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4,937 results for “Endemic species”
FIGURES 6–11. Contarinia ampelitsiae. 6 in A new species of Contarinia (Diptera: Cecidomyiidae) from flower galls on the relict tree Zelkova abelicea (Ulmaceae) endemic to Crete (Greece)
FIGURES 6–11. Contarinia ampelitsiae. 6. Head (only one apical seta shown). 7. Male 4th antennal flagellomere. 8. Female 4th antennal flagellomere. 9. Acropod. 10. Female cerci, dorsal. 11. Female cerci, lateral.
FIGURE 2. Tigridia azufresensis. A–B. Habit. C in A new species and endemism of Tigridia (Tigridieae, Iridaceae) in the Transmexican Volcanic Belt, Mexico
FIGURE 2. Tigridia azufresensis. A–B. Habit. C. Dissected flower (inner tepal sections: 1 = claw, 2 = blade, 3 = limb, 2 + 3 = lamina). D–E. Flower in frontal and lateral views. F. Style and stamens. G. Seeds. Illustrated by Ericka Belén Cortez Castro based on type material (G. Munguía-Lino et al. 921).
FIGURE 5 in A new species and endemism of Tigridia (Tigridieae, Iridaceae) in the Transmexican Volcanic Belt, Mexico
FIGURE 5. Endemics species of Tigridia to Transmexican Volcanic Belt. A. Tigridia flammea. B–C. Habitat of Tigridia flammea. D. Habitat of Tigridia gracielae. E. Tigridia gracielae. F. Tigridia matudae. G. Habitat of Tigridia matudae. H. Habitat of Tigridia venusta. I. Tigridia venusta.
FIGURE 4 in A new species and endemism of Tigridia (Tigridieae, Iridaceae) in the Transmexican Volcanic Belt, Mexico
FIGURE 4. Species of Violacea complex in Tigridia. A–B. Tigridia augusta. C–D. Tigridia dugesii. E–F. Tigridia durangensis. G–H. Tigridia mexicana subsp. lilacina. I–J. Tigridia mexicana subsp. mexicana. K–L. Tigridia mexicana subsp. passiflora. E–F. Photographs by J. González-Gallegos.
FIGURE 3 in A new species and endemism of Tigridia (Tigridieae, Iridaceae) in the Transmexican Volcanic Belt, Mexico
FIGURE 3. Distribution map of endemic species of Tigridia in the Transmexican Volcanic Belt. Biogeographical limit (black line), state limit (thick grey line).
Figure 12 in Two new species of monitor lizards (Squamata: Varanus) endemic to the Louisiade and Tanimbar Archipelagos with a key to the subgenus Euprepiosaurus
Figure 12. Adult Varanus tanimbar sp. nov. (WAM 109896) Lorulun, Yamdena Island (photo Richard How).
Figure 11 in Two new species of monitor lizards (Squamata: Varanus) endemic to the Louisiade and Tanimbar Archipelagos with a key to the subgenus Euprepiosaurus
Figure 11. Juvenile Varanus tanimbar sp. nov. caught by local hunters at Saumlaki, Yamdena (photo VW).
Figure 3 in Two new species of monitor lizards (Squamata: Varanus) endemic to the Louisiade and Tanimbar Archipelagos with a key to the subgenus Euprepiosaurus
Figure 3. Dorsal, ventral and head profile of the holotype (ZMUT Sa197) of Varanus louisiadensis sp. nov.
Figure 2 in Two new species of monitor lizards (Squamata: Varanus) endemic to the Louisiade and Tanimbar Archipelagos with a key to the subgenus Euprepiosaurus
Figure 2. Linear discriminant analysis showing morphospaces for members of the Varanus indicus group based on scalation characters P, Q, R, S, T, N, XY and m.
Figure 1 in Two new species of monitor lizards (Squamata: Varanus) endemic to the Louisiade and Tanimbar Archipelagos with a key to the subgenus Euprepiosaurus
Figure 1. Map of the western Pacific region showing the geographic ranges of the species of the Varanus indicus group.
Figure 10 in Two new species of monitor lizards (Squamata: Varanus) endemic to the Louisiade and Tanimbar Archipelagos with a key to the subgenus Euprepiosaurus
Figure 10. Adult Varanus tanimbar sp. nov. male killed by local hunters near Saumlaki, Yamdena (photo VW).
Figure 7 in Two new species of monitor lizards (Squamata: Varanus) endemic to the Louisiade and Tanimbar Archipelagos with a key to the subgenus Euprepiosaurus
Figure 7. Map of the Papuan region (A) with the Tanimbar Islands (B) and Louisiade Archipelago (C) enlarged. The type locality of Varanus louisiadensis sp. nov. on Misima island is indicated with a filled circle, and additional collection localities for the paratypes on Sudest and Rossell are indicated by open circles. The type locality of V. tanimbar sp. nov., Latdalam, is indicated by a filled star, and the collection locality of one of the paratypes at Adaut, Selary Island, with an open star.
