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FIGURES 38–40 in Redescription of the numbat tick Ixodes (Sternalixodes) myrmecobii Roberts, 1962 (Acari: Ixodidae) with descriptions of the male and nymph, and new host records
FIGURES 38–40. Scanning electron micrographs of the trochanters of Sternalixodes males. 38 Ixodes holocyclus, 39 Ixodes myrmecobii, 40 Ixodes cornuatus.
FIGURES 36–37. Ixodes myrmecobii nymph scanning electron micrographs. 36 Dorsal view, 37 in Redescription of the numbat tick Ixodes (Sternalixodes) myrmecobii Roberts, 1962 (Acari: Ixodidae) with descriptions of the male and nymph, and new host records
FIGURES 36–37. Ixodes myrmecobii nymph scanning electron micrographs. 36 Dorsal view, 37 Ventral view.
FIGURES 41–42. 41 in Redescription of the numbat tick Ixodes (Sternalixodes) myrmecobii Roberts, 1962 (Acari: Ixodidae) with descriptions of the male and nymph, and new host records
FIGURES 41–42. 41 Phylogenetic relationships of Ixodes myrmecobii isolates obtained in this study (T4, T12, T15 and T16) with published reference material available at the CO1 locus. Evolutionary history was inferred using the neighbour-joining method supported with bootstrap test of 1000 replicates (values> 50% shown). Rhipicephalus sanguineus is included as the out group, 42 Phylogenetic relationships of Ixodes myrmecobii isolates obtained in this study (T4, T12, T15 and T16) with published reference material available at the ITS2 locus. Evolutionary history was inferred using the neighbour-joining method supported with bootstrap test of 1000 replicates (values> 50% shown). Rhipicephalus sanguineus is included as the out group.
FIGURES 31–35. Ixodes myrmecobii Nymph. 31 Scutum, 32 Tarsus I, 33 Tarsus II, 34 Tarsus III, 35 Tarsus IV in Redescription of the numbat tick Ixodes (Sternalixodes) myrmecobii Roberts, 1962 (Acari: Ixodidae) with descriptions of the male and nymph, and new host records
FIGURES 31–35. Ixodes myrmecobii Nymph. 31 Scutum, 32 Tarsus I, 33 Tarsus II, 34 Tarsus III, 35 Tarsus IV.
FIGURES 1–4. Ixodes myrmecobii Female. 1 Dorsal view, 2 Ventral view, 3 Dorsal capitulum, 4 in Redescription of the numbat tick Ixodes (Sternalixodes) myrmecobii Roberts, 1962 (Acari: Ixodidae) with descriptions of the male and nymph, and new host records
FIGURES 1–4. Ixodes myrmecobii Female. 1 Dorsal view, 2 Ventral view, 3 Dorsal capitulum, 4 Ventral capitulum.
FIGURES 26–30. Ixodes myrmecobii Nymph. 26 Dorsal view, 27 Ventral view, 28 in Redescription of the numbat tick Ixodes (Sternalixodes) myrmecobii Roberts, 1962 (Acari: Ixodidae) with descriptions of the male and nymph, and new host records
FIGURES 26–30. Ixodes myrmecobii Nymph. 26 Dorsal view, 27 Ventral view, 28 Coxae and trochanters, 29 Dorsal capitulum, 30 Ventral capitulum.
FIGURES 5–11. Ixodes myrmecobii Female. 5 Scutum, 6 in Redescription of the numbat tick Ixodes (Sternalixodes) myrmecobii Roberts, 1962 (Acari: Ixodidae) with descriptions of the male and nymph, and new host records
FIGURES 5–11. Ixodes myrmecobii Female. 5 Scutum, 6 Coxae and trochanters, 7 Spiracular plate, 8 Tarsus I, 9 Tarsus II, 10 Tarsus III, 11 Tarsus IV.
FIGURES 24–25. Ixodes myrmecobii male scanning electron micrographs. 24 Dorsal view, 25 in Redescription of the numbat tick Ixodes (Sternalixodes) myrmecobii Roberts, 1962 (Acari: Ixodidae) with descriptions of the male and nymph, and new host records
FIGURES 24–25. Ixodes myrmecobii male scanning electron micrographs. 24 Dorsal view, 25 Ventral view.
FIGURE 7. Rhampsinitus vittatus Lawrence 1931, male. A in Notes on Phalangiidae (Arachnida: Opiliones) of southern Africa with description of new species and comments on within-species variation
FIGURE 7. Rhampsinitus vittatus Lawrence 1931, male. A: Body, dorsal view; B: anterior part of body, lateral view; C: penis, left lateral view; D: penis, dorsal view; E: glans, left lateral view.
