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949 results for “species names”
FIGURE 1 in Viscum meyeri (Viscaceae)-a new name for Viscum anceps, an old-established mistletoe species endemic to southern Africa
FIGURE 1. Lectotype of Viscum meyeri and its replaced synonym Viscum anceps E.Mey. ex Sprague (K [barcode K000431432]; image credit: Royal Botanic Gardens, Kew).
FIGURE 6 in Fifty years without a name: a new species of Splendeuptychia Forster (Lepidoptera: Nymphalidae: Satyrinae)
FIGURE 6. Orthoimages of general habitat of Splendeuptychia tupinamba sp. nov. A. Cristalino Lodge, Alta Floresta, Mato Grosso, Brazil; B. Private Reserve Yacutinga, General Manuel Belgrano, Misiones, Argentina; C. Imperatriz, Maranhão, Brazil; D. Paraopeba National Forest, Paraopeba, Minas Gerais, Brazil; E. Brasília Country Club, Brasília, Distrito Federal, Brazil; F. Divinópolis, Minas Gerais, Brazil. Orthoimages were taken from Google Earth software.
FIGURE 3 in Fifty years without a name: a new species of Splendeuptychia Forster (Lepidoptera: Nymphalidae: Satyrinae)
FIGURE 3. Males of Splendeuptychia tupinamba sp. nov. showing variation in underside wing pattern. A. Divinópolis, Minas Gerais; B. Paraopeba, Minas Gerais; C. Alto Paraíso, Paraná; D. Alta Floresta, Mato Grosso.
FIGURE 2 in Fifty years without a name: a new species of Splendeuptychia Forster (Lepidoptera: Nymphalidae: Satyrinae)
FIGURE 2. Male genitalia of Splendeuptychia tupinamba sp. nov. A. Lateral view; B. Dorsal view; C. Ventral view. Codes: ae, aedeagus; sa, saccus; te, tegumen; un, uncus; va, valva.
FIGURE 5 in Fifty years without a name: a new species of Splendeuptychia Forster (Lepidoptera: Nymphalidae: Satyrinae)
FIGURE 5. Map showing all known localities for Splendeuptychia tupinamba sp. nov. in Brazil, Paraguay and Argentina.
FIGURE 4 in Fifty years without a name: a new species of Splendeuptychia Forster (Lepidoptera: Nymphalidae: Satyrinae)
FIGURE 4. Maximum likelihood tree showing the phylogenetic relationship of Splendeuptychia tupinamba sp. nov. with other species of Euptychiina. Numbers near the nodes are bootstrap values (<75 are not shown).
FIGURE 1. Poa aitchisonii. A in Lectotypification of names of three species of Poa (Poaceae) and their morphological affinities
FIGURE 1. Poa aitchisonii. A—dry specimen; B—spikelet; C—floret; D—glume 1; E—glume 2; F—lemma; G—palea; H—lodicules; I—anther; J—gynoecium (Worked out from coll. no. 49437 housed at CAL).
FIGURE 2. Poa wardiana. A in Lectotypification of names of three species of Poa (Poaceae) and their morphological affinities
FIGURE 2. Poa wardiana. A—dry specimen; B—spikelet; C—ligule; D—glume 1; E—glume 2; F—lemma; G—palea; H—gynoecium; I—anther (Worked out from coll. no. 64858 housed at CAL).
FIGURE 1. A‒C in Claiming a Boissierian species of Asperula (Rubiaceae), but under a new name: Galium pierredmondii
FIGURE 1. A‒C, Galium boissierianum (GDA 67803). D‒F, Galium pierredmondii (GDA 67816). G‒I, Galium moralesianum (GDA 62769). A, D, G: habit; B, E, H: inflorescence detail; C, F, I: flowers detail.
FIGURE 1 in Novelties in Persicaria (Polygonaceae): description of a narrowly endemic new species from southern Brazil, and typification of the name Polygonum minus
FIGURE 1. Field photographs of Persicaria humboldtiana. A. Habit. B. Flower and ochreolae in lateral view. C. Flower in frontal view. D. Ochrea and stem. E. Leaf blade, abaxial surface. F. Leaf blades, adaxial surface. G. Inflorescence. Photographs by L.A. Funez.
FIGURE 3 in Novelties in Persicaria (Polygonaceae): description of a narrowly endemic new species from southern Brazil, and typification of the name Polygonum minus
FIGURE 3. Epitype of Polygonum minus (E.C. Wallace s.n., BM barcode BM001072687). Copyright: Natural History Museum, London.
