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449 results for “Atlantic rainforest”
FIGURE 5 in Three new species of Lauraceae from the Atlantic rainforest of Brazil
FIGURE 5. Holotype of Mezilaurus sessiliflora P.L.R.Moraes &Vergne: P.L.R. de Moraes et al. 4577 (HRCB).
FIGURE 9. Williamodendron itamarajuensis P.L.R.Moraes. A. Flower. B in Three new species of Lauraceae from the Atlantic rainforest of Brazil
FIGURE 9. Williamodendron itamarajuensis P.L.R.Moraes. A. Flower. B. Outer tepals, abaxial and adaxial surfaces. C. Inner tepals, abaxial and adaxial surfaces. D. Stamen of whorl III, dorsal view. E. Stamen of whorl III, apical view showing the four locelli. F. Staminode, ventral view. G. Pistil. From A.A. da Luz 515 (HRCB). Bars = 1 mm (A); 0.5 mm (B, C, D, E, F, G).
FIGURE 4 in Three new species of Lauraceae from the Atlantic rainforest of Brazil
FIGURE 4. Geographic distribution of Cinnamomum baitelloanum van der Werff & P.L.R.Moraes, Mezilaurus sessiliflora P.L.R.Moraes &Vergne, and Williamodendron itamarajuensis P.L.R.Moraes.
FIGURE 3. Cinnamomum baitelloanum van der Werff & P.L.R.Moraes. A. Flower. B in Three new species of Lauraceae from the Atlantic rainforest of Brazil
FIGURE 3. Cinnamomum baitelloanum van der Werff & P.L.R.Moraes. A. Flower. B. Outer tepals, abaxial and adaxial surfaces. C. Inner tepals, abaxial and adaxial surfaces. D. Stamen of whorl I. E. Stamen of whorl II. F. Stamen of whorl III. G. Gland. H. Staminode of whorl IV. I. Pistil. From D.A. Folli 5188 (HRCB). Bars = 2 mm (A); 1 mm (B, C, I); 0.5 mm (D, E, F, G, H).
FIGURE 7. Mezilaurus sessiliflora P.L.R.Moraes &Vergne. A. Flower. B in Three new species of Lauraceae from the Atlantic rainforest of Brazil
FIGURE 7. Mezilaurus sessiliflora P.L.R.Moraes &Vergne. A. Flower. B. Outer tepals, abaxial and adaxial surfaces. C. Inner tepals, abaxial and adaxial surfaces. D. Stamen of whorl III. E. Pistil. From P.L.R. de Moraes et al. 4577 (HRCB). Bars = 1 mm (A); 0.5 mm (B, C, D, E).
FIGURE 6. Mezilaurus sessiliflora P.L.R.Moraes &Vergne. A. Trunk with fissured bark. B. Branch with inflorescences and immature fruit. C in Three new species of Lauraceae from the Atlantic rainforest of Brazil
FIGURE 6. Mezilaurus sessiliflora P.L.R.Moraes &Vergne. A. Trunk with fissured bark. B. Branch with inflorescences and immature fruit. C. Detail of sessile flowers. D. Fruits in final stage of development. Photographs by P.L.R. de Moraes (A, B, D) and T.A. Pontes (C).
FIGURE 2 in Three new species of Lauraceae from the Atlantic rainforest of Brazil
FIGURE 2. Leaf venation and domatia of Cinnamomum baitelloanum van der Werff & P.L.R.Moraes. A. Mature leaf, predominantly penninerved, tripliveined at the base, weakly brochidodromous. B. Pit domatia, adaxial view. C. Pit domatia, abaxial view. D. Detail of reticulation, areoles incomplete, randomly arranged. From P.L.R. de Moraes et al. 3167 (HRCB). Bars = 1 cm (A); 0.33 cm (D). Photographs by J.G. Rohwer (B, C).
