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4,937 results for “Endemic species”
Figure 1 from: Suarez FT, López MF, Gavilanes MJ, Monteros MF, García TS, Graham CH (2021) Three new endemic species of Lepanthes (Orchidaceae, Pleurothallidinae) from the highlands of Ecuador. PhytoKeys 180: 111-132. https://doi.org/10.3897/phytokeys.180.62671
Figure 1 Lepanthes oro-lojaensisA habit B flower C dissected sepal and petals D anther dorsal and ventral view E polinarium F dorsal view of the spread-out lip with dorsal view of the column G dorsal view of the spread-out lip without the column H lateral view of the ovary, lip and column. Drawn by F. Tobar & S.Tobar from the plant that served as type (Tobar et al 1648).
Figure 13 from: Suarez FT, López MF, Gavilanes MJ, Monteros MF, García TS, Graham CH (2021) Three new endemic species of Lepanthes (Orchidaceae, Pleurothallidinae) from the highlands of Ecuador. PhytoKeys 180: 111-132. https://doi.org/10.3897/phytokeys.180.62671
Figure 13 Natural habitat of Lepanthes caranquiA Paramo of La Carboneria in east of Imbabura province B El Chalpar Area east of Pichincha province. Photographs by F. Tobar and M. Monteros.
Figure 6 from: Suarez FT, López MF, Gavilanes MJ, Monteros MF, García TS, Graham CH (2021) Three new endemic species of Lepanthes (Orchidaceae, Pleurothallidinae) from the highlands of Ecuador. PhytoKeys 180: 111-132. https://doi.org/10.3897/phytokeys.180.62671
Figure 6 Lepanthes microprosartimaA habit B flower C dissected sepal and petals D dorsal view of the spread-out lip whitout the column E lateral view of the ovary, and lip F lateral view of the ovary and column G ventral view of the column showing the horse-shaped stigma Drawn by M. Gavilanes from the plant that served as type (Tobar et al. 3357).
Figure 12 from: Suarez FT, López MF, Gavilanes MJ, Monteros MF, García TS, Graham CH (2021) Three new endemic species of Lepanthes (Orchidaceae, Pleurothallidinae) from the highlands of Ecuador. PhytoKeys 180: 111-132. https://doi.org/10.3897/phytokeys.180.62671
Figure 12 Comparison with the most similar species to Lepanthes caranqui Tobar & Monteros ALepanthes caranquiBLepanthes pachychilaCLepanthes chrysinaDLepanthes ballatrix. Photographs by F. Tobar.
Figure 5 from: Suarez FT, López MF, Gavilanes MJ, Monteros MF, García TS, Graham CH (2021) Three new endemic species of Lepanthes (Orchidaceae, Pleurothallidinae) from the highlands of Ecuador. PhytoKeys 180: 111-132. https://doi.org/10.3897/phytokeys.180.62671
Figure 5 Landscape near to Cerro de Arcos, where Lepanthes oro-lojaensis was collected, in El Oro Province A natural vegetation remnants B areas where Pinus have been planted.
Figure 11 from: Suarez FT, López MF, Gavilanes MJ, Monteros MF, García TS, Graham CH (2021) Three new endemic species of Lepanthes (Orchidaceae, Pleurothallidinae) from the highlands of Ecuador. PhytoKeys 180: 111-132. https://doi.org/10.3897/phytokeys.180.62671
Figure 11 Lepanthes caranquiA plant growing in its natural habitat B front view of the flower C lateral view of the lip showing the apêndix D detail of the lepanthiform sheat E roots detail. Photograph by F. Tobar from the plant that served as type (Tobar et al. 3348).
Figure 9 from: Suarez FT, López MF, Gavilanes MJ, Monteros MF, García TS, Graham CH (2021) Three new endemic species of Lepanthes (Orchidaceae, Pleurothallidinae) from the highlands of Ecuador. PhytoKeys 180: 111-132. https://doi.org/10.3897/phytokeys.180.62671
Figure 9 Natural habitat of Lepanthes microprosartima in the western slopes of Pichincha volcano A Yanacocha reserve B Verdecocha reserve.
Figure 4 from: Suarez FT, López MF, Gavilanes MJ, Monteros MF, García TS, Graham CH (2021) Three new endemic species of Lepanthes (Orchidaceae, Pleurothallidinae) from the highlands of Ecuador. PhytoKeys 180: 111-132. https://doi.org/10.3897/phytokeys.180.62671
Figure 4 Geographical distribution of the three new species of Lepanthes microprsartima Tobar & M.J.Gavil. (black hexagon, three collections), Lepanthes caranqui Tobar & Monteros (black triangle, two collections) and Lepanthes oro-lojaensis Tobar & M.F.Lopez (black pentagon, one collection).
Figure 8 from: Suarez FT, López MF, Gavilanes MJ, Monteros MF, García TS, Graham CH (2021) Three new endemic species of Lepanthes (Orchidaceae, Pleurothallidinae) from the highlands of Ecuador. PhytoKeys 180: 111-132. https://doi.org/10.3897/phytokeys.180.62671
Figure 8 Comparison with the most similar species to Lepanthes microprosartima Tobar & M.J.Gavil. ALepanthes microprosartimaBLepanthes miradorCLepanthes tungurahuae. Photographs A, B by F. Tobar and C A. Hirtz.
Figure 10 from: Suarez FT, López MF, Gavilanes MJ, Monteros MF, García TS, Graham CH (2021) Three new endemic species of Lepanthes (Orchidaceae, Pleurothallidinae) from the highlands of Ecuador. PhytoKeys 180: 111-132. https://doi.org/10.3897/phytokeys.180.62671
Figure 10 Lepanthes caranquiA habit B flower C dissected sepal and petals D dorsal view of the spread-out lip without the column E dorsal view of the column F lateral view of the ovary, and lip. Drawn by F. Tobar from the plant that served as type (Tobar et al. 3348).