FIGURE 2 in Adelonychia and Adelonychia nigrostriata are the valid names for the mygalmorph spider genus and species Diplothele and Diplothele walshi (Araneae, Barychelidae)
FIGURE 2. Wrapper of Pickard-Cambridge (1891), in part (made available by the BHL: https://www.biodiversitylibrary. org/page/28811444)
FIGURE 1 in Adelonychia and Adelonychia nigrostriata are the valid names for the mygalmorph spider genus and species Diplothele and Diplothele walshi (Araneae, Barychelidae)
FIGURE 1. Wrapper of Walsh (1890), in part (made available by the BHL: https://www.biodiversitylibrary.org/ page/42643703)
FIGURE. Phylogenetic analysis of Chrysosporium spp. based on ITS sequences. Statistical support values (≥50 %) are shown at nodes, and presented as ML bootstrap support/Bayesian posterior probabilities. Names in black bold are the strains isolated in this study, the coloured names are the new species. in Morphological and phylogenetic characterisations reveal nine new species of Chrysosporium (Onygenaceae, Onygenales) in China
FIGURE. Phylogenetic analysis of Chrysosporium spp. based on ITS sequences. Statistical support values (≥50 %) are shown at nodes, and presented as ML bootstrap support/Bayesian posterior probabilities. Names in black bold are the strains isolated in this study, the coloured names are the new species.
FIGURES 15–17. Aurisetiphora maggiesnowae new species. 15 in Two new genera of phorid flies, Macgrathphora and Aurisetiphora, from Costa Rica (Diptera: Phoridae), with recommendations for naming new genera in the family
FIGURES 15–17. Aurisetiphora maggiesnowae new species. 15. Head and thorax, dorsal. 16. Frons, anterior. 17. Male genitalia, posterior.
FIGURES 5–10. Wing male. 5–6. Macgrathphora caribbea new species. 5. Male. 6. Female. 7–8. Macgrathphora longifurca new species. 7. Male. 8. Female. 9. Macgrathphora pacifica new species, male. 10 in Two new genera of phorid flies, Macgrathphora and Aurisetiphora, from Costa Rica (Diptera: Phoridae), with recommendations for naming new genera in the family
FIGURES 5–10. Wing male. 5–6. Macgrathphora caribbea new species. 5. Male. 6. Female. 7–8. Macgrathphora longifurca new species. 7. Male. 8. Female. 9. Macgrathphora pacifica new species, male. 10. Aurisetiphora maggiesnowae new species, male.
FIGURES 11–14. Male genitalia, left lateral. 11. Macgrathphora caribbea new species. 12. Macgrathphora longifurca new species. 13. Macgrathphora pacifica new species. 14 in Two new genera of phorid flies, Macgrathphora and Aurisetiphora, from Costa Rica (Diptera: Phoridae), with recommendations for naming new genera in the family
FIGURES 11–14. Male genitalia, left lateral. 11. Macgrathphora caribbea new species. 12. Macgrathphora longifurca new species. 13. Macgrathphora pacifica new species. 14. Aurisetiphora maggiesnowae new species.
FIGURE 2. Spiradiclis elliptica. A in Validation of the name Spiradiclis elliptica (Rubiaceae), a new species endemic to southwestern China
FIGURE 2. Spiradiclis elliptica. A: Habitat, B: Plant and habit, C: Habit, D: Stipule, E: Inflorescence, F: Infructescence, G: Long-styled flowers and bracts (lateral view), H: Longitudinally dissected long-styled flower. Scale bars: C=2 cm, D=1 cm, E=5 mm, F=2 mm, G & H=3 mm. Photos by Lei Wu and Yu-Min Shui; Designed by Lei Wu.
FIGURE 1. Spiradiclis elliptica. A in Validation of the name Spiradiclis elliptica (Rubiaceae), a new species endemic to southwestern China
FIGURE 1. Spiradiclis elliptica. A: Habit, B: Stipule, C: Inflorescence, D: Longitudinally dissected long-styled flower, E: Longitudinally dissected short-styled flower. Drawn from the holotype by Ming-min Chen.
The upper canines of the male Sulawesi Babirusa grow upwards through the snout and continue to grow in a backward-curving spiral. They are too brittle and shallow rooted to be used in fighting and theirfunction, if any, is unknown. Until recently, all babirusas were classified as a single species. The genus has now been split into at least three species, based on features of their skulls and teeth and the amount of hair on their bodies. The Sulawest Babirusa has nearly naked skin. The name Babyrousa celebensis specifically refers to animals from north Sulawesi and the taxonomic identity of babirusas onthe rest of the island remains undecided. Unlike other pig species, babirusas do not have noses adapted for rooting. Babyrousa celebensis Lore Lindu National Park, Sulawesi. Photo: Berndt Fischer/ photolibrary.com in Suidae
The upper canines of the male Sulawesi Babirusa grow upwards through the snout and continue to grow in a backward-curving spiral. They are too brittle and shallow rooted to be used in fighting and theirfunction, if any, is unknown. Until recently, all babirusas were classified as a single species. The genus has now been split into at least three species, based on features of their skulls and teeth and the amount of hair on their bodies. The Sulawest Babirusa has nearly naked skin. The name Babyrousa celebensis specifically refers to animals from north Sulawesi and the taxonomic identity of babirusas onthe rest of the island remains undecided. Unlike other pig species, babirusas do not have noses adapted for rooting. Babyrousa celebensis Lore Lindu National Park, Sulawesi. Photo: Berndt Fischer/ photolibrary.com
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.