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4,937 results for “Endemic species”
FIGURE 4 in Three new endemic species of Epictia Gray, 1845 (Serpentes: Leptotyphlopidae) from the dry forest of northwestern Peru
FIGURE 4. Holotype of Epictia vanwallachi sp. nov. (CORBIDI 14682). Dorsal view in life (A); Detail of dorsal aspect of head and tail in life (B); Detail of ventral aspect of tail in preservative (C).
FIGURE 2 in Three new endemic species of Epictia Gray, 1845 (Serpentes: Leptotyphlopidae) from the dry forest of northwestern Peru
FIGURE 2. Lateral (A), dorsal (B) and ventral (C) views of head of Holotype of Epictia septemlineata sp. nov. (CORBIDI 14683); Lateral (D), dorsal (E) and ventral (F) views of head of Holotype of Epictia vanwallachi sp. nov. (CORBIDI 14682); Lateral (G), dorsal (H) and ventral (I) views of head of Paratype of Epictia antoniogarciai sp. nov. (ZFMK 90934).
FIGURE 7 in Three new endemic species of Epictia Gray, 1845 (Serpentes: Leptotyphlopidae) from the dry forest of northwestern Peru
FIGURE 7. Habitat and localities of Epictia antoniogarciai sp. nov. Track in the type locality (A); and vicinities of Zapatalgo, Utcubamba Province, Amazonas Region, Peru (B), where the paratypes were collected.
FIGURE 4 in Two new species in the endemic Chinese leafhopper genera Flexocerus and Idioceroides (Hemiptera: Cicadellidae: Idiocerinae)
FIGURE 4. Idioceroides petaliformis sp. nov. A, male pygofer, anal tube and subgenital plate, lateral view; B, valve; C, connective, ventral view; D, aedeagus, lateral view; E, aedeagus, ventral view; F, style, lateral view.
FIGURE 2 in Two new species in the endemic Chinese leafhopper genera Flexocerus and Idioceroides (Hemiptera: Cicadellidae: Idiocerinae)
FIGURE 2. Flexocerus sinuatus sp. nov. A, first valvulae; B, second valvulae; C, apex of first valvulae; D, female genitalia, ventral view; E, apex of second valvulae; F, fore femur, anterior view; G, fore tibia, anterior view.
FIGURE 3 in Two new species in the endemic Chinese leafhopper genera Flexocerus and Idioceroides (Hemiptera: Cicadellidae: Idiocerinae)
FIGURE 3. Flexocerus sinuatus sp. nov. A, male pygofer, anal tube and subgenital plate, lateral view; B, valve; C, connective, lateral view; D, connective, ventral view; E, aedeagus, lateral view; F, aedeagus, ventral view; G, style, lateral view.
FIGURE 1 in Two new species in the endemic Chinese leafhopper genera Flexocerus and Idioceroides (Hemiptera: Cicadellidae: Idiocerinae)
FIGURE 1. Flexocerus sinuatus sp. nov. A, habitus of male, dorsal view; B, habitus of male, lateral view; C, head and thorax of male, dorsal view; D, face of male; E, head and thorax of female, dorsal view; F, face of female; G, habitus of female, dorsal view; H, habitus of female, lateral view. Idioceroides petaliformis sp. nov. I, habitus, dorsal view; J, habitus, lateral view; K, head and thorax, dorsal view; L, face.
FIGURE 8 in Two new endemic species of Ameiva (Squamata: Teiidae) from the dry forest of northwestern Peru and additional information on Ameiva concolor Ruthven, 1924
FIGURE 8. Male holotype of Ameiva concolor (UMMZ 59192): dorsal (A), lateral (B) and ventral (C) views of head, ventral view of cloacal region and right thigh with femoral pores (D).
FIGURE 3 in Two new endemic species of Ameiva (Squamata: Teiidae) from the dry forest of northwestern Peru and additional information on Ameiva concolor Ruthven, 1924
FIGURE 3. Maximum clade credibility tree (A) of the Ameiva ameiva-bifrontata-group inferred with BEAST using 866 bp of mitochondrial DNA (concatenated 12S and 16S rRNA). Values above branches are posterior probabilities, outgroup (Holcosus festivus) not shown. Map (B) showing the distribution of A. nodam sp. nov. (red triangles), A. aggerecusans sp. nov (orange squares) and A. concolor (green dots). The stars mark the type localities of A. nodam sp. nov (red), A. aggerecusans sp. nov (orange) and A. concolor (green). The following abbreviations for the locality names are used: LAB = La Balza; PER = Perico; BEL = Bellavista; JGA = Jaén/Gotas de Agua; BAC = Bagua Chica; PUC = Pucará; CUE = Cumba; PUW = Puerto Malleta; ZAP = Zapatalgo; CHA = Chacanto; BAL = Balsas; PPY = Paipoy; CAL = Calemar; VIJ = Vijus; CGL = Chagual; PIA = Pías.
FIGURE 2 in Two new endemic species of Ameiva (Squamata: Teiidae) from the dry forest of northwestern Peru and additional information on Ameiva concolor Ruthven, 1924
FIGURE 2. Male holotype of Ameiva nodam sp. nov (CORBIDI 1870) from Bellavista, Cajamarca, Peru in dorsal (A) and ventral (B) view; adult female paratype from Bellavista, Cajamarca, Peru (C); and juvenile paratype (ZFMK 88736) from Bagua Chica, Amazonas, Peru (D). Please note: the depression on the back of the holotype is a bone fracture, which was accidentally caused when the animal was captured.
