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Figure 3 in Redescription of adults, nymphs and taxonomic notes on the Southern Brazilian mayfly Ulmeritus saopaulensis (Traver, 1946) (Ephemeroptera: Leptophlebiidae)
Figure 3. Ulmeritus saopaulensis (Traver, 1946): Mouth parts of nymph. (A) labrum in dorsal view; (B) distal emargination of labrum in detail; (C) row of setae on the dorsal surface in detail; (D) hypopharynx in dorsal view (E) apex of superlingua in detail; (F) left maxilla dorsal view; (G) pectinate setae of maxilla; (H) distal part of labrum with dentisetae; (I) labium in dorsal view; (J) apex of glossas and paraglossas of labium; (K) apex of labium showing the labial palp. Abbreviations: ds = dentisetae. Photos A–K by VAS.
Figure 2 in Redescription of adults, nymphs and taxonomic notes on the Southern Brazilian mayfly Ulmeritus saopaulensis (Traver, 1946) (Ephemeroptera: Leptophlebiidae)
Figure 2. Imago male of Ulmeritus saopaulensis (Traver, 1946): (A–B) head and thorax in dorsal (A) and lateral (B) views; (C) fore wing; (D) right hind wing; I left hind wing; (F–H) legs in lateral view, (F) fore-, (G) mid-, and (H) hind leg; (I) genitalia in dorsal view; (J) penes in dorsal view. Photos A–E, I–J by FFS; F–H by VAS.
Figure 1 in Haemagogus spegazzinii Brèthes, 1912 (Diptera: Culicidae) in Brazilian semiarid: resistance in eggs and scale color variation in adults
Figure 1 - Location of the collection area of Haemagogus spp. eggs in the semiarid region of northeastern Brazil. a) Map of Brazil, with Rio Grande do Norte state highlighted in red. b) Map of Rio Grande do Norte, highlighting the municipality of Currais Novos. c) Map of Currais Novos, highlighting the collection area. d) Collection area (Cânion dos Apertados) in the semiarid of Rio Grande do Norte, Brazil; Green points: positive ovitraps; Red points: negative ovitraps.
Figure. Mean pre-adult development time (in days) values for all strains. Vertical bars denote 0.95 confidence intervals. in Effects of artificial migration of susceptible individuals on resistance and fitness of a fenitrothion-resistant strain of Musca domestica (L.) Diptera
Figure. Mean pre-adult development time (in days) values for all strains. Vertical bars denote 0.95 confidence intervals.
Fig. 3 in Morphological and molecular characterization of adults and larvae of Crassicauda spp. (Nematoda: Spirurida) from Mediterranean fin whales Balaenoptera physalus (Linnaeus, 1758)
Fig. 3. Features of the larvae isolated from fin whales. a, b, anterior end of larvae included in intestinal nodules, showing cephalic papillae and excretory pore (a, lateral view, bar = 35 μm; b, dorsoventral view, bar = 50 μm). c, tail of the same larvae, showing the cloacal pore (bar = 60 μm). d, anterior end of larvae from the mesenteric arteries, showing bulging of the triangular-shaped head (lateral view, bar = 30 μm); e, tail of the same larvae with intestinal tube evident, ending in the cloacal opening (bar = 60 μm). f, anterior end of larvae found free within intestinal lumen, showing triangular shape of the anterior region, with cephalic papillae, buccal cavity and excretory pore (lateral view, bar = 25 μm); g, h, posterior end of the same larvae, showing either presence of a cloaca with multiple papillae (g, bar = 50 μm) or a genital pore (h, bar = 80 μm); i, anterior end of adult C. boopis, displaying triangular shaped lips and labial and cephalic papillae (sublateral view, bar = 50 μm).
Fig. 5 in Morphological and molecular characterization of adults and larvae of Crassicauda spp. (Nematoda: Spirurida) from Mediterranean fin whales Balaenoptera physalus (Linnaeus, 1758)
Fig. 5. Maximum likelihood tree (Log-likelihood: −1359.826) obtained from cox1 alignment. The tree was arbitrarily rooted on midpoint. Bootstrap support values (≥50%) are provided near the corresponding node. The scale bar represents 0.2 substitutions/site. Newly determined sequences are in bold.
Fig. 4 in Morphological and molecular characterization of adults and larvae of Crassicauda spp. (Nematoda: Spirurida) from Mediterranean fin whales Balaenoptera physalus (Linnaeus, 1758)
Fig. 4. Maximum likelihood tree (Log-likelihood: −1044.368) obtained from ITS2 alignment. The tree was rooted on midpoint. Bootstrap support values (≥50%) are provided near the corresponding node. The scale bar represents 0.02 substitutions/site. Newly determined sequences are in bold.
