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Fig. 10 in Head in the clouds: a new dwarf frog species of the Physalaemus signifer clade (Leptodactylidae, Leiuperinae) from the top of the Brazilian Atlantic Forest
Fig. 10. Physalaemus araxa sp. nov. males calling activity per hour along one complete day in the top of the Caparaó National Park, municipality of Ibitirama, state of Espírito Santo, Brazil. The shaded blue indicates nocturnal period and the red line indicates the normal Gaussian fitted curve for the calling activity (adjusted after running the normality test).
Fig. 4 in Head in the clouds: a new dwarf frog species of the Physalaemus signifer clade (Leptodactylidae, Leiuperinae) from the top of the Brazilian Atlantic Forest
Fig. 4. Spectrograms (above) and oscillograms (below) of advertisement calls of Physalaemus araxa sp. nov., highlighting an increasing complexity with one (A), two (B), or three (C) notes; recorded in the Caparaó National Park, municipality of Ibitirama, state of Espírito Santo, Brazil.
Fig. 9 in Head in the clouds: a new dwarf frog species of the Physalaemus signifer clade (Leptodactylidae, Leiuperinae) from the top of the Brazilian Atlantic Forest
Fig. 9. Type locality of Physalaemus araxa sp. nov., Lagoa da Sombra, at Parque Nacional do Caparaó.
Fig. 1 in Head in the clouds: a new dwarf frog species of the Physalaemus signifer clade (Leptodactylidae, Leiuperinae) from the top of the Brazilian Atlantic Forest
Fig. 1. Physalaemus araxa sp. nov., holotype, adult ♂, SVL 21 mm (ZUEC-AMP 24095). A. Dorsal view. B. Ventral view. Scale bar = 5 mm.
FIG. 1. — Ptiloneura castroi n in The genus Ptiloneura Enderlein, 1901 (Psocodea, 'Psocoptera', Ptiloneuridae) in the Brazilian Amazon Forest and Atlantic Forest: new species, variations in forewings and a key to the species
FIG. 1. — Ptiloneura castroi n. sp., holotype: A, front view of head; B, right forewing; C, right hindwing; D, lacinia; E, hypandrium; F, phallosome; G, left paraproct and epiproct. Abbreviations: aes, anterior endophallic sclerites; ep, external parameres; ms, mesal sclerite; msp, mesal sclerite processes; ples, postero-lateral endophallic sclerites. Scale bars: A, D-G, 0.1 mm; B, C, 1 mm.
FIG. 3 in The genus Ptiloneura Enderlein, 1901 (Psocodea, 'Psocoptera', Ptiloneuridae) in the Brazilian Amazon Forest and Atlantic Forest: new species, variations in forewings and a key to the species
FIG. 3. — Variation of forewing venation in Ptiloneura baiana (Silva-Neto, García Aldrete & Rafael, 2018): A, right forewing with zoom on crossvein between A2 and wing margin of female holotype (Silva-Neto et al. 2018a); B, right forewing of male specimen B of Silva-Neto et al. 2021; C, left forewing of male specimen B of Silva-Neto et al. 2021; D, right forewing of male with zoom at the spur vein; E, left forewing of male. Scale bars: 1 mm.
FIG. 2. — Ptiloneura leonardoi n in The genus Ptiloneura Enderlein, 1901 (Psocodea, 'Psocoptera', Ptiloneuridae) in the Brazilian Amazon Forest and Atlantic Forest: new species, variations in forewings and a key to the species
FIG. 2. — Ptiloneura leonardoi n. sp. holotype: A, front view of head; B, right forewing; C, right hindwing; D, left forewing; E, left hindwing; F, phallosome; G, hypandrium; H, left paraproct and epiproct. Abbreviations: aes, anterior endophallic sclerites; ep, external parameres; les, lateral endophallic sclerites; ms, mesal sclerite; msp, mesal sclerite processes; pes, posterior endophallic sclerites; st, side struts. Scale bars: A, F-H, 0.1 mm; B-E, 1 mm.
