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1,473 results for “Geographic distribution”
FIGURE 7 in Raising Thalictrum uncatum var. angustialatum (Ranunculaceae) from China to T. angustialatum as an independent species based on evidence from morphology, geographical distribution, cytology and molecular systematics
FIGURE 7. Sepals (A, E), stamens (B, F), carpels (C, G), and achenes (D, H) in Thalictrum angustialatum (A‒D) and T. uncatum (E‒H).
FIGURE 5 in Raising Thalictrum uncatum var. angustialatum (Ranunculaceae) from China to T. angustialatum as an independent species based on evidence from morphology, geographical distribution, cytology and molecular systematics
FIGURE 5. Thalictrum sinomacrostigma in the wild (Kangding in Sichuan, China). A. Habitat. B. Habit (plant in flowering). C. Habit (plant in fruiting). D. Roots. E. Portion of stem. F. Leaf (left: adaxial side; right: abaxial side; inset: stipels). G. Leaflet (left: adaxial side; right: abaxial side). H. Flower. I. Sepal (left: abaxial side; right: adaxial side). J. Stamens. K. Carpels. L. Aggregate fruit. M. Achenes (immature). Photographed by Y.P. Zeng.
FIGURE 6 in Raising Thalictrum uncatum var. angustialatum (Ranunculaceae) from China to T. angustialatum as an independent species based on evidence from morphology, geographical distribution, cytology and molecular systematics
FIGURE 6. Thalictrum uncatum in the wild (Kangding in Sichuan, China). A. Habitat. B. Habit (plant in flowering). C. Habit (plant in fruiting). D. Roots. E. Portion of stem. F. Leaf (left: adaxial side; right: abaxial side; inset: stipels). G. Leaflet (left: adaxial side; right: abaxial side). H. Flower. I. Sepal (left: abaxial side; right: adaxial side). J. Stamens. K. Carpels. L. Aggregate fruit. M. Achenes (immature). Photographed by Y.P. Zeng.
FIGURE 4 in Raising Thalictrum uncatum var. angustialatum (Ranunculaceae) from China to T. angustialatum as an independent species based on evidence from morphology, geographical distribution, cytology and molecular systematics
FIGURE 4. Thalictrum leuconotum in the wild (A, B, D‒K: Wenchuan in Sichuan, China; C, L, M: Yadong in Xizang, China). A. Habitat. B. Habit (plant in flowering). C. Habit (plant in fruiting). D. Roots. E. Portion of stem. F. Leaf (left: adaxial side; right: abaxial side; inset: stipels). G. Leaflet (left: adaxial side; right: abaxial side). H. Flower. I. Sepal (left: abaxial side; right: adaxial side). J. Stamens. K. Carpels. L. Aggregate fruit. M. Achenes (immature). Photographed by Y.P. Zeng.
FIGURE 3 in Raising Thalictrum uncatum var. angustialatum (Ranunculaceae) from China to T. angustialatum as an independent species based on evidence from morphology, geographical distribution, cytology and molecular systematics
FIGURE 3. Specimens of Thalictrum angustialatum. A‒D: China, Yunnan, Qiaojia, Y.P. Zeng & Q.L. Huang 315 (IBSC).
FIGURE 2 in Raising Thalictrum uncatum var. angustialatum (Ranunculaceae) from China to T. angustialatum as an independent species based on evidence from morphology, geographical distribution, cytology and molecular systematics
FIGURE 2. Thalictrum angustialatum in the wild (Qiaojia in Yunnan, China). A. Habitat. B. Habit (plant in flowering). C. Habit (plant in fruiting). D. Roots. E. Portion of stem. F. Leaf (left: adaxial side; right: abaxial side; inset: stipels). G. Leaflet (left: adaxial side; right: abaxial side). H. Flower. I. Sepal (left: abaxial side; right: adaxial side). J. Stamens. K. Carpels. L. Aggregate fruit. M. Achenes (immature). Photographed by Y.P. Zeng.
FIGURE 2 in Clarification of the type locality and geographical distribution of Gentiana damyonensis (Gentianaceae, Gentianeae)
FIGURE 2. Distribution of Gentiana damyonensis (●). The black arrow indicates Zogang county in southeastern Xizang, the true type locality of this species, while the red one and the blue one indicate Dêrong (■) and Muli (▲) counties in southwestern Sichuan respectively, which have been previously wrongly recorded as the type locality of this species.
FIGURES 31–32. Geographical distributions. 31. O in Taxonomic revision of African water beetles in the genus Ochthebius Leach (1815) subgenus Aulacochthebius Kuwert (1887) (Coleoptera: Hydraenidae)
FIGURES 31–32. Geographical distributions. 31. O. (A.) plicicollis Fairmaire. 32. O. (A.) perlaevis (Perkins).
FIGURES 29–30. Geographical distributions. 29. O in Taxonomic revision of African water beetles in the genus Ochthebius Leach (1815) subgenus Aulacochthebius Kuwert (1887) (Coleoptera: Hydraenidae)
FIGURES 29–30. Geographical distributions. 29. O. (A.) mpumalangicus n. sp., O. (A.) tenuipunctus Régimbart and O. (A.) solitarius n. sp. 30. O. (A.) libertarius Aguilera et al. and O. (A.) continentalis Orchymont.
