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17,475 results for “taxonomic revision”
FIGURES 10–25 in Revision of Coelana Kramer, 1964 (Hemiptera, Cicadellidae, Neocoelidiinae) and taxonomic notes on the genus
FIGURES 10–25. Coelana modesta (Baker, 1898), 10–13, 19–25, female lectotype; 14–18, male: 10, head, pronotum and scutellum, dorsal view; 11, head, frontal view; 12, head, pronotum and scutellum, lateral view; 13, forewing; 14, pygofer and anal tube, lateral view; 15, subgenital plates, ventral view; 16, style, lateral view; 17, styles and connective, dorsal view; 18, aedeagus, lateral view; 19, pygofer, lateral view; 20, sternum VII, ventral view; 21, valvula I, lateral view; 22, valvula II, lateral view; 23, apex of left valvula II, detail of the apical third; 24, apex of right valvula II; 25, valvula III, lateral view.
FIGURES 1–9. Coelana drakei Kramer, 1964 in Revision of Coelana Kramer, 1964 (Hemiptera, Cicadellidae, Neocoelidiinae) and taxonomic notes on the genus
FIGURES 1–9. Coelana drakei Kramer, 1964, male holotype: 1, head, pronotum and scutellum, dorsal view; 2, head, frontal view; 3, head, pronotum and scutellum, lateral view; 4, forewing; 5, pygofer and anal tube, lateral view; 6, subgenital plates, ventral view; 7, style, lateral view; 8, styles and connective, dorsal view; 9, aedeagus, lateral view.
FIGURE 1–6 in Taxonomic revision of the Neotropical ensign wasp genus Decevania (Hymenoptera: Evaniidae)
FIGURE 1–6: measurements and indices, D. unidentata sp. nov. 1. head in frontal view, DAO (diameter of anterior ocellus), HE (height of eye in frontal view), WTO (distance between torulus in frontal view); 2. head in lateral view, WE (width of eye in laterofrontal view), WG (width of gena, meansure of less distance, in lateral view); 3. LF (length of flagellomere I), LP (length of pedicel), LS (length of scape); 4. right forewing, LFW (length of forewing); 5. stigmal and 1R1 vein, LST (length of stigmal vein + 1R1 vein), WST (width of stigmal vein); 6. head, mesosoma and petiole in lateral view, LM (length of mesosoma in profile), LPE (length of petiole) LPR (length of pronotum, measure of distance between anterior and posterior edge, in profile). Illustration only for comparison, not same scale as habitus.
FIGURE 14 in A taxonomic revision of the catshark genus Haploblepharus Garman 1913 (Chondrichthyes: Carcharhiniformes: Scyliorhinidae)
FIGURE 14. Distribution of Haploblepharus kistnasamyi as identified by the current study. Red dots are locality records for the species, the light blue line represents the 200 m isobath and the dark blue line represents the 1000 m isobath.
FIGURE 13 in A taxonomic revision of the catshark genus Haploblepharus Garman 1913 (Chondrichthyes: Carcharhiniformes: Scyliorhinidae)
FIGURE 13. Photographs of example specimens tentatively assigned as juveniles of Haploblepharus kistnasamyi: A) MJS 970714; and B) live specimen in Port Elizabeth Aquarium (Photo: Malcolm Smale).
FIGURE 12 in A taxonomic revision of the catshark genus Haploblepharus Garman 1913 (Chondrichthyes: Carcharhiniformes: Scyliorhinidae)
FIGURE 12. Photographs of the female paratype of Haploblepharus kistnasamyi, RUSI 6077, 481 mm TL mature female (from Human & Compagno, 2006).
FIGURE 11 in A taxonomic revision of the catshark genus Haploblepharus Garman 1913 (Chondrichthyes: Carcharhiniformes: Scyliorhinidae)
FIGURE 11. Photographs of the male paratype of Haploblepharus kistnasamyi, RUSI 6075, 504 mm TL mature male (from Human & Compagno, 2006).
FIGURE 9 in A taxonomic revision of the catshark genus Haploblepharus Garman 1913 (Chondrichthyes: Carcharhiniformes: Scyliorhinidae)
FIGURE 9. Distribution of Haploblepharus fuscus as identified by the current study. Red dots are locality records for the species, the light blue line represents the 200 m isobath and the dark blue line represents the 1000 m isobath.
