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4,490 results for “Brazilian species”
FIGURE 5 in Fourteen new species and two taxonomic notes on Brazilian Myrtaceae
FIGURE 5. Eugenia culta — image of isotype (scale — 50 mm). Insert: detail of flowers (scale — 10 mm).
FIGURE 2 in Two new species of Phellinus s.l. from the Brazilian Amazonia
FIGURE 2. Microscopic features of P. sousae (all from holotype). A. Basidiomata. B, C, D. Section through dissepiments showing setal hyphae. E. Setal hyphae. F. Basidiospores.
FIGURE 1 in Two new species of Phellinus s.l. from the Brazilian Amazonia
FIGURE 1. Microscopic features of P. fibrosus (all from holotype). A. Basidiomata. B, C. Pore surface. D. Tramal setae. E. Hymenial setae. F. Basidiospores.
FIGURE 17–22 in Some new species and new records of corticioid fungi (Basidiomycota) from the Brazilian Amazon
FIGURE 17–22. Basidiomes of type specimens. 17. Dendrothele nakasoneae. 18. Dendrothele ornata. 19. Gloeodontia halocystidiata. 20. Gloiothele incrustata. 21. Gloiothele larssonii. 22. Peniophora wallacei. Bar 1 cm
FIGURE 13–16. 13. Phanerochaete australis. 14 in Some new species and new records of corticioid fungi (Basidiomycota) from the Brazilian Amazon
FIGURE 13–16. 13. Phanerochaete australis. 14. Phanerochaete sp. 15. Trechispora aff. nivea. 16. Vararia aff. rugosispora. a. Basidiospores. b. Basidia. c. Cystidia. ch. Hyphal cords. cr. Crystals. di. Dichohyphae. g. Gloeocystidia. h. hyphae. la. Lamprocystidia. sh. Subicular hyphae.
FIGURE 9–12. 9. Gloiothele larssonii. 10. Hypochnicium aff. cremicolor. 11. Peniophora bonariensis. 12. Peniophora wallacei. a. Basidiospores. b. Basidia. c. Cystidia. g. Gloeocystidia. h. hyphae. i in Some new species and new records of corticioid fungi (Basidiomycota) from the Brazilian Amazon
FIGURE 9–12. 9. Gloiothele larssonii. 10. Hypochnicium aff. cremicolor. 11. Peniophora bonariensis. 12. Peniophora wallacei. a. Basidiospores. b. Basidia. c. Cystidia. g. Gloeocystidia. h. hyphae. i. Hyphidia. la. Lamprocystidia. vc. Vesicular cystidia.
FIGURE 5–8. 5. Epithele aff. citrispora. 6 in Some new species and new records of corticioid fungi (Basidiomycota) from the Brazilian Amazon
FIGURE 5–8. 5. Epithele aff. citrispora. 6. Gloeodontia halocystidiata (hymenophore and aculei section). 7. G. halocystidiata (hymenium). 8. Gloiothele incrustata. a. Basidiospores. ac. Aculei. b. Basidia. d. dendrohyphidia. ei. Encrusted hyphidia. g. Gloeocystidia. h. hyphae. ha. Halocystidia. hp. Hyphal pegs. i. Hyphidia. sk. Encrusted skeletocystidia.
FIGURE 1–4. 1. Ceraceopsis verruculosa. 2. Dendrothele andina. 3. Dendrothele nakasoneae. 4. Dendrothele ornata. a. Basidiospores. b in Some new species and new records of corticioid fungi (Basidiomycota) from the Brazilian Amazon
FIGURE 1–4. 1. Ceraceopsis verruculosa. 2. Dendrothele andina. 3. Dendrothele nakasoneae. 4. Dendrothele ornata. a. Basidiospores. b. Basidia. ca. Capitate hyphidia. d. dendrohyphidia. en. needle-like encrusted projections. g. Gloeocystidia. h. Hyphae (generative). hc. Host cells. hp. Hyphal pegs. i. Hyphidia. p. Probasidia. sh. Subicular hyphae.
