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2,293 results for “Atlantic forests”
FIGURE 5 in Two new species of Adenocalymma (Bignonieae, Bignoniaceae) from the Atlantic Forest of Brazil
FIGURE 5. Distribution of Adenocalymma apetiolatum, A. sessile, and A. subsessilifolium in the Brazilian Atlantic Forest.
FIGURE 2. Adenocalymma lineare. A. Flowering branch. B in Two new species of Adenocalymma (Bignonieae, Bignoniaceae) from the Atlantic Forest of Brazil
FIGURE 2. Adenocalymma lineare. A. Flowering branch. B. Detail of interpetiolar region showing prophylls of the axillary buds. C. Flower bud. D. Floral bract. E. Bracteole. F. Side view of an open flower. G. Calyx artificially cut on one side and spread open. H. Frontal view of the corolla. I. Corolla artificially cut on one side and spread open. J. Nectar disk, ovary, style and stigma. K. Detail of stigma. L. Side view of a fruit. M. Seeds. Illustrated from [A–K] Fonseca L.H.M. & Gomes B.M. 429 (SPF) and [L–M] Magnano L.F.S. et al. 1158 (SPF).
FIGURE 3 in A new Aspidogyne (Orchidaceae: Goodyerinae) from the Brazilian Atlantic Forest
FIGURE 3. Goodyerinae species sympatric with Aspidogyne caraguatatubensis in Caraguatatuba, São Paulo State, Brazil. A–B. Microchilus arietinus. C, D. Aspidogyne longicornu. E–G. Aspidogyne fimbrillaris. H–I. Aspidogyne argentea. J–K. Aspidogyne hylibates.
FIGURE 1. Aspidogyne caraguatatubensis. A–B. Habit. C in A new Aspidogyne (Orchidaceae: Goodyerinae) from the Brazilian Atlantic Forest
FIGURE 1. Aspidogyne caraguatatubensis. A–B. Habit. C. Detail of leaf venation. D. Detail of the scape. E. Inflorescence. F. Dorsal sepal, lateral sepal and petal. G. Lip. H, I. Column, dorsal and lateral view. J. Fruit, dehisced.
FIGURE 3 in Redefinition of Croton macrobothrys (Euphorbiaceae), a tree species from the Brazilian Atlantic Forest, with the description of a new subspecies
FIGURE 3. Anatomy of the subspecies of Croton macrobothrys. A. Stipitate-stellate porrect trichomes in C. macrobothrys subsp. macrobothrys (Riina 1522, MICH). B. Appressed-stellate porrect trichomes in C. macrobothrys subsp. septentrionalis (Mori et al. 9274, MG). C–D. Cross section of basilaminar nectaries; C. convex surface in C. macrobothrys subsp. septentrionalis (Mori et al. 9274, MG). D. concave surface in C. macrobothrys subsp. macrobothrys (Riina 1522, MICH). Scale bars: A, B = 60 μm; C = 200 μm; D = 250 μm.
FIGURE 2 in Redefinition of Croton macrobothrys (Euphorbiaceae), a tree species from the Brazilian Atlantic Forest, with the description of a new subspecies
FIGURE 2. Map showing the disjunct distribution of Croton macrobothrys subsp. macrobothrys (circles) and C. macrobothrys subsp. septentrionalis (triangles).
FIGURE 1. Morphological differences between Croton macrobothrys subsp. macrobothrys and Croton macrobothrys subsp. septentrionalis. A, C–E in Redefinition of Croton macrobothrys (Euphorbiaceae), a tree species from the Brazilian Atlantic Forest, with the description of a new subspecies
FIGURE 1. Morphological differences between Croton macrobothrys subsp. macrobothrys and Croton macrobothrys subsp. septentrionalis. A, C–E. Croton macrobothrys subsp. macrobothrys (R.F. Santos et al. 32, SP). A. Basilaminar stalked glands. C. Detail of the inflorescence showing male flowers and young fruit with persistent styles. D. Young fruit with persistent styles slightly united at the base. E. Leaf margin minutely serrate. B, F–H. Croton macrobothrys subsp. septentrionalis (R.F. Santos et al. 24, SP). B. Basilaminar sessile glands. F. Mature fruits. G. Fruit with persistent styles free from the base. H. Entire leaf margin.
FIGURE 2. Rhipsalis agudoensis. A in Rediscovery, considerations about type locality and conservation of Rhipsalis agudoensis (Cactaceae) from the Brazilian Atlantic Forest
FIGURE 2. Rhipsalis agudoensis. A) Stem with floral bud and flowers; B) Flowers in details (photos by D.R. Gonzaga).
FIGURE 3 in A new species of Epidendrum (Epidendroideae; Orchidaceae) from the Brazilian Atlantic Forest
FIGURE 3. Distribution map of Epidendrum campos-portoi Barberena (black hexagon), highlighting the Parque Nacional do Itatiaia and states limits.
FIGURE 2. Epidendrum campos-portoi Barberena. A. Floriferous branch. B in A new species of Epidendrum (Epidendroideae; Orchidaceae) from the Brazilian Atlantic Forest
FIGURE 2. Epidendrum campos-portoi Barberena. A. Floriferous branch. B. Flowers (lateral and back view). Photograph by D.R. Gonzaga.