FIGURE 10 in A taxonomic revision of the catshark genus Haploblepharus Garman 1913 (Chondrichthyes: Carcharhiniformes: Scyliorhinidae)
FIGURE 10. Photographs of the holotype of Haploblepharus kistnasamyi, RUSI 39835, 415 mm TL adolescent female.
FIGURE 8 in A taxonomic revision of the catshark genus Haploblepharus Garman 1913 (Chondrichthyes: Carcharhiniformes: Scyliorhinidae)
FIGURE 8. Photographs of Haploblepharus fuscus specimens: A) RUSI 25925; B) SAM 32614, to show the presence of spots or saddles, respectively, in this species.
FIGURE 6 in A taxonomic revision of the catshark genus Haploblepharus Garman 1913 (Chondrichthyes: Carcharhiniformes: Scyliorhinidae)
FIGURE 6. Distribution of Haploblepharus pictus as identified by the current study. Red dots are locality records for the species, the light blue line represents the 200 m isobath and the dark blue line represents the 1000 m isobath.
FIGURE 5E–F in A taxonomic revision of the catshark genus Haploblepharus Garman 1913 (Chondrichthyes: Carcharhiniformes: Scyliorhinidae)
FIGURE 5E–F. Photographs of Haploblepharus pictus specimens to demonstrate the colour variability of the species: E) MJS 970128; F) BAH 20010405.7, live.
FIGURE 5A–B in A taxonomic revision of the catshark genus Haploblepharus Garman 1913 (Chondrichthyes: Carcharhiniformes: Scyliorhinidae)
FIGURE 5A–B. Photographs of Haploblepharus pictus specimens to demonstrate the colour variability of the species: BAH 20010405.6 live A) dorsal aspect, B) ventral aspect.
FIGURE 4 in A taxonomic revision of the catshark genus Haploblepharus Garman 1913 (Chondrichthyes: Carcharhiniformes: Scyliorhinidae)
FIGURE 4. Distribution of Haploblepharus edwardsii as identified by the current study. Red dots are locality records for the species, the light blue line represents the 200 m isobath and the dark blue line represents the 1000 m isobath.
FIGURE 5C–D in A taxonomic revision of the catshark genus Haploblepharus Garman 1913 (Chondrichthyes: Carcharhiniformes: Scyliorhinidae)
FIGURE 5C–D. Photographs of Haploblepharus pictus specimens to demonstrate the colour variability of the species.: C) RUSI 48499 with egg case; D) BAH 20010405.9, live.
FIGURE 2 in A taxonomic revision of the catshark genus Haploblepharus Garman 1913 (Chondrichthyes: Carcharhiniformes: Scyliorhinidae)
FIGURE 2. Total length at different stages of maturity for the species of Haploblepharus, for both sexes.
FIGURE 1 in A taxonomic revision of the catshark genus Haploblepharus Garman 1913 (Chondrichthyes: Carcharhiniformes: Scyliorhinidae)
FIGURE 1. Schematic diagram of the ventral view of the head of Haploblepharus to illustrate the morphometric measurements pertaining to the fused anterior nasal flap, ANFL, ANFM, and ANFW (see text for details, from Human & Compagno, 2006).
FIGURE 15 in A taxonomic revision of the Neotropical myrmicine ant genus Lachnomyrmex Wheeler (Hymenoptera: Formicidae)
FIGURE 15. Holotype worker of Lachnomyrmex regularis from Guanacaste, Costa Rica: A, head in full face view; B, lateral view; C, dorsal view. Image by Michele Esposito, specimen INBIOCRI001613693.
FIGURE 20 in A taxonomic revision of the Neotropical myrmicine ant genus Lachnomyrmex Wheeler (Hymenoptera: Formicidae)
FIGURE 20. Distribution map for the Lachnomyrmex species (L. amazonicus, L. longinodus, and L. victori).
FIGURE 16 in A taxonomic revision of the Neotropical myrmicine ant genus Lachnomyrmex Wheeler (Hymenoptera: Formicidae)
FIGURE 16. Worker of Lachnomyrmex scrobiculatus from Heredia, Costa Rica: A, head in full face view; B, lateral view; C, dorsal view. Image by April Nobile, specimen CASENT0103243.
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)
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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.