FIGURE 4. Eremocaulon triramis, reproductive morphology. A–K in Eremocaulon triramis (Poaceae: Bambusoideae: Bambuseae: Guaduinae): a new species from the Atlantic rainforest of the State of Espírito Santo, Brazil
FIGURE 4. Eremocaulon triramis, reproductive morphology. A–K (R. Hilário s.n.). A. Floriferous branch. B. Pseudospikelet. C. Laminiferous subtending bract. D. Rachilla segment, showing a ring of trichomes at the base of the floret. E. Prophyll. F. Gemmiparous bract. G. Sterile lemma. H. Lemma. I. Palea. J. Lodicules. K. Gynoecium and androecium. (Illustration by Reinaldo Pinto).
FIGURE 2. Eremocaulon triramis, vegetative morphology. A–D in Eremocaulon triramis (Poaceae: Bambusoideae: Bambuseae: Guaduinae): a new species from the Atlantic rainforest of the State of Espírito Santo, Brazil
FIGURE 2. Eremocaulon triramis, vegetative morphology. A–D (Jesus-Costa et al. 108). A. Scandent habit. B. The summit of the foliar leaf sheath showing the white to stramineous, erect, laminar structure consisting of fused fimbriae borne on the summit of the underlapping margin. C. Branch complement of three subequal branches. D. Culm leaf with reflexed blade. Photographs by C. Jesus-Costa.
FIGURE 1 in Eremocaulon triramis (Poaceae: Bambusoideae: Bambuseae: Guaduinae): a new species from the Atlantic rainforest of the State of Espírito Santo, Brazil
FIGURE 1. Summary cladogram of Bambuseae relationships based on a combined cpDNA study of trnD-trnT, rps16-trnQ, trnC-rpoB, trnT-trnL, rpl16, rps16, and ndhF, showing the position of Eremocaulon triramis in the Guaduinae subtribe. Numbers above branches are posterior probabilities from Bayesian inference (BI) and numbers below branches are bootstrap support values from the Maximum likelihood (ML) analysis. Redrawn from Jesus-Costa 2018.
FIGURE 3. Eremocaulon triramis, vegetative morphology. A–D in Eremocaulon triramis (Poaceae: Bambusoideae: Bambuseae: Guaduinae): a new species from the Atlantic rainforest of the State of Espírito Santo, Brazil
FIGURE 3. Eremocaulon triramis, vegetative morphology. A–D (Jesus-Costa et al. 108) A. Culm leaf showing reflexed blade. B. Detail of culm leaf showing oral setae (B1) and fimbriae (B2). C. Branch complement and foliage leaves, showing the strongly excentric midrib. D. Ligular area of the foliar leaf: right, summit of the overlapping margin bearing free, basally straight to apically curly fimbriae and left, summit of the underlapping margin bearing the laminar structure consisting of fused fimbriae and the lower portion of the overlapping margin bearing fused fimbriae. (Illustration by Reinaldo Pinto).
FIGURE 2 in New and endemic species of Brachymenium (Bryaceae, Bryophyta) in the Atlantic Rainforest of Brazil
FIGURE 2. Brachymenium sublineare: A. Habit, wet. B. Vegetative leaf apex. C. Vegetative leaf base. D. Vegetative leaves. E. Perichaetial leaf. F. Cross section of the leaf. G. Cross section of the stem. H. Exostome teeth and endostome membrane. I. Endostome membrane. J. Spores. K. Flagelliform branches, dry. (A-H, J, K from Peralta 16651 SP460187; I from Peralta 16799 SP460333).
FIGURE 1 in New and endemic species of Brachymenium (Bryaceae, Bryophyta) in the Atlantic Rainforest of Brazil
FIGURE 1. Brachymenium elimbatum: A. Habit, wet. B. Vegetative leaf apex. C. Vegetative leaf base. D–E. Vegetative leaves. F. Perichaetial leaf. G. Cross section of the leaf. H. Cross section of the stem. I. Capsule and operculum. J. Exostome teeth and endostome membrane. K. Spores. (Molon s.n. SP418931).
