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4,490 results for “Brazilian species”
FIGURES 37–48. Shells. Figs. 37–40 in Revision of genera Gaza and Callogaza (Vetigastropoda, Trochidae), with description of a new Brazilian species
FIGURES 37–48. Shells. Figs. 37–40: Gaza rathbuni Holotype USNM 97054. Figs. 37–39: Shell in apertural, apical and umbilical views. Fig. 40: Detail of umbilical area; Diameter: 38 mm. Figs. 41–44: Callogaza watsoni Holotype MCZ 7544, a specimen with peristome not formed. Figs. 41–43: Shell in apertural, apical and umbilical views. Fig. 44: Detail of umbilical area; Diameter = 11 mm. Figs. 45–48: C. sericata MZSP 48530 from Aliguay, Philippines. Figs. 45–47: Shell in apertural, apical and umbilical views. Fig. 48: Detail of umbilical area. Diameter = 15 mm.
FIGURES 78–82. Gaza superba anatomy. Fig. 78 in Revision of genera Gaza and Callogaza (Vetigastropoda, Trochidae), with description of a new Brazilian species
FIGURES 78–82. Gaza superba anatomy. Fig. 78: Headfoot, apertural view. Fig. 79: Same, lateralright view, mantle also shown. Fig. 80: Pallial cavity hoof, ventral view. Fig. 81: Foot, head removed, foot anterior orifices (fo) shown. Fig. 82: Gill, transversal section in its middle region. Scale bars = 2 mm.
FIGURES 67–70. Gaza compta anatomy. Fig. 67 in Revision of genera Gaza and Callogaza (Vetigastropoda, Trochidae), with description of a new Brazilian species
FIGURES 67–70. Gaza compta anatomy. Fig. 67: Headfoot, apertural view. Fig. 68: Same, right view. Fig. 69: Foregut, left view, some adjacent structures of haemocoel also shown. Fig. 70: Jaws, ventral view. Scale bars = 1 mm.
FIGURES 58–66 in Revision of genera Gaza and Callogaza (Vetigastropoda, Trochidae), with description of a new Brazilian species
FIGURES 58–66. Shell and radulae in SEM. Figs. 58–60: Callogaza watsoni from off Pará, Brazil (specimen mentioned by Dall, 1889, USNM 97116): apertural, umbilical and apical views; diameter = 7.1 mm. Figs. 61–63: Gaza olivacea. Figs. 61–62: Central and lateral teeth. Fig. 63: Detail of lateral teeth; scale bars = 100 µm. Figs. 64–66: Gaza superba. Fig. 64: Entire shell; scale bar= 200 µm. Fig. 65: Detail of central and lateral teeth; scale bar = 100 mµ. Fig. 66: detail of lateral teeth; scalebar = 100 µm.
FIGURES 11–23. Gaza spp. Figs. 11–15 in Revision of genera Gaza and Callogaza (Vetigastropoda, Trochidae), with description of a new Brazilian species
FIGURES 11–23. Gaza spp. Figs. 11–15: G. superba Paralectotype USNM 94992. Figs. 11–13: Shell in apertural, apical and umbilical views. Fig. 14: Detail of umbilical area. Fig. 15: Operculum, outer view. Scale bar = 10 mm. Figs. 16–19: G. daedala Holotype BMNH. Figs. 16–18: Shell in apertural, apical and umbilical views. Fig. 19: Detail of umbilical area. Scale bar = 5 mm. Figs. 20–23: G. cubana Holotype MCZ 135151. Figs. 20–22: Shell in apertural, apical and umbilical views. Fig. 23: Detail of umbilical area. Scale bar = 5 mm.
FIGURES 75–77. Gaza compta odontophore. Fig. 75 in Revision of genera Gaza and Callogaza (Vetigastropoda, Trochidae), with description of a new Brazilian species
FIGURES 75–77. Gaza compta odontophore. Fig. 75: General, ventral view, superficial membrane removed. Fig. 76: Dorsal view, both anterior cartilages (oc) deflected, most muscles also deflected, left m4 and m5 (right in Fig.) shown still inserted in subradular cartilage (sc), buccal cavity portion of radula and adjacent structures only partially shown. Fig. 77: Right half, dorsalslightly lateral view, showing muscular insertions, m5 deflected. Scale bar = 1 mm.
FIGURES 97–98. Gaza fischeri anatomy. Fig. 97 in Revision of genera Gaza and Callogaza (Vetigastropoda, Trochidae), with description of a new Brazilian species
FIGURES 97–98. Gaza fischeri anatomy. Fig. 97: Foregut, left view, some adjacent structures, like part of nerve ring, also shown as in situ. Fig. 98: Head and haemocoel, ventral view, foot and columellar muscle removed. Scale bars = 1 mm.
FIGURES 93–96. Gaza fischeri anatomy. Fig. 93 in Revision of genera Gaza and Callogaza (Vetigastropoda, Trochidae), with description of a new Brazilian species
FIGURES 93–96. Gaza fischeri anatomy. Fig. 93: Headfoot, lateralleft view. Fig. 94: Same, lateralright view, partially shown. Fig. 95: Pallial cavity hoof, ventral view, rectum (rt) seen as in situ, a transversal section of the fecal thread, in indicated region, also shown. Fig. 96: Foot, head removed, foot anterior orifices (fo) shown. Scale bars = 2 mm.
FIGURE 1 in Ficus goiana, a replacement name for a Brazilian species of fig (Moraceae)
FIGURE 1. Isotype of Ficus goiana (Pereira & Alvarenga 3291) as Ficus rupicola C.C.Berg & Carauta.
