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2,293 results for “Atlantic forests”
FIGURE 2. Behuria lumiarensis. A in Behuria lumiarensis (Melastomataceae), a new species on a mountaintop of the Brazilian Atlantic Forest
FIGURE 2. Behuria lumiarensis. A. Habit; B. Inflorescence with flower buds, flowers and immature fruits; C. Flower buds; D. Stamens with dorsal appendages and style; E. Flowers, lateral view; F. Vegetation of the "Macaé de Cima Environmental Protection Area".
FIGURE 3 in A new cauliflorous species of Psidium (Myrtaceae) from the Atlantic Forest
FIGURE 3. Map of the distribution of Psidium grazielae in the states of Espírito Santo and Rio de Janeiro, Brazil.
FIGURE 2. Psidium grazielae A in A new cauliflorous species of Psidium (Myrtaceae) from the Atlantic Forest
FIGURE 2. Psidium grazielae A. Vegetation physiognomy of the type-locality and morphology of Psidium grazielae. B. Rithydome with laminated aspect, brown or gray colored (scale: 2 cm). C. Detail of floral bud and rachis of inflorescences (scale: 1 cm). D. Detail of flowers (scale: 1 cm). E. Young fruits (scale: 2 cm). F. Mature fruits (scale: 2 cm). (A–B photos by A.C. Tuler; C–E photos by M. Ribeiro; F photo by Idimá Costa).
FIGURE 1 in Phylloporia minuta sp. nov. (Basidiomycota, Hymenochaetales): a remarkable species discovered in a small protected urban area of Atlantic Forest
FIGURE 1. Best-scored tree from the ML analyses, showing the phylogenetic relationships of Phylloporia species inferred from 28S sequences. The tree was rooted with Inonotus cuticularis and I. hispidus. New species is highlighted in bold. Thickened branches represents bootstrap (BS) and posterior probability (PP) support values greater than or equal to 75% or 0.95, respectively. Support values are shown above those branches (BS/PP).
FIGURE 2. Phylloporia minuta. A in Phylloporia minuta sp. nov. (Basidiomycota, Hymenochaetales): a remarkable species discovered in a small protected urban area of Atlantic Forest
FIGURE 2. Phylloporia minuta. A. Basidioma in situ indicated by a white arrow growing on Doliocarpus schottianus (FLOR 63064 –paratype); B. Detail of the sulcate surface of the basidioma (FLOR 63063–paratype); C. Minute dried basidiomata, showing the hymenophore (SP–paratype); D. Detail of the basidiomata, showing the lower context and the upper tomentum separated by a thin black line indicated by a white arrow (FURB 55088–holotype); D. Generative hyphae from the hymenophoral trama (SP –paratype); E. Mass of collapsed basidiospores, observed in some specimens (SP–paratype); F. Basidiospores (FURB 55088–holotype). Bars: A, B = 10 mm; C, D = 2 mm, E, F = 20 μm. Photos by F. Bittencourt.
FIGURE 2. Maranta gigantea. A in A new "giant" species of Maranta L. (Marantaceae) from the Atlantic Forest of northeastern Brazil
FIGURE 2. Maranta gigantea. A. Habit (leaf blades adaxially dark green, abaxially vinaceous). B. Basal synflorescence. C. Terminal synflorescence. D. Detail of cymules with flowers and fruits.
FIGURE 1. Maranta gigantea. A. Habit. B. Leaf blade. C. Inflorescence. D. Cymule. E. Flower. F. Spathe. G. Prophyll. H. Corolla lobes. I. Major outer staminode. J. Minor outer staminode. K. Callose staminode. L. Cucullate staminode. M. Stamen with appendix. N. Style and stigma. O in A new "giant" species of Maranta L. (Marantaceae) from the Atlantic Forest of northeastern Brazil
FIGURE 1. Maranta gigantea. A. Habit. B. Leaf blade. C. Inflorescence. D. Cymule. E. Flower. F. Spathe. G. Prophyll. H. Corolla lobes. I. Major outer staminode. J. Minor outer staminode. K. Callose staminode. L. Cucullate staminode. M. Stamen with appendix. N. Style and stigma. O. Fruit.
FIGURE 1 in A new species Danaea (Marattiaceae) from the Atlantic forests of Brazil
FIGURE 1. Habitat of Danaea atlantica at the type locality near Picinguaba, São Paulo, Brazil. Photograph by Maarten Christenhusz.
FIGURE 3 in A new species Danaea (Marattiaceae) from the Atlantic forests of Brazil
FIGURE 3. Leaf of Danaea atlantica, showing the occasional additional leaflet. Photograph by Maarten Christenhusz.
FIGURE 1. Miconia goldenbergiana Caddah. A. Branch apex with inflorescence. B in Miconia goldenbergiana (Melastomataceae, Miconieae): a new species from the Atlantic Forest, Brazil
FIGURE 1. Miconia goldenbergiana Caddah. A. Branch apex with inflorescence. B. Abaxial view of leaf. C. Detail of the trichomes. D. Flower. E. Petal. F. Stamen. G. Longitudinal section of the hypanthium. H. Fruiting branch apex. I. Fruit branch [from the holotype].