Figure 7 from: Suarez FT, López MF, Gavilanes MJ, Monteros MF, García TS, Graham CH (2021) Three new endemic species of Lepanthes (Orchidaceae, Pleurothallidinae) from the highlands of Ecuador. PhytoKeys 180: 111-132. https://doi.org/10.3897/phytokeys.180.62671
Figure 7 Lepanthes microprosartimaA plant growing in its natural habitat B front view of the flower C lateral view of the lip showing the apêndix D detail of the fruit E lateral view of the petal showing the revolute apex F detail of the leaf margin, minutely denticulate G anther dorsal view H anther ventral view I polinarium. Photograph by Francisco Tobar from the plant that served as type (Tobar et al. 3357).
Fig. 6 in Two new endangered species of Polygala series Trichospermae (Polygalaceae), endemic to the Cerrado domain, Tocantins State, Brazil
Fig. 6. Geographical distribution of Polygala tocantinensis J.F.B.Pastore & Antar sp. nov. (squares). PEJ = Parque Estadual do Jalapão, EESGT = Estação Ecológica Serra Geral do Tocantins. The creamcolored portion of the insert map shows the extent of the Cerrado domain in Brazil.
Figure 12 in Intraspecific clinal variation in Plagiodontes patagonicus (Gastropoda: Orthalicidae, Odontostominae), an endemic species from Argentina
Figure 12. Scatter plot of the scores of the first (PC1) and second (PC2) principal components for genital anatomy data of Plagiodontes snails from southern Buenos Aires province. Specimens from Bahía Blanca and Daniel Cerri (10–60 m above sea level) were recognizable as typical Plagiodontes patagonicus, while those from Curamalal and Ventania Mountains fitted the description of P. magnus.
Figure 4 in Intraspecific clinal variation in Plagiodontes patagonicus (Gastropoda: Orthalicidae, Odontostominae), an endemic species from Argentina
Figure 4. Scatter plot of the scores on the first axis of a two-axis Varimax solution against the altitude of the sampling localities, and regression line. r, Pearson correlation coefficient.
Figure 7 in Expanding the taxonomic conundrum: Three new species of groundwater crustacean (Syncarida, Bathynellacea, Parabathynellidae) endemic to the Iberian Peninsula
Figure 7. Distribution of the new species of Iberobathynella (Asturibathynella) and all species of Hexabathynella on the Iberian Peninsula.
Figure 27 in Descriptions of New Species of the Diverse and Endemic Land Snail Amplirhagada Iredale, 1933 from Rainforest Patches across the Kimberley, Western Australia (Pulmonata: Camaenidae)
Figure 27. Genitalia of Amplirhagada inusitata n.sp. (WAM S34728). For labelling of structures see Fig. 3. Scale bar = 10 mm.
Figure 7 in Descriptions of New Species of the Diverse and Endemic Land Snail Amplirhagada Iredale, 1933 from Rainforest Patches across the Kimberley, Western Australia (Pulmonata: Camaenidae)
Figure 7. Penial anatomy of Amplirhagada carsoniana n.sp. (WAM S34708). For labelling of structures see Fig. 4. Scale bar = 3 mm.
Figure 17. Amplirhagada vialae n in Descriptions of New Species of the Diverse and Endemic Land Snail Amplirhagada Iredale, 1933 from Rainforest Patches across the Kimberley, Western Australia (Pulmonata: Camaenidae)
Figure 17. Amplirhagada vialae n.sp. SEM of shell (AM C.472926), radula and jaw (AM C.472925). (A) Protoconch and first teleoconch whorls viewed from above. (B) Detail of first teleoconch whorls viewed from above. (C) Lateral view of shell. (D) Lateral view of last whorl. (E) Jaw. (F) Central and inner lateral teeth viewed from above. (G) Marginal teeth viewed from above. Scale bars: A, 200 µm, B–D, 1 mm; E, 100 µm, F, 20 µm; G, 10 µm.
Figure 35 in Uncovering Local Endemism in the Kimberley, Western Australia: Description of New Species of the Genus Amplirhagada Iredale, 1933 (Pulmonata: Camaenidae)
Figure 35. SEM photographs of Amplirhagada decora n.sp. (A–C) Shell, paratype AMS C463700: (A) apical whorl viewed from above (scale 1 mm); (B) sculpture on first three whorls viewed from above (scale 1 mm); (C) sculpture on last whorl (scale 100 µm). (D) Jaw, paratype AMS C463698 (scale 100 µm). (E–G) Radula, paratype AMS C463698: (E) central and lateral teeth (scale 20 µm); (F) close-up of lateral teeth (scale 10 µm); (G) inner and middle marginal teeth (scale 20 µm).
Figure 42 in Uncovering Local Endemism in the Kimberley, Western Australia: Description of New Species of the Genus Amplirhagada Iredale, 1933 (Pulmonata: Camaenidae)
Figure 42. SEM photographs of Amplirhagada lamarckiana n.sp., holotype WAM S34612. (A–C) Shell: (A) apical whorl viewed from above (scale 200 µm); (B) sculpture on second to forth whorl viewed from above (scale 200 µm); (C) sculpture on upper part of last whorl (scale 200 µm). (D) Jaw (scale 100 µm). (E–F) Radula: (E) central and lateral teeth (scale 20 µm); (F) middle marginal teeth (scale 10 µm).
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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.