FIGURE 14. A–D in Miscellaneous New species of Brazilian Bromeliaceae
FIGURE 14. A–D. Cryptanthus viridipetalus (Leme et al. 8016). A. Population at the type locality. B. Habit. C. Details of the flowers. D. Landscape view of the type locality with a population of Encholirium sp. in the foreground and the inselberg known as Pedra da Botelha in the background surrounded by treelike vegetation developed on shallow rocky soil.
FIGURE 20. A–C in Miscellaneous New species of Brazilian Bromeliaceae
FIGURE 20. A–C. Vriesea saltensis (Leme & Kollmann 8248). A. Habit. B. Detail of the inflorescence. C. Population at type locality in post-flowering state.
FIGURE 9. A–B in Miscellaneous New species of Brazilian Bromeliaceae
FIGURE 9. A–B Cryptanthus ilhanus (Ilha s.n.). A. General view of the type locality, the inselberg known as Pedra Pontuda. B. Habit of flowering specimens.
FIGURE 8. A–C in Miscellaneous New species of Brazilian Bromeliaceae
FIGURE 8. A–C. Cryptanthus aracruzensis (Kollmann 12100). A. Habit. B. Top view of the rosette. C. Details of the flower.
FIGURE 5. A–E in Miscellaneous New species of Brazilian Bromeliaceae
FIGURE 5. A–E. Alcantarea acuminatifolia (Paula s.n.). A. Apex of leaf blade. B. Floral bract. C. Floral bract and flower. D. Sepal. E. Petal with appendages and inner stamen. F–K. A. occulta (Leme et al. 8665). F. Apex of leaf blade. G. Floral bract. H. side view of the floral bract. I. Flower. J. Sepals. K. Petal with appendages and inner stamen. Scale bars = 1 cm.
FIGURE 2. A–F in Miscellaneous New species of Brazilian Bromeliaceae
FIGURE 2. A–F. Aechmea ituberaensis (Leme et al. 8545). A. Leaf blade apex. B. Median segment of the leaf blade. C. Floral bract and flower. D. Sepal. E. Petal with calli and inner stamen. F. Anther with apical filament portion. G–K. Aechmea pendulispica (Leme et al 8536). G. Leaf blade apex. H. Floral bract. I. Floral bract and flower. J. Sepal. K. Petal with appendages and inner stamen. Scale bars = 1 cm.
FIGURE 13. A–E in Miscellaneous New species of Brazilian Bromeliaceae
FIGURE 13. A–E. Cryptanthus rigidifolius (Fontana & Brahim 2813). A. Basal portion of the leaf. B. Basal flower fascicle. C. Floral bract. D. Flower. E. Sepals. F–L. Cryptanthus tabuleiricola (Leme et al. 8014). F. Leaf blade apex. G. Basal flower fascicle. H. Floral bract in the flower fascicle. I. Floral bract from the central portion of the inflorescence. J. Staminate flower from the central portion of the inflorescence. K. Sepals. L. Petal and one outer and inner stamen each. Scale bars = 1 cm.
FIGURE 22. A–E. Vriesea sanctaparecidae. A in Miscellaneous New species of Brazilian Bromeliaceae
FIGURE 22. A–E. Vriesea sanctaparecidae. A. General view of Pico da Aliança, the type locality. B. Holotype specimen in habitat, highlighting the dry aspect of the inflorescence at anthesis (Leme et al. 8707). C. Population at Pico da Aliança. D. Population at Pico do Padre Angelo, the paratype locality (Leme et al. 8723). E. Details of the floral bracts and flower (Leme et al. 8707).
FIGURE 10. A–F in Miscellaneous New species of Brazilian Bromeliaceae
FIGURE 10. A–F. Cryptanthus aracruzensis (Kollmann 12100). A. Leaf blade apex. B. Basal flower fascicle. C. Floral bract. D. Sepal. E. Petal and one outer and inner stamen each. F. Stigma. G–M. Cryptanthus ilhanus (Ilha s.n.). G. Leaf. H. Basal segment of leaf blade. I. Basal flower fascicle. J. Floral bract. K. Sepals. L. Petal and one outer and inner stamen each. M. Style and stigma. Scale bars = 1 cm.
FIGURE 2. Octomeria lilliputana. A. Habit. B in Octomeria lilliputana (Orchidaceae), a new species from Brazilian Atlantic Forest, State of Paraná, Brazil
FIGURE 2. Octomeria lilliputana. A. Habit. B. Part of ramicaul, leaf and inflorescence. C. Flower in side view. D. Flower analysis (D1. Dorsal sepal. D2. Lateral sepal. D3. Petal. D4. Lip). E. Part of the pedicel, ovary, column and lip in side view, perianth removed. F. Lip in dorsal view. G. Column in abaxial view. H. Anther cap in abaxial view. I. Pollinia. (Drawn from the holotype).
FIGURE 21. A–G in Miscellaneous New species of Brazilian Bromeliaceae
FIGURE 21. A–G. Vriesea saltensis (Leme & Kollmann 8248). A. Leaf blade apex. B. Floral bract. C. Side view of floral bract. D. Flower. E. Sepal. F. Petal with appendages and one outer and inner stamen each. G. Anther. H–L. Vriesea sanctaparecidae (Leme et al. 8707). H. Leaf blade apex. I. Floral bract. J. Flower. K. Sepal. L. Petal with appendages and one outer and inner stamen each. Scale bars = 1 cm.
ScienceDex guides
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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)
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.