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449 results for “Atlantic rainforest”
Figure 1 in Urban fragment of the Atlantic Rainforest as a refuge for cavity-nesting bees and wasps (Hymenoptera: Aculeata)
Figure 1. Urban fragment of Atlantic Rainforest in Salvador, Bahia, Brazil, preserved by Parque Zoobotânico Getúlio Vargas (PZBGV) and campus of Universidade Federal da Bahia (UFBA). A- State of Bahia, Brazil; B- City of Salvador; C- Fragment studied where UFBA and PZBGV are located. Eight sampling sites were established: four (1 to 4) at UFBA campus and four (5 to 8) at PZBGV.
Data from: Cytogenetics, geographic distribution, conservation and new species of Macrotorus (Mollinedioideae, Monimiaceae) from the Brazilian Atlantic rainforest
A new species of Macrotorus (Monimiaceae) from the Brazilian Atlantic rainforest is here described and illustrated: M. genuflexus. This species, restricted to the Poço das Antas Biological Reserve (situated in the central region of Rio de Janeiro state, Brazil), is the second in the genus Macrotorus. The new species description is based on morphological and cytogenetic (karyotype and genome size - GS) comparative analyses. We also report a new record of Macrotorus utriculatus for the state of Bahia, confirming a potential distribution modeling prediction and provide comments for the conservation of both species.
FIGURE 15 A–F in Phenotypic studies on terrestrial stigonematacean Cyanobacteria from the Atlantic Rainforest, São Paulo State, Brazil
FIGURE 15 A–F: Stigonema parallelum. A: General aspect of a thallus. B–D: Parallel filaments. E: Branched filament. F: Filament forming a hormogonium. Scales: Scales: 10 µm.
FIGURE 14 A–R in Phenotypic studies on terrestrial stigonematacean Cyanobacteria from the Atlantic Rainforest, São Paulo State, Brazil
FIGURE 14 A–R: Stigonema parallelum. A: Filament with a lateral heterocyte. B: Detail of filaments with lamellated sheaths. C–F: Parallel filaments forming hormogonia. G: Long filament with short branches. H–J: Details of apices. K: Germinating hormogonia. L–R: Development of filaments and releasing of hormogonia (life cycle). Scales: 10 µm in A (use for A, B), C (use for C–D), E, F (use for F–K) and L (use for L–R).
FIGURE 11 A–M in Phenotypic studies on terrestrial stigonematacean Cyanobacteria from the Atlantic Rainforest, São Paulo State, Brazil
FIGURE 11 A–M: Stigonema corticola. A: General aspect of a thallus. B, C: Branched filaments. D: Young filament. E: Branches with agglomerated cells. F–H: Details of apex. I: Filament with a lateral heterocyte. J: Detail of a multiseriate filament. K: Initial stages of branching near the apex. L: Formation of hormogonium. M: Apex after releasing hormogonium. Scales: 10 µm in A (use for A, E), B (use for B–D), F (use for F–H), I and J (use for J–M).
FIGURE 10 A–F in Phenotypic studies on terrestrial stigonematacean Cyanobacteria from the Atlantic Rainforest, São Paulo State, Brazil
FIGURE 10 A–F: Stigonema crassivaginatum. A: General aspect of a thallus. B–D: Details of branching. E: Detail of an apex. F: Lamellated sheaths. Scales: 50 µm in A and 10 µm in B–F.
FIGURE 12 A–I in Phenotypic studies on terrestrial stigonematacean Cyanobacteria from the Atlantic Rainforest, São Paulo State, Brazil
FIGURE 12 A–I: Stigonema corticola. A: Uniseriate filament with lateral heterocyte. B–D: Mostly uniseriate filaments. E: Richly branched filaments. F–H: Agglomerated cells. I: Formation of a hormogonium. Scales: 10 µm in A (use for A–I).
FIGURE 9 A–H in Phenotypic studies on terrestrial stigonematacean Cyanobacteria from the Atlantic Rainforest, São Paulo State, Brazil
FIGURE 9 A–H: Stigonema crassivaginatum. A: Branched filament with attenuated ends. B: Strictly uniseriate filaments. C: Formation of a hormogonium. D–F: Morphological variability of cells and apex. G: Sheaths with parallel lamellae. H: Sheaths with divergent lamellae. Scales: 10 µm in A (use for A–C), D (use for D–F) and G (use for G, H).
FIGURE 8 A–I in Phenotypic studies on terrestrial stigonematacean Cyanobacteria from the Atlantic Rainforest, São Paulo State, Brazil
FIGURE 8 A–I: Stigonema tomentosum. A: Fasciculated filaments. B: Detail of biseriate filament. C: Detail of apex of branches. D: Branched filaments. E, F: Hormogonia. G: Initial stage of branching. H: Parallel erect branching. I: Branched uniseriate filaments. Scales: 10 µm A, B (use for B, C), D, E (use for E–H) and I.
