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2,293 results for “Atlantic forests”
FIGURE 1. Ormosia altimontana A. fruiting branch. B. abaxial leaflet surface, showing the tomentose indument. C in A new species of Ormosia (Leguminosae, Papilionoideae, Sophoreae) from the Brazilian Atlantic Rain Forest
FIGURE 1. Ormosia altimontana A. fruiting branch. B. abaxial leaflet surface, showing the tomentose indument. C. seeds in hilar and lateral view. D. flower. E. standard petal. F. wing petal. G. keel petal. H. anthers, slightly dimorphic. I. dimorphic stamens. J. gynoecium. K. stigma. Branch and fruits (A–C) after M.P.M. de Lima 201. Flower (D–L) after H.C. de Lima 5515.
FIGURE 3 in A new species of Ormosia (Leguminosae, Papilionoideae, Sophoreae) from the Brazilian Atlantic Rain Forest
FIGURE 3. Principal Component Analysis of vegetative traits in O. altimontana, O friburgensis and O. ruddiana (See Appendix 1).
FIGURE 1 in A new species of Erythroxylum (Erythroxylaceae) from the Brazilian Atlantic Forest
FIGURE 1. Erythroxylum umbrosum. (A) General appearance of the branch. (B) Stipule, abaxial view. (C) Leaf, adaxial surface. (D) Brevistylous flower. (E) Longistylous flower, petals removed. (F) Drupe. (G) Cross-section of the drupe. A, B, C, and E from Costa- Lima et al. 870 (holotype); D from Costa-Lima et al. 872; F and G from Costa-Lima et al. 667; drawn by Regina Carvalho.
FIGURE 2 in The rediscovery and conservation status of the Bahian giant tree rat Phyllomys unicolor (Mammalia: Rodentia: Echimyidae) in the Atlantic forest of Brazil
FIGURE 2. Phylogenetic relationships among species of Phyllomys inferred using complete sequences of the mitochondial cytochrome b gene. The topology depicts the strict consensus of the two most parsimonious trees. Numbers above branches correspond to parsimony bootstrap support and decay indices, and numbers below are likelihood bootstrap values.
FIGURE 1 in The rediscovery and conservation status of the Bahian giant tree rat Phyllomys unicolor (Mammalia: Rodentia: Echimyidae) in the Atlantic forest of Brazil
FIGURE 1. Skull of the young specimen of Phyllomys unicolor recorded in NovaViçosa, Bahia, Brazil. Scale bar = 5 mm.
FIGURE 1 in New records of Rhagomys rufescens (Rodentia: Sigmodontinae) in the Atlantic forest of Brazil
FIGURE 1. Collecting localities of Rhagomys rufescens. The details of localities are specified in Table 1. In light green lowland forests, in dark green montane forests with altitude range of 500–1000m, and in brown montane forests with altitudes superior to 1000 m. Vegetation map at 1 km resolution from Eva et al. (2002).
FIGURE 2 in A new species of Prepusa (Helieae, Gentianaceae) from the Brazilian Atlantic Forest, with an emended key for the genus
FIGURE 2. Vegetation physiognomy of the type-locality and morphology of Prepusa dibotrya (a–k) and P. viridiflora (l–p). a. General view of the Tropical Semideciduous Forest and inselbergs of Pedra da Onça, Santa Teresa, Espírito Santo, Brazil. b. Population of the new species on saxicolous vegetation of inselberg islands. c. Sterile specimen. d. Detail of the branchlet apex, bracts and the inflorescence base. e. Fertile specimen. f. Branched inflorescence (thyrsoid) and flowers. g. Flower, side view. e. Pedicel, sepals, petals, stamens, and ovary, side view (sepals and petals partially cropped). h. Flowers at anthesis (foreground) and postanthesis (background). i. Flower, side view. j. Villous stigma and anthers. k. Fruit and part of an old sepal, side view (L. Kollmann et al. 12598). l. General view of the Atlantic Forest and inselbergs of Forno Grande, Castelo, Espírito Santo, Brazil. m. Fertile specimen. n. Simple inflorescence and flowers. o. Flower, side view. p. Verrucose stigma and anthers. (C.N. Fraga et al. 2233). All photos by C. N. Fraga.
FIGURE 1 in A new species of Prepusa (Helieae, Gentianaceae) from the Brazilian Atlantic Forest, with an emended key for the genus
FIGURE 1. Line drawing of Prepusa dibotrya Fraga, A.P. Fontana & L. Kollmann. a. Habit. b. Detail of the apex and adaxial side of the leaf. c. Detail of the branchlet apex, bracts and the inflorescence base. d. Flower, side view. e. Pedicel, sepals, petals, stamens, and ovary, side view (sepals and petals partially cropped). f. Stretched petal, front view. g. Stamen, front view. h. Ovary, side view. i. Fruit and part of an old sepal, side view. j. Seed, side view. (L. Kollmann et al 12598).
FIGURE 3 in A new species of Prepusa (Helieae, Gentianaceae) from the Brazilian Atlantic Forest, with an emended key for the genus
FIGURE 3. Map showing the geographical distribution of Prepusa dibotrya (black dots) and Prepusa viridiflora (black squares) in the southern part of Espírito Santo, Brazil.
FIGURE 4. Eugenia sobraliana Giaretta & Fraga. a. Holotype. b in Two new Eugenia species (Myrtaceae) from the Brazilian Atlantic forest
FIGURE 4. Eugenia sobraliana Giaretta & Fraga. a. Holotype. b. Details of the inflorescence from the isotype, deposited at RB c. Details of flowers from the paratype, deposited at RB (scale—10 mm).