Figures (1-3). Hemiglaea mirabilis Hreblay & Ronkay, 1998, 1. Adult, 2. Male genitalia, 3. Aedeagus. 4-6. Agrochola magarorum Benedek, Babics & Saldaitis, 2013, 4. Adult, 5. Male genitalia, 6. Aedeagus. in First record of two species of Xylenini (Lepidoptera: Noctuidae: Noctuinae) from India
Figures (1-3). Hemiglaea mirabilis Hreblay & Ronkay, 1998, 1. Adult, 2. Male genitalia, 3. Aedeagus. 4-6. Agrochola magarorum Benedek, Babics & Saldaitis, 2013, 4. Adult, 5. Male genitalia, 6. Aedeagus.
Text-fig. 5. Distribution of age classes of deningeri bears from Middle Pleistocene deposits from Za Hájovnou Cave (Moravia, the Czech Republic) based on wear stage of M2 dext. and m2 dext. (I–III: juveniles, IV–VII: prime adults, VIII–IX: senile adults; according to Stiner 1998). Juveniles distinctly outnumber adults. in Basic Population And Taphonomic Analysis Of Bear Assemblages From Za Hájovnou Cave (Moravia, The Czech Republic): A Fossil Record From 1987-2007
Text-fig. 5. Distribution of age classes of deningeri bears from Middle Pleistocene deposits from Za Hájovnou Cave (Moravia, the Czech Republic) based on wear stage of M2 dext. and m2 dext. (I–III: juveniles, IV–VII: prime adults, VIII–IX: senile adults; according to Stiner 1998). Juveniles distinctly outnumber adults.
Figure 1. A. Laneella fuscosquamata adult female, habitus. B in New geographical records of Mesembrinellidae (Diptera: Oestroidea) in Mexico
Figure 1. A. Laneella fuscosquamata adult female, habitus. B. Mesembrinella socors adult female, habitus. Scale bars: 5 mm. / A. Laneella fuscosquamata hembra adulta, hábito. B. Mesembrinella socors hembra adulta, hábito. Escala: 5 mm.
Fig. 2 in Insecticidal activity of three plant extracts against adult Ips typograpgus L. under laboratory conditions
Fig. 2. Concentration–mortality response curves from the probit analyses testing insecticide effects of plant extracts against adults ofIps typographus in laboratory bioassays.
Fig. 1 in Insecticidal activity of three plant extracts against adult Ips typograpgus L. under laboratory conditions
Fig. 1. Mean cumulative mortality* of Ips typographus adults four days after treatments with different concentrations of three plant extracts in laboratory bioassays. The error bars represent the standard errors of means. (*corrected for a natural mortality in the control)
Fig. 3 in Insecticidal activity of three plant extracts against adult Ips typograpgus L. under laboratory conditions
Fig. 3. Kaplan-Meier estimates of the survival curves for Ips typographus adults treated with the plant extracts (2.5%) in laboratory bioassays.
Figure 3 in First record of adult Nematomorpha Gordius sp. from western Anatolia (Turkey)
Figure 3. Microscopic images of the female Gordius sp. from Topçam Dam Lake: a) posterior end of the female (the cloacal aperture); b) anterior end of the specimen (the calotte and pigment ring); c) cuticle; d) anterior segmentation.
Figure. The adult male of Podarcis lilfordi from Sa Dragonera, Mallorca (Balearic Islands), presenting a tail-like appendage in the left hind limb. in A case of limb regeneration in a wild adult Podarcis lilfordi lizard
Figure. The adult male of Podarcis lilfordi from Sa Dragonera, Mallorca (Balearic Islands), presenting a tail-like appendage in the left hind limb.
Figure 1 in Using of fluctuating asymmetry in adult Pelophylax ridibundus (Amphibia: Anura: Ranidae) meristic traits as a method for assessing developmental stability of population and environmental quality of their habitat: industrial area in southern Bulgaria
Figure 1. An indicative map of the sites in southern Bulgaria where P. ridibundus individuals were captured in 2019.