Figure 1. Ouratea yamamotoana Fraga, G.H.Shimizu & D.B.O.S in Ouratea yamamotoana (Ochnaceae), a new species from the Brazilian Atlantic Forest
Figure 1. Ouratea yamamotoana Fraga, G.H.Shimizu & D.B.O.S.Cardoso, sp. nov. A, Habit and inflorescences; B, detail of the leaf base; C, detail of the stipules; D, detail of the apex on the adaxial side of the leaf; E, branchlets, bracteoles and open flower in side view; F, flower, from the base; G, sepal, abaxial surface; H, petal, abaxial surface; I, stamens, abaxial surface; J, stamens in side view; K, pedicel and gynoecium in side view with sepals, petals and stamens removed; L, ovary, transverse section; M, fruit in side view. Drawn by Maria Alice Rezende from: A–L, the holotype, Freitas, M.F. 116 (RB); M, the paratype, Bovini, M.G. 646 (RB).
Figure 3 in Ouratea yamamotoana (Ochnaceae), a new species from the Brazilian Atlantic Forest
Figure 3. Map showing the distribution and the extent of occurrence (EOO), measured by a minimum convex polygon, and area of occupancy (AOO) of Ouratea yamamotoana Fraga, G.H.Shimizu & D.B.O.S.Cardoso, sp. nov. (black dots) in the southern Rio de Janeiro and northern São Paulo states, Brazil. Distribution plotted using the DIVA-GIS program, version 5.2 (Hijmans et al., 2005).
Figure 2 in Ouratea yamamotoana (Ochnaceae), a new species from the Brazilian Atlantic Forest
Figure 2. Vegetation physiognomy of the type locality and morphology of Ouratea yamamotoana Fraga, G.H.Shimizu & D.B.O.S.Cardoso, sp. nov. A, General view of the Atlantic Forest at Paraty, Rio de Janeiro, Brazil; B, habit and inflorescences; C, leaf; D, detail of a branch, showing the leaf bases; E, flower in frontal view; F, flower in side view; G, partial inflorescence showing flowers without stamens and petals (which have already fallen). Photograph A was taken by Leandro Jorge Telles Cardoso. Photographs B–G are of the paratypes, accession Miranda, M.R. 214 (SPSF) and Campos-Rocha, A. & Volet, D.P. 1616 (UEC), and were taken by M. R. Miranda (B, D–F) and A. Campos-Rocha (C, G).
Potential aboveground biomass increase in Brazilian Atlantic Forest fragments with climate change
<p>This file collection contains the estimated spatial distribution of the above-ground biomass density (AGB) by the end of the 21st century across the Brazilian Atlantic Forest domain and the respective uncertanty. To develop the models, we used the maximum entropy method with projected climate data to 2100, based on the Intergovernmental Panel on Climate Change (IPCC) Representative Concentration Pathway (RCP) 4.5 from the fifth Assessment Report (AR5).</p> <p>The dataset is composed of four files in GeoTIFF format:</p> <p><strong>calibrated-AGB-distribution.tif</strong>: raster file representing the present spatial distribution of the above-ground biomass density in the Atlantic Forest from the calibrated model. Unit: Mg/ha </p> <p><strong>estimated-uncertanty-for-calibrated-agb-distribution.tif</strong>: raster file representing the estimated spatial uncertanty distribution of the calibrated above-ground biomass density. Unit: percentage.</p> <p><strong>projected-AGB-distribution-under-rcp45.tif</strong>: raster file representing the projected spatial distribution of the above-ground biomass density in the Atlantic Forest by the end of 2100 under RCP 4.5 scenario. Unit: Mg/ha </p> <p><strong>estimated-uncertanty-for-projected-agb-distribution.tif</strong>: raster file representing the estimated spatial uncertanty distribution of the projected above-ground biomass density. Unit: percentage.</p> <p><strong>Spatial resolution:</strong> 0.0083 degree (ca. 1 km)</p> <p><strong>Coordinate reference system:</strong> Geographic Coordinate System - Datum WGS84</p>
FIG. 7 in A New Species of Fritziana Mello-Leitão 1937 (Amphibia: Anura: Hemiphractidae) from the Atlantic Forest, Brazil
FIG. 7.—Geographical distribution of Fritziana mitus sp. nov. The star and circles show the distribution of analyzed specimens (star = type locality in municipality of Santo Amaro da Imperatriz, in the state of Santa Catarina, Brazil [shaded area of inset]). The other markers show the type localities of F. fissilis and F. ulei (pentagon), Nova Friburgo; F. goeldii and F. izecksohni (triangle), Teresópolis; F. ohausi (square), Petrópolis, all in the state of Rio de Janeiro, and F. tonimi (hexagon), Santa Tereza, in the state of Espírito Santo. Green shading represents the remnants of the Atlantic Forest, Brazil. A color version of this figure is available online.
