enlarged forearm tubercles, not closely disposed in Proceratophrys bagnoi sp. nov. (bar = 4 mm).
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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)
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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.