FIGURE 3 in New and endemic species of Brachymenium (Bryaceae, Bryophyta) in the Atlantic Rainforest of Brazil
FIGURE 3. Distribution of the new species of Brachymenium in Brazil. A. The Atlantic Rainforest of Brazil in gray and detailed area in black square. B. Brachymenium elimbatum. C. Brachymenium sublineare.
Figure 1 in First record of Peropteryx leucoptera (Chiroptera, Emballonuridae) for the Caatinga of Northeastern Brazil and additional records for the Amazon and Atlantic Rainforest
Figure 1: Distribution of P. leucoptera in South America. Red stars indicate new records reported for the Caatinga biome and the state of Bahia in Northeastern Brazil: (1) Parque Nacional de Furna Feia, Mossoró, state of Rio Grande do Norte; (2) Vila de Patamuté, Gruta de Patamuté, Curaçá, state of Bahia; (3) Río Branco, Fazenda Bela Vista, Ilhéus, state of Bahia; (4) UHE Jirau, Mutum-Paraná, Porto Velho, state of Rondônia. White circles represent specimens examined in this study, black dots represent literature and database records. For numbers of localities, see Supplementary Material S2.
Figure 2 in First record of Peropteryx leucoptera (Chiroptera, Emballonuridae) for the Caatinga of Northeastern Brazil and additional records for the Amazon and Atlantic Rainforest
Figure 2: Specimens of P. leucoptera representing the first records of the species for the Caatinga biome and Bahia state (Brazil). CMARF 320 skull in dorsal view (A), ventral view (B) and lateral view (C), mandible in lateral view (D), UFMG 4716 skin in dorsal (E) and ventral view (F).
Figure 2 in Urban fragment of the Atlantic Rainforest as a refuge for cavity-nesting bees and wasps (Hymenoptera: Aculeata)
Figure 2. Rarefaction curves of solitary bee species nesting on campus of Universidade Federal da Bahia (UFBA) and in Parque Zoobotânico Getúlio Vargas (PZBGV) located in urban fragment of Atlantic Rainforest in city of Salvador, state of Bahia, Brazil, from May 2014 to April 2016. Grey portions represent confidence intervals (95%) of diversity (Shannon-Wiener diversity index).
Figure 5 in Urban fragment of the Atlantic Rainforest as a refuge for cavity-nesting bees and wasps (Hymenoptera: Aculeata)
Figure 5. Nesting activity of most abundant bee and wasp species: Centris (Heterocentris) analis (Fabricius, 1804), Centris (Heterocentris) terminata Smith, 1874, and Trypoxylon sp.2 at Parque Zoobotânico Getúlio Vargas located in urban fragment of Atlantic Forest in city of Salvador, state of Bahia, Brazil, from May 2014 to April 2015 (1st year) and from May 2015 to April 2016 (2nd year).
Figure 4 in Urban fragment of the Atlantic Rainforest as a refuge for cavity-nesting bees and wasps (Hymenoptera: Aculeata)
Figure 4. Nesting activity of most abundant bee and wasp species: Centris (Heterocentris) analis (Fabricius, 1804), Centris (Heterocentris) terminata Smith, 1874, Podium denticulatum (Smith, 1856) at Universidade Federal da Bahia located in urban fragment of Atlantic Forest in Salvador, Bahia, Brazil, from May 2014 to April 2015 (1st year) and from May 2015 to April 2016 (2nd year).
Figure 3 in Urban fragment of the Atlantic Rainforest as a refuge for cavity-nesting bees and wasps (Hymenoptera: Aculeata)
Figure 3. Rarefaction curves of species solitary wasps nesting on campus of Universidade Federal da Bahia (UFBA) and in Parque Zoobotânico Getúlio Vargas (PZBGV) located in urban fragment of Atlantic Rainforest in city of Salvador, state of Bahia, Brazil, from May 2014 to April 2016. Grey portions represent confidence intervals (95%) of diversity (Shannon-Wiener diversity index).
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.