FIG. 5 in A New Species of Fritziana Mello-Leitão 1937 (Amphibia: Anura: Hemiphractidae) from the Atlantic Forest, Brazil
FIG. 5.—Oral disc of the tadpole of Fritziana mitus sp. nov., Stage 35 of Gosner (1960), from Bertioga, state of São Paulo, Brazil (lot CFBH 34437). (A)
FIG. 4 in A New Species of Fritziana Mello-Leitão 1937 (Amphibia: Anura: Hemiphractidae) from the Atlantic Forest, Brazil
FIG. 4.—Tadpole of Fritziana mitus sp. nov., Stage 35 of Gosner (1960), from Bertioga, state of São Paulo, Brazil (lot CFBH 34437). (A) Lateral, (B) ventral, and (C) dorsal views (scale = 1 mm). A color version of this figure is available online.
FIG. 3 in A New Species of Fritziana Mello-Leitão 1937 (Amphibia: Anura: Hemiphractidae) from the Atlantic Forest, Brazil
FIG. 3.—Dorsal patterns of Fritziana mitus sp. nov. The most common pattern (A) CFBH 25723 and some variations, with an interorbital bar, are in (B) CFBH 12194 and (C) MZUSP 139225. Other possible patterns, without an interorbital bar, are in (D) CFBH 10008, (E) CFBH 19955, and (F) CFBH 24277. Arrows indicate skin crests that delimit the dorsal pouch of females without eggs on the dorsum. A color version of this figure is available online.
FIG. 1 in A New Species of Fritziana Mello-Leitão 1937 (Amphibia: Anura: Hemiphractidae) from the Atlantic Forest, Brazil
FIG. 1.—Adult females of Fritziana mitus sp. nov. (A) without eggs on dorsum (holotype CFBH 39949) and (B) with eggs on dorsum (paratopotype MNRJ
FIG. 1 in A New Species of Fritziana Mello-Leitão 1937 (Amphibia: Anura: Hemiphractidae) from the Atlantic Forest, Brazil
FIG. 1.—Adult females of Fritziana mitus sp. nov. (A) without eggs on dorsum (holotype CFBH 39949) and (B) with eggs on dorsum (paratopotype MNRJ 90351). Both from the Parque Estadual da Serra do Tabuleiro, municipality of Santo Amaro da Imperatriz, state of Santa Catarina, Brazil.
FIG. 2 in A New Species of Fritziana Mello-Leitão 1937 (Amphibia: Anura: Hemiphractidae) from the Atlantic Forest, Brazil
FIG. 2.—Fritziana mitus sp. nov., holotype (CFBH 39949) from the Parque Estadual da Serra do Tabuleiro, municipality of Santo Amaro da Imperatriz, state of Santa Catarina, Brazil. (A) Dorsal and (B) lateral views of the head; (C) palmar view of the left hand; and (D) plantar view of the left foot.
FIG. 7 in Multi-aged forest fragments in Atlantic France that are surrounded by meadows retain a richer epiphyte lichen flora
FIG. 7. — The beta diversity indicated significant lichen species replacement on larger trees in the interiors of the FFs surrounded by meadows (A). In contrast, lichen species replacement was significant on thinner trees from the exteriors of the FFs surrounded by meadows (B).
FIG. 6 in Multi-aged forest fragments in Atlantic France that are surrounded by meadows retain a richer epiphyte lichen flora
FIG. 6. — The gamma diversity indicated that the highest number of lichen species was recorded on larger trees in the interiors of the FFs surrounded by meadows (legend is as in Fig. 2).
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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.