FIGURE 7 A–F in Phenotypic studies on terrestrial stigonematacean Cyanobacteria from the Atlantic Rainforest, São Paulo State, Brazil
FIGURE 7 A–F: Stigonema flexuosum. A: Detail of a biseriate filament. B: Branch after the release of a hormogonium. C: Branch forming a terminal hormogonium. D: Detail of a branch. E, F: Branched filaments with heterocytes. Scale: 10 µm in A (use for A–F).
FIGURE 6 A–E in Phenotypic studies on terrestrial stigonematacean Cyanobacteria from the Atlantic Rainforest, São Paulo State, Brazil
FIGURE 6 A–E: Stigonema fremyi. A, B: General aspects of thallus. C–E: Details of attenuated branches. Scales: 10 µm in A, B, C (use for C–E).
FIGURE 5 A–F in Phenotypic studies on terrestrial stigonematacean Cyanobacteria from the Atlantic Rainforest, São Paulo State, Brazil
FIGURE 5 A–F: Stigonema cf. minutum. A: General aspect of a thallus. B: Unilateral branching. C–D: Branches after releasing hormogonia. E–F: Details of main filaments. Scales: 10 µm.
FIGURE 4 A–J in Phenotypic studies on terrestrial stigonematacean Cyanobacteria from the Atlantic Rainforest, São Paulo State, Brazil
FIGURE 4 A–J: Stigonema cf. minutum. A–G: General aspect of a thallus. H: Branches forming hormogonia at the ends. I: Young filament. J.: Detail of apex with epiphytic filament of Heteroleibleinia sp.. Scales: 10 µm A (use for A–D) and E–J.
FIGURE 2 A–N in Phenotypic studies on terrestrial stigonematacean Cyanobacteria from the Atlantic Rainforest, São Paulo State, Brazil
FIGURE 2 A–N: Fischerella clavata. A–F: Details of widened apices of branches. G: Uniseriate main filament. H: Main filament with biseriate parts. I–K: Branching in main filaments. L–M: Hormogonia. N: Creeping filaments producing branch-like terminal filaments. Scale: 10 µm in A (use for A–N).
FIGURE 3 A–L in Phenotypic studies on terrestrial stigonematacean Cyanobacteria from the Atlantic Rainforest, São Paulo State, Brazil
FIGURE 3 A–L: Fischerella letestui. A: Detail of branching. B: Hormogonium. C: Initial stage of development. D–G: Details of the apices of branches. H–L: Branched main filaments. Scales: 10 µm in A (use for A, C–E, H–L) and B (use for B, F–G).
FIGURE 1. A, B. A in Phenotypic studies on terrestrial stigonematacean Cyanobacteria from the Atlantic Rainforest, São Paulo State, Brazil
FIGURE 1. A, B. A. Map of South America; São Paulo State (SP) is indicated in Southeast Brazil. B. Map of São Paulo State; indication of the studied areas.
FIGURE 6 in Eight New Atlantic Rainforest Species and Nomenclatural Notes in Brazilian Myrtaceae
FIGURE 6. Myrcia basicordata—isotype at HUFSJ (scale: 50 mm); insert: inflorescence from Boone 1062 (scale: 10 mm).
FIGURE 4 in Eight New Atlantic Rainforest Species and Nomenclatural Notes in Brazilian Myrtaceae
FIGURE 4. Eugenia lacistema—holotype (scale: 50 mm); insert: inflorescences with fruits (from Jardim 193; scale: 10 mm).
FIGURE 4. Aulonemia prolifera. A. Habit. B. Sterile branch. C in Three new species of Aulonemia (Poaceae: Bambusoideae) from the Brazilian Atlantic rainforest
FIGURE 4. Aulonemia prolifera. A. Habit. B. Sterile branch. C. Leaf ligular region, emphasizing the fimbriae and pseudopetiole. D. Detail of leaf sheath, with fimbriae along its margin. E–F. Amphipodial rhizome. G. Ramification (Viana 3537). Photographs A–D by C.N. Fraga, E–G by P.L. Viana.
FIGURE 1. Aulonemia cincta. A in Three new species of Aulonemia (Poaceae: Bambusoideae) from the Brazilian Atlantic rainforest
FIGURE 1. Aulonemia cincta. A. Flowering branch, in detail the corky girdle at the base of leaf sheath. B. Leaf ligular region, emphasizing the fimbriae and pseudopetiole. C. Spikelet. D. Glume I, adaxial view. E. Glume II, adaxial view. F. Anthoecium and rachilla internode in lateral view. G. Palea, abaxial and lateral views (Kummrow 1704). Illustrated by Myrian M. Duarte.
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Allen Brain Atlas
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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.