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4,937 results for “Endemic species”
FIGURE 5. Anthurium itacarense. A. Habit with creeping stem detail. B in Two new species of Anthurium sect. Urospadix (Araceae) endemic to the restinga vegetation of Bahia, Brazil
FIGURE 5. Anthurium itacarense. A. Habit with creeping stem detail. B. Detail of creeping stem apex. C. Leaf blade, detail showing cuneate leaf base. D. Inflorescence. E. Flowers showing orange tepals, stamens and stigma droplet. Photos by K. Pimenta.
FIGURE 2. Anthurium bellissimum. A in Two new species of Anthurium sect. Urospadix (Araceae) endemic to the restinga vegetation of Bahia, Brazil
FIGURE 2. Anthurium bellissimum. A. Habit, with creeping stem shown in the detail. B. First leaf of an immature plant. C. Adaxial view of mature leaf blade. D. Inflorescence. E. Flowers showing stamens. F. Infructescence. G. Detail of fruit on infructescence. Photos by K. Pimenta.
FIGURE 4. Anthurium itacarense. A. Habit. B in Two new species of Anthurium sect. Urospadix (Araceae) endemic to the restinga vegetation of Bahia, Brazil
FIGURE 4. Anthurium itacarense. A. Habit. B. Detail of creeping stem apex. C. Detail of leaf blade base. D. Cross section of petiole. E. Cross section of geniculum. F. Inflorescence. G. Stipe. H. Flowers. I–J. Tepals. Illustration by K. Pimenta.
FIGURE 1. Anthurium bellissimum. A. Habit. B in Two new species of Anthurium sect. Urospadix (Araceae) endemic to the restinga vegetation of Bahia, Brazil
FIGURE 1. Anthurium bellissimum. A. Habit. B. Detail of leaf blade base. C. Cross sections of petiole. D. Cross section of geniculum. E. Cross section of peduncle. F. Stipe. G. Spathe curling up when mature. H. Flowers. I–J. Tepals. K. Fruit. L. Seed. Illustration by K. Pimenta.
FIGURE 4 in Species richness, geographic distribution and endemism of Pinguicula (Lentibulariaceae) in the Mexican Transition Zone
FIGURE 4. Species richness and endemism distribution of Pinguicula by: A) country; B) biome; C) biogeographic province. Dark grey = total species, light grey = endemic species.
FIGURE 3 in Species richness, geographic distribution and endemism of Pinguicula (Lentibulariaceae) in the Mexican Transition Zone
FIGURE 3. Biomes with habitats of Pinguicula. A) Cave with stalactites, Tropical & Subtropical Coniferous Forest; B, I) Inselbergs, Tropical & Subtropical Coniferous Forest; C–D) Limestone rock walls, Tropical & Subtropical Moist Broadleaf Forest; E–G, L) Tropical & Subtropical Dry Broadleaf Forest; H) Ravine with a gypsum soils, Tropical & Subtropical Coniferous Forest; J–L) Tropical & Subtropical Coniferous Forest; K) Desert & Xeric Shrubland.
FIGURE 2 in Species richness, geographic distribution and endemism of Pinguicula (Lentibulariaceae) in the Mexican Transition Zone
FIGURE 2. Temperate winter and annual tropical rosettes in Pinguicula. A) P. ehlersieae; B) P. crassifolia; C, I) P. moranensis; D) P. acuminata; E) P. nivalis; F) P. michoacana; G) P. rotundiflora; H) P. kondoi; J) P. lilacina; K) P. takaki; L) P. pygmaea. A–C) epigeous rosettes, D–F) hypogeous rosettes, G–I), subhypogeous rosettes, J–L) annual rosettes. A–L) J. López.
FIGURE 6 in Species richness, geographic distribution and endemism of Pinguicula (Lentibulariaceae) in the Mexican Transition Zone
FIGURE 6. Geographical distribution of subgenera and species of Pinguicula. A) Subgenera distribution; B) Pinguicula subgenus Isoloba; C) Pinguicula subgenus Pinguicula; D) Pinguicula subgenus Temnoceras.
FIGURE 5 in Species richness, geographic distribution and endemism of Pinguicula (Lentibulariaceae) in the Mexican Transition Zone
FIGURE 5. Distribution of Pinguicula by elevation. A) Histogram frequency of the species richness distribution, in dark grey the principal class; B) boxplot distribution of Pinguicula species.
Figure 3 in Multilocus phylogeny and morphological analyses illuminate overlooked diversity of Soriculus (Mammalia: Eulipotyphla: Soricidae), with descriptions of two new endemic species from the eastern Himalayas
Figure 3. Phylogenetic trees of the genus Soriculus based on (A) the concatenated mtDNA and (B) the concatenated nDNA using the ML and BI methods. Node numbers indicate Bayesian posterior probabilities (PP) and ultrafast bootstrap supports (UFBoot).
FIGURE 3 in A revision of Chinese endemic Neptis hesione Leech, 1890 with a new species described from Hainan Island (Lepidoptera, Nymphalidae)
FIGURE 3. Male genitalia of Neptis kejiaae sp. nov. le = lateral left view, ds = dorsal view, vs = ventral view.