FIGURE 2 in Two new Eugenia species (Myrtaceae) from the Brazilian Atlantic forest
FIGURE 2. Vegetation physiognomy of the type-locality and morphology of Eugenia amorimii (a–f) and Eugenia sobraliana (g–k). a. General view of the Atlantic forest and of the artificial lake at the Duas Bocas Biological Reserve, Cariacica, Espírito Santo, Brazil. b. Understory of the Atlantic rain forest at the Duas Bocas Biological Reserve. c. Fruiting branch with leaves. d. Node with leaves, inflorescence, pedicels and fruit. e. Fruit, lateral view. f. Fruit, front view. g. Environmental Protection Area of Pedra do Elefante, Nova Venécia, Espírito Santo, Brazil. h. Inselbergs covered by rupiculous vegetation (foreground left and background) and dry seasonal forests (foreground right). i. Flowering branch, with detail of the adaxial leaf side. j. Detail of the inflorescence and flower, lateral view. k. Flower, front view. (c–g from Amorim 7348; h–k from Fraga 2502, all photos by C.N. Fraga).
FIGURE 1. Eugenia amorimii Fraga & Giaretta. a. Holotype. b in Two new Eugenia species (Myrtaceae) from the Brazilian Atlantic forest
FIGURE 1. Eugenia amorimii Fraga & Giaretta. a. Holotype. b. Details of fruits from the paratype deposited at RB (scale—10 mm).
FIGURE 3 in Two new Eugenia species (Myrtaceae) from the Brazilian Atlantic forest
FIGURE 3. Distribution of Eugenia amorimii (black squares) and Eugenia sobraliana (black dots), with detail of a satellite image of the habitat, Espírito Santo, Brazil.
FIGURE 1. Guatteria capixabae. A. Branch with flowers. B. Leaf. C in A new species of Guatteria (Annonaceae) endemic to the Atlantic Forest of Brazil
FIGURE 1. Guatteria capixabae. A. Branch with flowers. B. Leaf. C. Details of the abaxial surface of the leaf. D. Flower. E. Flower without petals showing stamens and carpels. F. Adaxial surface of the sepal. G. Adaxial surface of the outer petal. H. Abaxial surface of the inner petal. J. Fruit. K. Monocarp. A, J, K from Kollmann 1948 (RB). B, C from Kollmann 2142 (RB). D–H from Kollmann 2655 (RB).
FIGURE 1 in Hemimycena longipleurocystidiata (Mycenaceae, Agaricomycetes), a new species from the Argentinean Atlantic Forest
FIGURE 1. Hemimycena longipleurocystidiata: A—Paratype [Niveiro & Popoff 1222 (CTES)], B—Holotype [Niveiro & Popoff 1393 (CTES)]. Bar: 10 µm.
FIGURE 2 in Hemimycena longipleurocystidiata (Mycenaceae, Agaricomycetes), a new species from the Argentinean Atlantic Forest
FIGURE 2. Hemimycena longipleurocystidiata [Niveiro & Popoff 1393 (CTES)]: A—spores, B—pleurocystidia, C—cheilocystidia. Bar: 10 µm.
FIGURE 5 in Melastomataceae in a continental Atlantic Forest island from southeastern Brazil
FIGURE 5. Leandra acutiflora: a. leaf: abaxial surface; b. calyx; c. petal (Lima & Silva s.n. RB 44251). Leandra variabilis: d. leaf: abaxial surface; e–f. leaf: adaxial and abaxial surfaces, respectively; g. hypanthium and calyx; h. petal (Neto 1506). Leandra melastomoides: i. leaves; j. floral involucre and flower; k. petal; l. bract: adaxial surface (Baumgratz 1073). Leandra reversa: m. floriferous branch; n. petal; o. calyx lobe; p. young fruit; q. seed (m–o. Pessoa & Abbas 1054; n. Bacellar et al. 17; p. Luchiari 715; q. Brade 1433).
FIGURE 9 in Melastomataceae in a continental Atlantic Forest island from southeastern Brazil
FIGURE 9. Ossaea marginata: a. floriferous branch; b. young fruit; c. seed (a. Silva 18; b–c. Silva 28). Tibouchina corymbosa: d. floriferous branch; e–f. leaf: abaxial and adaxial surfaces, respectively; g. calyx lobes; h. bract; i. fruit; j. seed (d. Guimarães 327; e–g., i–j. Silva 80; h. Cardoso 32). Tibouchina estrellensis: k–l. leaf: adaxial and abaxial surfaces, respectively; m. calyx; n. fruit (Conde 459). Tibouchina granulosa: o. stem node; p–q. leaf: adaxial and abaxial surfaces, respectively; r. tetragonal and winged branch; s. calyx; t. bract: adaxial surface; u. fruit; v. seed (Silva 10).
FIGURE 2 in Melastomataceae in a continental Atlantic Forest island from southeastern Brazil
FIGURE 2. Vegetation types in Marambaia Island, Rio de Janeiro, Brazil. a. Herbaceous Restinga; b. Shrubby Restinga; c–d. Restinga Forest: permanent flooded forest (C), flooded forest along the beach on the continental side of the island (D); e–f. Dense Submontane Ombrophilous Forest.
FIGURE 8 in Melastomataceae in a continental Atlantic Forest island from southeastern Brazil
FIGURE 8. Miconia dodecandra: a. flower; b. petal; c–d. stamens; e. bracteole; f. calyx (a–d., f. Silva 7; e. Silva 14). Miconia lepidota: g. floriferous branch; h. leaf: abaxial surface; i. flower (g–h. Luchiari et al. 722; i. Farias et al. 197). Miconia pusilliflora: j. leaf: abaxial surface; k. hypanthium; l. calyx; m. stamen (Silva & Gonçalves 101). Miconia prasina: n–o. leaf: abaxial and adaxial surfaces, respectively; p. flower; q. fruit (Kurtz 167).
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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)
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.