FIGURE 11 in Two new endemic species of Ameiva (Squamata: Teiidae) from the dry forest of northwestern Peru and additional information on Ameiva concolor Ruthven, 1924
FIGURE 11. Principle component analysis plots (PCA-env) representing niche separation of Ameiva aggerecusans and A. concolor (A), A. aggerecusans and A. nodam (B) and A. concolor and A. nodam (C) along the first two axes of the PCA. The solid contour line describes 100% and the dashed line 50% of the available environmental space (background). The density of the occurrences of the species by cell is depicted by the gray shadings. The correlation circles explain the contribution of all 19 climatic variables (BIO1–BIO19, see Appendix II for a more detailed explanation of the variables) on the two PC axes and contains the percentage of variation explained by each axe.
FIGURE 6 in Two new endemic species of Ameiva (Squamata: Teiidae) from the dry forest of northwestern Peru and additional information on Ameiva concolor Ruthven, 1924
FIGURE 6. Male holotype of Ameiva aggerecusans sp. nov. (ZFMK 85024) from Balsas, Amazonas, Peru (A); adult female (ZFMK 90861) from Zapatalgo, Amazonas, Peru with dorsal stripe (B); adult male (ZFMK 85010) from Balsas, Amazonas, Peru with a dark, fringed dorsolateral stripe (C); and juvenile (ZFMK 90859) from Balsas, Amazonas, Peru (D); close-up of front leg coloration of ZFMK 85024 (E).
FIGURE 9 in Two new endemic species of Ameiva (Squamata: Teiidae) from the dry forest of northwestern Peru and additional information on Ameiva concolor Ruthven, 1924
FIGURE 9. Male holotype of Ameiva concolor (UMMZ 59192) from Paipoy, Cajamarca, Peru (A), photograph by G. Schneider; adult female (ZFMK 91788) from Pías, La Libertad, Peru (B).
FIGURE 5 in Two new endemic species of Ameiva (Squamata: Teiidae) from the dry forest of northwestern Peru and additional information on Ameiva concolor Ruthven, 1924
FIGURE 5. Male holotype of Ameiva aggerecusans sp. nov. (ZFMK 85024): dorsal (A), lateral (B) and ventral (C) views of head, ventral aspect of left foot (D), ventral aspect of left hand (E), ventral view of cloacal region and right thigh with femoral pores (F).
FIGURE 1 in Two new endemic species of Ameiva (Squamata: Teiidae) from the dry forest of northwestern Peru and additional information on Ameiva concolor Ruthven, 1924
FIGURE 1. Male holotype of Ameiva nodam sp. nov. (CORBIDI 1870): dorsal (A), lateral (B) and ventral (C) views of head, ventral aspect of left foot (D), ventral aspect of left hand (E), ventral view of cloacal region and right thigh with femoral pores (F).
FIGURE 7 in A new species of Homonota (Reptilia: Squamata: Gekkota: Phyllodactylidae) endemic to the hills of Paraje Tres Cerros, Corrientes Province, Argentina
FIGURE 7. Scalation of temporal region in two Homonota species. (A) H. taragui sp. nov. (UNNEC 11293), and (B) H. uruguayensis. Arrows indicate keeled scales.
FIGURE 4 in A new species of Homonota (Reptilia: Squamata: Gekkota: Phyllodactylidae) endemic to the hills of Paraje Tres Cerros, Corrientes Province, Argentina
FIGURE 4. Thigh surface in Homonota species. (A) H. borellii, (B) H. rupicola, and (C) H. taragui sp. nov. (UNNEC 11293). Arrows indicate several keeled scales in the new species.
FIGURE 3 in A new species of Homonota (Reptilia: Squamata: Gekkota: Phyllodactylidae) endemic to the hills of Paraje Tres Cerros, Corrientes Province, Argentina
FIGURE 3. Homonota taragui sp. nov. holotype adult female in dorsal and ventral view (UNNEC 11293), from Paraje Tres Cerros, General San Martin Department, Corrientes Province, Argentina.
FIGURE 1 in A new species of Homonota (Reptilia: Squamata: Gekkota: Phyllodactylidae) endemic to the hills of Paraje Tres Cerros, Corrientes Province, Argentina
FIGURE 1. Map of Argentina showing the type locality of Homonota taragui sp. nov. (black dot) at Nazareno, Paraje Tres Cerros. Black ovals indicate the three hills Nazareno (A), Capará (B), and El Chico (C), respectively, where this new species is found.
FIGURE 9 in A new species of Homonota (Reptilia: Squamata: Gekkota: Phyllodactylidae) endemic to the hills of Paraje Tres Cerros, Corrientes Province, Argentina
FIGURE 9. Nest site microhabitat of Homonota taragui sp. nov. The nest is hidden below the rock (arrow) resting on a large stone block (upper image). One egg (arrow) is found on nesting sites (rock removed; center image). Egg laid on a bed of cockroach excrement (lower image).
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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.