Figure 2 in Using of fluctuating asymmetry in adult Pelophylax ridibundus (Amphibia: Anura: Ranidae) meristic traits as a method for assessing developmental stability of population and environmental quality of their habitat: industrial area in southern Bulgaria
Figure 2. Photos of some asymmetric P. ridibundus individuals from site 1: the Chaya River in southern Bulgaria. Legend: a–d: asymmetric morphological traits on the back of the body and hind limbs of frogs, e–f: asymmetric morphological traits on the fingers of frogs. Trait 1 – number of stripes on the dorsal side of the thigh (femur); trait 2 – number of spots on the dorsal side of the thigh; trait 3 – number of stripes on the dorsal side of the shank (crus); trait 4 – number of spots on the dorsal side of the shank; trait 5 – number of stripes on the foot (pes); trait 6 – number of spots on the foot; trait 7 – number of stripes and spots on the back (dorsum); trait 8 – number of white spots on the ventral side of the second finger of the hind leg; trait 9 – number of white spots on the ventral side of the third finger of the hind leg; trait 10 – number of white spots on the ventral side of the fourth finger of the hind leg.
Figure 2. The adult female with a in Different shades of snake: Peculiar coloration in an urban population of the Grass Snake, Natrix natrix (Linnaeus, 1758
Figure 2. The adult female with a peculiar blue coloration. From the top to bottom: blue coloration present at the margin of the last row of dorsal scales and ventral scales. The white underside of the throat is clearly visible; Dorsal view of the individual; The ventral color switches from white to black towards the tail and the blue color intensifies.
Figures 1–8. Euxoa spp. adults. 1. E in Two new species of Euxoa Hübner, [1821] from Central Asia (Lepidoptera: Noctuidae, Noctuinae)
Figures 1–8. Euxoa spp. adults. 1. E. scotopamira sp. n., HT, m, male, Tajikistan, Peter I., Darai Nasarak, 5. VIII. 1972, leg. Tshetkin, GYP 5928 (PGM); 2. E. scotopamira sp. n., PT, m, Tajikistan, Peter I. Mts., Ganishou, 2070 m, 28. VIII. 1974, leg. Tshetkin, (PGM); 3. E. scotopamira sp. n., PT, m, Tajikistan, Peter I. Mts., Darai Nasarak, 16. VIII. 1972, leg. Tshetkin, (PGM); 4. E. scotopamira sp. n., PT, f, Tajikistan, Peter I, near Ganishou, 2070 m, 22. VIII. 1974, leg. Tshetkin, GYP 4714 (PGM); 5. E. enixa (Püngeler, 1906), HT, m, Asia Centr., Issyk Kul, MB. 23 (MfN); 6. E. enixa (Püngeler, 1906), ST, f, Turkestan Oriental, Prov., Semirechgensee, Fort Naryne, G. S. Akulin, 1907, VZ 9747 (Slg. Dr. A. Corti, NHMB); 7. E. enixa (Püngeler, 1906), m, CT, Fergana, Togus Torau, Rückbeil, 1901, VZ 9546 (MfN); 8. E. anthracina Varga & Gyulai 2001, HT, m, Tajikistan, Karategin range, Gorge Sangikar, 1700 m, 28. VIII. 1969, GYP 1007 (PGM).
Figures 11–18. Euxoa spp. adults. 11. E in Two new species of Euxoa Hübner, [1821] from Central Asia (Lepidoptera: Noctuidae, Noctuinae)
Figures 11–18. Euxoa spp. adults. 11. E. porphyrofusca, sp. n., HT, f, Tajikistan, Wantsh Mts., 3400 m, Gorno Badakhstan, W Pamir, Rushan distr., 1–10. VIII. 2002, leg. V. Gurko, GYP 3002 (PGM); 12. E. porphyrofusca, sp. n., PT, m, Tajikistan, Wantsh Mts., 3400 m, Gorno Badakhstan, W Pamir, Rushan distr., 1–10. VIII. 2002, leg. V. Gurko (PGM) 13. E. porphyrofusca, sp. n., PT, m, Tajikistan, Wantsh Mts., 3400 m, Gorno Badakhstan, W Pamir, Rushan distr., 1–10. VIII. 2002, leg. V. Gurko, GYP 2100, (PGM); 14. E. porphyrofusca, sp. n., PT, f, Tajikistan, Wantsh Mts., 3400 m, Gorno Badakhstan, W Pamir, Rushan distr., 1–10. VIII. 2002, leg. V. Gurko (PGM); 15. E. porphyrofusca, sp. n., PT, f, Kyrgyzstan, 5 km S Enilchek, 5–10. VIII. 1994, leg. Saldaitis, GYP 5765, (PGM); 16. E. cuprina Staudinger, 1899, Lectotype, f, Asia Centr., Korla, MfN 841 (MfN); 17. E. cuprina Staudinger, 1899, CT, m, Korla (MfN); 18. E.cuprina Staudinger, 1899, f, CT, Korla (MfN).
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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.