FIGURE 3 in A new species of Philodendron (Araceae) and a key to Brazilian Atlantic Forest species of P. subgenus Pteromischum
FIGURE 3. Distribution of Philodendron rhodospermum. The Northern point is situated in municipality of Governador Lindenberg and the Southern point in municipality of Santa Teresa. Delimitation of high priority conservation area according to Portaria MMA No. 09, 23 January 2007.
FIGURE 2. Philodendron rhodospermum. A. Habit. B in A new species of Philodendron (Araceae) and a key to Brazilian Atlantic Forest species of P. subgenus Pteromischum
FIGURE 2. Philodendron rhodospermum. A. Habit. B. Immature infrutescence cut open to show the reddish seeds. C. Detail of the reddish-pink seeds.
FIGURE 1. Philodendron rhodospermum. A. Habit. B in A new species of Philodendron (Araceae) and a key to Brazilian Atlantic Forest species of P. subgenus Pteromischum
FIGURE 1. Philodendron rhodospermum. A. Habit. B. Dry broadly ovate leaf, adaxial view, nervation (detail). C. Dry ovate leaf, abaxial view. D. Inflorescence. E. Stamen. F. Staminode. G. Side view of a female flower. H. Top view of a female flower. I. Longitudinal cut of a female flower. J. Transversal cut of a female flower showing the 2–3-locular ovary. K. Seed. A–C, K from Calazans & Valadares 213 (RB); D–J from Vervloet et al. 1150 (MBML).
FIGURE 2, A–J in Staurastrum pantanale sp. nov. (Zygnematophyceae, Desmidiaceae), a new desmid species from the Brazilian Pantanal
FIGURE 2, A–J: Staurastrum pantanale sp. nov. A–E: LM images. A: Cell division; B: Frontal view; C: Detail of cell wall showing a crenate outline and acuminate isthmus; D: Vertical view and cell wall ornamentation detail; E: Detail of 2-furcate chloroplast toward the process apex; F–J: SEM images: F: Detail of cell wall ornamentation; G: Detail of process with 4 spines at the apex; H: Zygospore with 2–4-furcate processes; I: Zygospore formation; J: Zygospore general view. Scale bars: A–F, I–J = 10 µm; G–H = 5 µm.
FIGURE 1, A–B in Staurastrum pantanale sp. nov. (Zygnematophyceae, Desmidiaceae), a new desmid species from the Brazilian Pantanal
FIGURE 1, A–B. Pond studied, Salitrada Campo Dora: A: General view; B: Detail of submerged and floating macrophytes.
FIGURE 3, A–C in Staurastrum pantanale sp. nov. (Zygnematophyceae, Desmidiaceae), a new desmid species from the Brazilian Pantanal
FIGURE 3, A–C: Staurastrum pantanale sp. nov. A: Frontal view of the cell; B: Vertical view of the cell; C: Zygospore. Scale bars: A–C = 10 µm.
FIGURES 89–92. Gaza spp. anatomy. Figs. 89–91 in Revision of genera Gaza and Callogaza (Vetigastropoda, Trochidae), with description of a new Brazilian species
FIGURES 89–92. Gaza spp. anatomy. Figs. 89–91: G. olivacea, Brazilian rehydrated specimens. Fig. 89: Headfoot, frontal view. Fig. 90: Mid and hindgut as in situ, dorsalslightly right view. Fig. 91: Foot (rehydrated and partially damaged), head removed, foot anterior orifices (fo) shown. Fig. 92: G. compta, foot, head removed, foot anterior orifices (fo) shown. Scale bars = 2 mm.