FIGURE 6 in A revision of Chinese endemic Neptis hesione Leech, 1890 with a new species described from Hainan Island (Lepidoptera, Nymphalidae)
FIGURE 6. Phylogenetic tree of Neptis hesione-group inferred from ML analysis of COI with bootstrap support values (SHaLRT support/ultrafast bootstrap support). Mainly modified from Wu et al. (2016) and Ma et al. (2020).
Fig. 5 in Potential Distribution of Vesperoctenus flohri Bates (Coleoptera: Vesperidae), an Endemic Species in Mexico, and Intraspecific Variation in Male Genitalia
Fig. 5. Representation of polymorphism in the tegmen of Vesperoctenus flohri. A) Specimen from Alchichica, Puebla, B) Specimen from Parres, Mexico City, C) Specimen from Dr. Arroyo, Nuevo LeÓn, D) Specimen from PeÑa Nevada, Nuevo LeÓn, E) Specimen from Sierra la Laguna, Baja California Sur, F–I) Specimens from Piedra Canteada, Tlaxcala.
Figure 11 in Fantastic beasts and how to delimit them: an integrative approach using multispecies coalescent methods reveals two new, endemic Dugesia species (Platyhelminthes: Tricladida) from Corsica and Sardinia
Figure 11. Dugesia hoidi: A, holotype RMNH.VER.21056.1, photomicrograph showing the penial fold (pf) in sagiưal section; B, paratype RMNH.VER.21056.2, photomicrograph showing the penis papilla (pp) and the penial fold (pf) in transverse section.
Figure 10. Dugesia hoidi. Holotype RMNH.VER.21056.1 in Fantastic beasts and how to delimit them: an integrative approach using multispecies coalescent methods reveals two new, endemic Dugesia species (Platyhelminthes: Tricladida) from Corsica and Sardinia
Figure 10. Dugesia hoidi. Holotype RMNH.VER.21056.1: A, sagiưal reconstruction of the male copulatory apparatus (anterior to the right); B, sagiưal reconstruction of the penial fold and female copulatory apparatus; C, photomicrograph of sagiưal section, showing penis bulb (pb) with the seminal vesicle (sv), right (rvd) and the less (lvd) vas deferens, penis papilla (pp) with the pointed diaphragm (d), and the ejaculatory duct (ed).
Figure 7. Dugesia benazzii s.s., CGAS Pla 25.1 in Fantastic beasts and how to delimit them: an integrative approach using multispecies coalescent methods reveals two new, endemic Dugesia species (Platyhelminthes: Tricladida) from Corsica and Sardinia
Figure 7. Dugesia benazzii s.s., CGAS Pla 25.1: A, sagiưal reconstruction of the male copulatory apparatus (anterior to the right); B, sagiưal reconstruction of the fold and female copulatory apparatus; C, photomicrograph of sagiưal section, showing the penis bulb (pb), penis papilla (pp) with conical, pointed diaphragm (d), ejaculatory duct (ed), penial fold (pf), and 'angled' bursal canal (abc).
Figure 6 in Fantastic beasts and how to delimit them: an integrative approach using multispecies coalescent methods reveals two new, endemic Dugesia species (Platyhelminthes: Tricladida) from Corsica and Sardinia
Figure 6. Karyogram of (A) Dugesia benazzii s.s. from Su Rizzolu River (Oưi, loc. 13) and (B) Dugesia hoidi.
Figure 1. A in Fantastic beasts and how to delimit them: an integrative approach using multispecies coalescent methods reveals two new, endemic Dugesia species (Platyhelminthes: Tricladida) from Corsica and Sardinia
Figure 1. A, sampling localities of the present study. Numbers correspond to population codes listed in Appendix, Table A1 and coincide with those in Dols-Serrate et al. (2020). Red circles indicate populations used for morphological analyses. B, rectangular inset: enlargement of the Bunnari–Mascari confluence area. Ŋe map was created using Q-GIS v.3.2.2 (hưps://qgis.org/es/site/ last accessed September 2023) and edited in ILLUSTÞTOR CC v.22.0.1 (hưps://www.adobe.com/products/illustrator.html last accessed September 2023).
Figure 14 in Fantastic beasts and how to delimit them: an integrative approach using multispecies coalescent methods reveals two new, endemic Dugesia species (Platyhelminthes: Tricladida) from Corsica and Sardinia
Figure 14. Dugesia mariae: A, CGAS Pla 27. 1, photomicrograph showing the penis bulb with the seminal vesicle (sv), less (lvd) and right (rvd) vas deferens, the penial papilla (pp) and the two atrial folds (af) in horizontal section; B, CGAS Pla 27. 4, photomicrograph showing the penis papilla (pp) and the penial fold (pf) in transverse section.
Figure 9. Dugesia benazzii s.s in Fantastic beasts and how to delimit them: an integrative approach using multispecies coalescent methods reveals two new, endemic Dugesia species (Platyhelminthes: Tricladida) from Corsica and Sardinia
Figure 9. Dugesia benazzii s.s.: A, CGAS Pla 25. 6, photomicrograph showing the penial fold (pf) and the two atrial folds (af) in sagiưal section; B, CGAS Pla 25. 4, photomicrograph showing the penis papilla (pp) and the penial fold (pf) in transverse section.
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.