FIGURE 1. Epidendrum campos-portoi Barberena. A. Habit. B in A new species of Epidendrum (Epidendroideae; Orchidaceae) from the Brazilian Atlantic Forest
FIGURE 1. Epidendrum campos-portoi Barberena. A. Habit. B. Flower: diagonal view. C. Flower: frontal view. D. Flower: lateral view. E–F. Flower dissected. G. Column: lateral view. H. Anther: dorsal view. I. Anther: ventral view. J. Pollinia. Illustrated by Maria Alice Rezende based on D.R. Gonzaga et al. 678 (RB).
FIGURE 3. A–E. Solanum sessilantherum. A. Fertile branch. B. Developing inflorescence. C. Developed inflorescence. D. Fruits. E in Two new species of the Solanum asterophorum species group (Solanum subg. Leptostemonum, Solanaceae) from the Brazilian Atlantic Forest
FIGURE 3. A–E. Solanum sessilantherum. A. Fertile branch. B. Developing inflorescence. C. Developed inflorescence. D. Fruits. E. Detail of a dissected flower (stamens and corolla) (All from Gouvêa & Falcão 188, BHCB). Scale bars A= 10 cm; B= 1.5 cm; C= 2 cm; D= 1.5 cm; E= 1 cm.
FIGURE 2 in Two new species of the Solanum asterophorum species group (Solanum subg. Leptostemonum, Solanaceae) from the Brazilian Atlantic Forest
FIGURE 2. Known distribution of Solanum igniferum and Solanum sessilantherum in the states of Espírito Santo and Rio de Janeiro, southeastern Brazil (S. sessilantherum: empty circle= estimated coordinates; full circle= original coordinates).
FIGURE 1. A–G. Solanum igniferum. A. Fertile branch. B. Developing inflorescence. C. Developed inflorescence. D in Two new species of the Solanum asterophorum species group (Solanum subg. Leptostemonum, Solanaceae) from the Brazilian Atlantic Forest
FIGURE 1. A–G. Solanum igniferum. A. Fertile branch. B. Developing inflorescence. C. Developed inflorescence. D. Detail of a dissected flower (stamens and corolla). E. Fruits. F. Short-stalked trichome. G. Long-stalked trichome (A Gouvêa & Falcão 190, B–G Gouvêa & Stehmann 164, both in BHCB). Scale bars A= 10 cm; B= 1.5 cm; C= 3.5 cm; D= 90 mm; E= 1.5; F= 80 μm; G= 200 μm.
FIGURE 2 in A new species of Mucor (Mucoromycotina, Mucorales) isolated from an enclave of Upland Atlantic Forest in the semi-arid region of Brazil
FIGURE 2. Phylogenetic tree of Mucoraceae constructed using the large subunit (LSU) rDNA sequences. Mortierella parvispora, Backusella lamprospora, B. grandis, Rhizopus microsporus, and Actinomucor elegans were used as outgroups. Sequences are labeled with their database accession numbers. Support values are from Bayesian inference and maximum likelihood analyses (values above and below the branches, respectively). The sequences obtained in this study are in boldface.
FIGURE 3 in A new species of Mucor (Mucoromycotina, Mucorales) isolated from an enclave of Upland Atlantic Forest in the semi-arid region of Brazil
FIGURE 3. Mucor septatum (holotype). A–D: branched multiseptate (arrows) sporangiophores; E–F: Unbranched multiseptate sporangiophores and columella; G: Unbranched septate sporangiophore with sporangium; H: sporangiospores.
FIGURE 1 in A new species of Mucor (Mucoromycotina, Mucorales) isolated from an enclave of Upland Atlantic Forest in the semi-arid region of Brazil
FIGURE 1. Phylogenetic tree of Mucor septatum and related species constructed using the ITS rDNA sequences. Mucor amphibiorum was used as an outgroup. Sequences are labeled with their database accession numbers. Support values are from Bayesian inference and maximum likelihood analyses (values above and below the branches, respectively). The sequences obtained in this study are in boldface.
FIGURE 4. Behuria mourae. A in Following Glaziou's footsteps: rediscovery and updated description of three species of Behuria Cham. (Melastomataceae) from the Atlantic Forest (Brazil)
FIGURE 4. Behuria mourae. A. Habit; B. Adaxial surface of a leaf; C. Abaxial surface of a leaf; D. Flower bud with sessile glands on the hypanthium and sepals; E. Flower; F. Lateral view of the fruit and sepals; G. Area of occurrence in Serra dos Órgãos National Park.
FIGURE 3. Behuria glazioviana. A in Following Glaziou's footsteps: rediscovery and updated description of three species of Behuria Cham. (Melastomataceae) from the Atlantic Forest (Brazil)
FIGURE 3. Behuria glazioviana. A. Habit; B. Abaxial surface of a leaf; C. Branches with stalked glands; D. Flower; E. Lateral view of the fruit; F. Area of occurrence in Macaé de Cima Environmental Protection Area.
FIGURE 2 in Following Glaziou's footsteps: rediscovery and updated description of three species of Behuria Cham. (Melastomataceae) from the Atlantic Forest (Brazil)
FIGURE 2. Distribution of Behuria corymbosa, B. glazioviana and B. mourae in central state of Rio de Janeiro. Circle—B. corymbosa in Serra dos Órgãos National Park; Triangle—B. mourae in Serra dos Órgãos National Park; Square—B. glazioviana in Macaé de Cima Environmental Protection Area.
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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)
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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.