FIGURE 3. Miconia goldenbergiana Caddah. A, B in Miconia goldenbergiana (Melastomataceae, Miconieae): a new species from the Atlantic Forest, Brazil
FIGURE 3. Miconia goldenbergiana Caddah. A, B. Scanning Electron Microscope (SEM) images of the abaxial surface of the leaf. A. Midvein and blade. Scale bar 500μm B. Detail of trichomes. Scale bar 100μm [from De Polli 36 (FLOR)].
FIGURE 2. Miconia goldenbergiana Caddah. A in Miconia goldenbergiana (Melastomataceae, Miconieae): a new species from the Atlantic Forest, Brazil
FIGURE 2. Miconia goldenbergiana Caddah. A. Branch with inflorescences and detail of the flowers. B. Branch showing abaxial leaf surfaces [from Meyer & Reginato 2071 (UPCB); photo: F.S. Meyer].
FIGURE 2. Eugenia studerae. A in A new species of Eugenia (Myrteae, Myrtaceae) from the submontane forest of northern Atlantic Forest
FIGURE 2. Eugenia studerae. A. Branch in fruit. B. Detail of infructescence (from the holotype: B.S. Amorim et al. 1197).
FIGURE 1 in A new species of Eugenia (Myrteae, Myrtaceae) from the submontane forest of northern Atlantic Forest
FIGURE 1. Distribution map of Eugenia studerae (yellow star). Red triangles represent the distribution of Eugenia hirta in northern Atlantic Forest.
FIGURE 3. A–D. Eugenia studerae. A in A new species of Eugenia (Myrteae, Myrtaceae) from the submontane forest of northern Atlantic Forest
FIGURE 3. A–D. Eugenia studerae. A. Detail of bark. B. Leaves. C. Stem with fruits. D. Detail of fruits. E–F. Eugenia hirta. E. Detail of flower bud. F. Detail of fruit (A–D. from the holotype: B.S. Amorim et al. 1197; E–F. from B.S. Amorim 645).
FIGURE 1. Trigynaea flagelliflora. A. Leafy branch. B. Flagelliform inflorescence. C. Flower bud. D. Open flower showing stamens and stigmas. E in A new species of Trigynaea (Annonaceae) endemic to the Atlantic Forest of Brazil
FIGURE 1. Trigynaea flagelliflora. A. Leafy branch. B. Flagelliform inflorescence. C. Flower bud. D. Open flower showing stamens and stigmas. E. Abaxial surface of the young outer petal. F. Adaxial surface of the young outer petal. G. Carpel. H. Stamens, lateral and frontal view. I. Monocarp. A–I from Zorzanelli 10 (RB, VIES).
FIGURE 1. Casearia marquetei Nepom. & M.Alves. A in A new Casearia (Salicaceae) from the Atlantic Forest of Brazil
FIGURE 1. Casearia marquetei Nepom. & M.Alves. A. Abaxial surface of the leaf. B. Adaxial surface of the leaf. C. Floral branch. D. Leaf. E. Apex of branch. F. Estipule. G. Bracteoles. H. Detail of inflorescence. I. Floral bud. J. Detail of flower. K. Ovary, stamens and lobes of the nectariferous disc. L. Detail of capsule. M. External face of the sepals. N. Internal face of the sepals. O. Detail of stamens and lobes of the nectariferous disc. P. Detail of ovary. Q. Detail of seed. [Drawing from F.A.A. Nepomuceno 288 (UFP)].
FIGURE 2 in A new Casearia (Salicaceae) from the Atlantic Forest of Brazil
FIGURE 2. Geographical distribution of species of Casearia sect. Casearia group Arboreae occurring in the Atlantic Forest of Brazil.
FIGURE 3 in Chusquea kleinii, a new bamboo from the Atlantic forests of Brazil segregated from C. capituliflora (Poaceae: Bambusoideae)
FIGURE 3. Foliar micromorphology of Chusquea capituliflora and Chusquea kleinii. A–D. Chusquea capituliflora (Mota 303). E–H. Chusquea kleinii (Hoehne s.n., SP 22349). A. Branched papillae on the subsidiary cells of the stomatal apparatus, overarching the stoma. B. Scattered bicellular microhairs (often only one cell visible) and prickles along the leaf margin. C. Bicellular microhairs in the midrib region. D. Absence of the tuft of single-celled macrohairs at the base of the abaxial leaf blade. E. Simple, more-or-less conical papillae on the subsidiary cells of the stomatal apparatus. F. Unicellular, rigid macrohairs on the abaxial surface and along the leaf margin. G. Unicellular, curved macrohairs and bicellular microhairs in the midrib region. H. Tuft of unicellular, flexible macrohairs at the base of the abaxial leaf blade.
FIGURE 1. Chusquea kleinii. A. Culm leaf. B. Infravaginal branching and geniculate subsidiary branches. C. Branching and foliage leaves. D in Chusquea kleinii, a new bamboo from the Atlantic forests of Brazil segregated from C. capituliflora (Poaceae: Bambusoideae)
FIGURE 1. Chusquea kleinii. A. Culm leaf. B. Infravaginal branching and geniculate subsidiary branches. C. Branching and foliage leaves. D. Ligular region of the foliage leaf showing detail of the foliage leaf sheath and pseudopetiole. E. Fertile branch. F. Detail of the synflorescence and subtending bract. G. Spikelet [Hoehne s.n. (SP 22349)]. (Illustration by Lucas Marinho)
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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.