FIGURES 22–23. Geographical distributions. 22. O in Taxonomic revision of African water beetles in the genus Ochthebius Leach (1815) subgenus Aulacochthebius Kuwert (1887) (Coleoptera: Hydraenidae)
FIGURES 22–23. Geographical distributions. 22. O. (A.) copiosus n. sp. 23. O. (A.) latissimus n. sp.
FIGURES 27–28. Geographical distributions. 27. O in Taxonomic revision of African water beetles in the genus Ochthebius Leach (1815) subgenus Aulacochthebius Kuwert (1887) (Coleoptera: Hydraenidae)
FIGURES 27–28. Geographical distributions. 27. O. (A.) species in Kenya and Uganda. 28. O. (A.) strangulatus Régimbart, O. (A.) tenuipunctus Régimbart and O. (A.) nigeriensis n. sp.
FIGURES 24–26. Geographical distributions. 24. O in Taxonomic revision of African water beetles in the genus Ochthebius Leach (1815) subgenus Aulacochthebius Kuwert (1887) (Coleoptera: Hydraenidae)
FIGURES 24–26. Geographical distributions. 24. O. (A.) continentalis Orchymont. 25. O. (A.) scutatus n. sp. 26. O. (A.) persetosus n. sp. and O. (A.) flagellissimus n. sp.
FIGURE 39. Geographic distribution records Hippasa lycosina Pocock, 1900 in Notes on Indian wolf spiders: II. Genus Hippasa Simon, 1885 (Araneae: Lycosidae Hippasinae)
FIGURE 39. Geographic distribution records Hippasa lycosina Pocock, 1900 in India (Pocock 1900; Gravely 1924; Tikader & Malhotra 1980; Ahmed et al. 2015; present data).
FIGURE 1 in New records and geographic distribution of Cerambycidae (Insecta: Coleoptera) in the Humid Chaco District, Argentina
FIGURE 1. (A) Geographic location of the sampled area. Chaco province, Argentina. 1) El Bagual RF; 2) El Bagual QF; 3) San Carlos; 4) Vedia; 5) Antequera; 6) Colonia Benítez RF; 7) Los Chaguares; 8) María Zaida; 9) Colonia Benítez QF; 10) Quintana; 11) Parque Chaco RF1; 12) Parque Chaco RF2; Occurrence records in quebracho forests are shown as brown circles and occurrences in riparian forests as green circles. (B–C) Humid Chaco environments where Cerambycidae species were captured (B) RF= Riparian forest; (C) QF= Quebracho forest [Schinopsis sp. (Anacardiaceae)].
FIGURES 2–9 in New records and geographic distribution of Cerambycidae (Insecta: Coleoptera) in the Humid Chaco District, Argentina
FIGURES 2–9. New records of Cerambycinae in Chaco province,Argentina: (2) Coleoxestia pubicornis, female; (3) Eburodacrys truncata, female; (4) Ectenessidia nigriventris, male; (5) Amethysphaerion guarani, male; (6) Apyrauna annulicornis, female; (7) Pronoplon rubriceps, male; (8) Gorybia apatheia, female; (9) Hemilissa sulcicollis, female. Scale bar: 1 mm.
FIGURES 10–15 in New records and geographic distribution of Cerambycidae (Insecta: Coleoptera) in the Humid Chaco District, Argentina
FIGURES 10–15. New records of Lamiinae in Chaco province, Argentina: (10) Trypanidius maculatus, male; (11) Recchia goiana, female; (12) Rosalba approximata, male; (13) Rosalba digna, male; (14) Callisema rufipes, female; (15) Hypsioma steinbachi, female. Scale bar: 1 mm.
FIGURE 1 in The genus Contracaecum Raillet & Henry (Nematoda: Anisakidae): host and geographical distribution on Neotropical and Antarctic species
FIGURE 1. Distribution of Neotropical and Antarctic Contracaecum species indicated by reference numbers according to Table 1.
FIGURES 1–5 in A new species of Parasycorax, Duckhouse (Diptera, Psychodidae, Sycoracinae) from the Atlantic Forest in southeastern Brazil and Geographic Distribution of the genus
FIGURES 1–5. Parasycorax trispina sp. nov., male. 1. Head, frontal view. 2. Palpus. 3. Wing. 4. Gonocoxite, gonostylus, ejaculatory apodeme, aedeagus and parameres. 5. Cerci and hypoproct.
FIG. 2 in The Utility of Acoustic Citizen Science Data in Understanding Geographic Distributions of Morphologically Conserved Species: Frogs in the Litoria phyllochroa Species Group
FIG. 2. Map of eastern Australia including the states of Queensland (QLD), New South Wales (NSW), Australian Capital Territory (ACT), and Victoria (VIC) showing the mapped ranges of known extant species in the Litoria phyllochroa group as informed by data from FrogID and the Atlas of Living Australia, including areas where species' ranges may overlap.
FIG. 1 in The Utility of Acoustic Citizen Science Data in Understanding Geographic Distributions of Morphologically Conserved Species: Frogs in the Litoria phyllochroa Species Group
FIG. 1. Map of eastern Australia including the states of Queensland (QLD), New South Wales (NSW), Australian Capital Territory (ACT), and Victoria (VIC) showing records of known extant species of the Litoria phyllochroa group from the Atlas of Living Australia (ALA; A), FrogID (B), and a combined dataset containing both FrogID records and those deemed spatially and taxonomically reliable from ALA (C).
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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.