FIGURES 83–88. Gaza cubana anatomy. Fig. 83 in Revision of genera Gaza and Callogaza (Vetigastropoda, Trochidae), with description of a new Brazilian species
FIGURES 83–88. Gaza cubana anatomy. Fig. 83: Headfoot, dorsalslightly right view, operculum removed. Fig. 84: Same, left view. Fig. 85: Head and haemocoel, ventral view, foot and columellar muscle removed. Fig. 86: Pallial cavity hoof and part of mid gut as in situ, ventral view, some adjacent visceral structures also shown. Fig. 87: Gill, transversal section in its middle region. Fig. 88: Foot, head removed, foot anterior orifices (fo) shown. Scale bars = 2 mm.
FIGURES 71–74. Gaza compta anatomy. Fig. 71 in Revision of genera Gaza and Callogaza (Vetigastropoda, Trochidae), with description of a new Brazilian species
FIGURES 71–74. Gaza compta anatomy. Fig. 71: Pallial cavity, mid and hindgut, ventral view, digestive tubes somewhat deflected. Fig. 72: Transversal piece of fecal bundle. Fig. 73: Transversal section of gill, showing filaments and adjacent region of mantle. Fig. 74: foregut, ventral view, esophagus (es) opened longitudinally, odontophore (of) deflected to left, in dorsal view. Scale bars = 1 mm.
FIGURES 49–57 in Revision of genera Gaza and Callogaza (Vetigastropoda, Trochidae), with description of a new Brazilian species
FIGURES 49–57. Radulae in SEM. Figs. 49–52: Gaza compta. Fig. 49–51: Holotype. Figure 49: entire shell; scale bar = 100 µm. Fig. 50: Detail of central and lateral teeth; scale bar = 50 µm. Fig. 51: Same, detail of marginal region; scale bar = 50 µm. Fig. 52: Paratype, central region; scale bar = 50 µm. Figs. 53–54: G. cubana. Fig. 53: Entire shell; scale bar = 100 µm. Fig. 54: Lateral teeth, scale bar = 100 µm. Figs. 55–57: G. fischeri. Fig. 55: Entire shell, scale bar = 100 µm. Fig. 56: Detail of central and lateral teeth; scale bar = 100 µm. Fig. 57: Detail of lateral region; scale bar = 50 µm.
FIGURES 24–36. Gaza spp. Figs. 24–27 in Revision of genera Gaza and Callogaza (Vetigastropoda, Trochidae), with description of a new Brazilian species
FIGURES 24–36. Gaza spp. Figs. 24–27: G. olivacea FMNH 223560 (from Surinam). Figs. 24–26: Shell, apertural, apical and umbilical views. Fig. 27: Detail of umbilical area. Scale bar = 10 mm. Figs. 28–32: G. fischeri Paralectotype USNM 94989. Figs. 28–30: Shell in apertural, apical and umbilical views. Fig. 31: Detail of umbilical area. 32. Operculum, outer view. Scale bar = 5 mm. 33–36. G. rathbuni AMNH 254993 (off Cape Mala, Panama) shell. Figs. 33–35: Apertural, apical and umbilical views. Fig. 36: Detail of umbilical region. Diameter = 32.5 mm.
FIGURES 1–10. Gaza compta. Figs. 1–4 in Revision of genera Gaza and Callogaza (Vetigastropoda, Trochidae), with description of a new Brazilian species
FIGURES 1–10. Gaza compta. Figs. 1–4, Shell of Holotype MZSP 40324 (diameter = 26 mm). Fig. 1: Apertural view. Fig. 2: Apical view. Fig. 3: Umbilical view. Fig. 4: Detail of spire. Fig. 5–6: Operculum, outer and inner views (length = 10 mm). Fig. 7: Pedal ganglia and adjacent region, dorsal view, dorsal structures into haemocoel removed, pedal medial sinus (ps) opened longitudinally. Fig. 8: Foregut, ventral view, odontophore removed, esophagus (es) opened longitudinally, some structures, such as nerve ring (cc, ce) and salivary gland (sg) seen by transparency. Fig. 9: Snout, ventral view, opened longitudinally along its ventral median line. Fig. 10: jaw plates, ventral view. Scale bars: 7–10 = 1 mm.
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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)
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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.