Fig. 6 in Cytotoxic and α-glucosidase inhibitory metabolites from twigs and leaves of Phyllanthus mirabilis, a species endemic to limestone mountains
Fig. 6. Hydrolysis reaction of phyllatyramine C (3) and 1H NMR spectra (in CD OD) of isolated phyllatyramine C (3), tyramine (5) and gallic acid (26), and hy3 drolysis products 5a and 26a.
FIGURE 5. Tillandsia alcatrazensis phenotypical variation. A–C in Tillandsia alcatrazensis (Bromeliaceae), a new endemic species from Alcatrazes Island in southeastern Brazil
FIGURE 5. Tillandsia alcatrazensis phenotypical variation. A–C. Front view of the inflorescences. D–F. Lateral view of the inflorescences. G–I. Habit. Bars: A–F = 1 cm; G–I = 2 cm. Photos by G.P. Sabino based on G.P. Sabino et al. 772 (A,D,G), GPS et al. 773 (B,E,H) and GPS et al. 774 (C,F,I).
FIGURE 4. A–J in Tillandsia alcatrazensis (Bromeliaceae), a new endemic species from Alcatrazes Island in southeastern Brazil
FIGURE 4. A–J Tillandsia alcatrazensis (G.P. Sabino 551). A. Habit. B. Inflorescence branch. C. Floral bract and flower. D. Detail of the lepidote sepal. E. Floral bracts. F. Sepals. G. Petals. H. Stigma. I. Gynoecium. J. Stamen. (Illustration by Danilo Ulbrich Tavares).
FIGURE 3. Tillandsia alcatrazensis. A. Habit. B in Tillandsia alcatrazensis (Bromeliaceae), a new endemic species from Alcatrazes Island in southeastern Brazil
FIGURE 3. Tillandsia alcatrazensis. A. Habit. B. Primary branch (left) and primary branch with a secondary branch (right). C. flower with a floral bract. D. Floral bracts. E. Sepals. F. Petals. G. Stamens. H. Gynoecium. Bars: A = 2 cm; B–C= 1 cm; D= 1 cm; E= 1 cm; F= 1 cm; G, H = 0.5 cm. (Photos by G.P. Sabino based on G.P. Sabino 551, 772).
FIGURE 2 in Tillandsia alcatrazensis (Bromeliaceae), a new endemic species from Alcatrazes Island in southeastern Brazil
FIGURE 2. Tillandsia alcatrazensis in habitat. A. Growing as a rupicole on rocky substrate of the granitic outcrops, photo by Gabriel Pavan Sabino. B. Close up of the flowers, photo by Vitor de Andrade Kamimura.
FIGURE 1 in Tillandsia alcatrazensis (Bromeliaceae), a new endemic species from Alcatrazes Island in southeastern Brazil
FIGURE 1. Geographical location and habitat of Tillandsia alcatrazensis in Alcatrazes Island, state of São Paulo, southeastern Brazil. A. South America and Alcatrazes Island location, São Paulo state, southeastern Brazil. B. Red dots indicating the collection points of T. alcatrazensis on the island (adapted from Google Earth Pro). C. Overview of Alcatrazes Island, photo by Luciano Candisani. D. Overview of a granitic outcrop where Tillandsia alcatrazensis grows together with Tillandsia cf. araujei and Coleocephalocereus fluminensis, photo by Gabriel Pavan Sabino.
FIGURE 4 in Two new endemic Begonia species named after historical landmarks of Ilocos Sur, Philippines
FIGURE 4. Begonia bessangpassensis Calaramo, Rubite, & C.W. Lin. a–e (Pistillate flower), a flower bud, b. capsule bract removed, c. cross section of capsule, d. fully opened flower, e. stamens; f–i (Staminate flower), f. stamens, g. opened flower, h. flower bud, i. sideview of flower; j. pistillate flower with bract removed; k. staminate flower with flower bud bract remove; l. stipules; m. flattened adaxial and abaxial surface; n. leaf petiole; o. bract and young leaf; p. terminal branch with flower; q. plant habit. All from Calaramo HNUL0021093.
FIGURE 3 in Two new endemic Begonia species named after historical landmarks of Ilocos Sur, Philippines
FIGURE 3. Begonia bessangpassensis Calaramo, Rubite, & C.W.Lin. A, Branch; B, B', Leaf, adaxial and abaxial surfaces; C, Stipule; D, D', D'', Bracts; E, Staminate flower, face and side views; F, F', Stamens, dorsal and ventral views; G, Pistillate flower, face and side views; H, H', Style and stigmatic band, dorsal and ventral views; I, Cross section of ovary. All from Calaramo 0021093.
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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.