FIGURE 6 in A new Neotibicen cicada subspecies (Hemiptera: Cicadidae) from the southeastern USA forms hybrid zones with a widespread relative despite a divergent male calling song
FIGURE 6. Field recordings of putative hybrids between subspecies of Neotibicen similaris; A–D; spectrograms showing a range of phenotypes exhibiting different combinations of the parental song characters from four different locations (see track ID at bottom right); E, zoomed waveform and spectrogram of the song in D, showing the long high-pitched echeme of N. similaris apalachicola n. subsp. followed by a set of short echemes matching those of N. similaris similaris. Sound energy below 1.8 kHz has been removed.
FIGURE 5 in A new Neotibicen cicada subspecies (Hemiptera: Cicadidae) from the southeastern USA forms hybrid zones with a widespread relative despite a divergent male calling song
FIGURE 5. Distribution records of Neotibicen similaris similaris (blue), N. similaris apalachicola n. subsp. (orange), and hybrid cicadas (X and + symbols). Symbols with central dots or a + symbol indicate that a specimen was collected or a voucher recording was made; other records were aurally noted; A, regional scale map of southeastern USA with labeled states outlined in black and with state counties outlined in grey; zoomed section in B is indicated by the dashed line; B, moderate scale map, zoomed section in C is indicated by the dashed line; C, core N. similaris apalachicola distribution surrounding Tallahassee, FL (grey star).
FIGURE 4 in A new Neotibicen cicada subspecies (Hemiptera: Cicadidae) from the southeastern USA forms hybrid zones with a widespread relative despite a divergent male calling song
FIGURE 4. Neotibicen similaris similaris, field recording of male calling song from Wakulla Co., Florida (recording 08.US.FL.FOR.T01.WAV). Each panel shows a waveform above a spectrogram; A, complete song phrase, with annotation identifying two parts in the main phrase that differ in rate of alternation between high- and low-pitched echemes; B, zoom centered about 0.48 s into the clip in A, at the transition from part I to part II; C, further zoom of part I; D, further zoom of part II; E, segment of song that precedes and follows the main phrase. Sound energy below 1.8 kHz has been removed.
FIGURE 2 in A new Neotibicen cicada subspecies (Hemiptera: Cicadidae) from the southeastern USA forms hybrid zones with a widespread relative despite a divergent male calling song
FIGURE 2. Pygofer preparations showing aedeagus (ae) beneath uncus (u): A, Neotibicen similaris apalachicola, n. subsp., specimen 08.US.FL.LMC.02; B, N. similaris similaris, specimen 08.US.FL.HSC.20. White scale bar = 1 mm.
FIGURE 3. Neotibicen similaris apalachicola, n in A new Neotibicen cicada subspecies (Hemiptera: Cicadidae) from the southeastern USA forms hybrid zones with a widespread relative despite a divergent male calling song
FIGURE 3. Neotibicen similaris apalachicola, n. subsp., field recording of male calling song from Wakulla Co., Florida (recording 08.US.FL.BXU.T08.WAV). Each panel shows a waveform above a spectrogram; A, complete song phrase; B, partial zoom of the central portion of the phrase; C, further zoom of one of the four oscillations in B; D, segment of song that precedes the main phrase. Sound energy below 1.8 kHz has been removed.
FIGURE 1. A–D in A new Neotibicen cicada subspecies (Hemiptera: Cicadidae) from the southeastern USA forms hybrid zones with a widespread relative despite a divergent male calling song
FIGURE 1. A–D, Neotibicen similaris apalachicola, n. subsp., dorsal view, ventral view, pygofer ventral view, pygofer lateral view (holotype specimen 08.US.FL.TRA.03). E–H, N. similaris similaris, dorsal view, ventral view, pygofer ventral view, pygofer lateral view (specimen 08.US.GA.HAH.01). Scale bars = 12.5 mm.
FIGURES 17–32 in African Spilogona Schnabl: morphology of the male terminalia and description of a new species (Diptera: Muscidae)
FIGURES 17–32. Male terminalia of African Spilogona. Spilogona pertinisetodes Emden, male: (17) sternite 5, dorsal view; (18) cercal plate and surstylus, dorsal view; (19) cercal plate and surstylus, lateral view; (20) aedeagal complex, lateral view. Spilogona quasifasciata Emden, paratype male: (21) sternite 5, dorsal view; (22) cercal plate and surstylus, dorsal view; (23) cercal plate and surstylus, lateral view; (24) aedeagal complex, lateral view. Spilogona semifasciata Emden, paratype male: (25) sternite 5, dorsal view; (26) cercal plate and surstylus, dorsal view; (27) cercal plate and surstylus, lateral view; (28) aedeagal complex, lateral view. Spilogona spinipes (Bigot), male: (29) sternite 5, dorsal view; (30) cercal plate and surstylus, dorsal view; (31) cercal plate and surstylus, lateral view; (32) aedeagal complex, lateral view.
FIGURES 1–16 in African Spilogona Schnabl: morphology of the male terminalia and description of a new species (Diptera: Muscidae)
FIGURES 1–16. Male terminalia of African Spilogona. Spilogona biguttata Emden, paratype male:(1) sternite 5, dorsal view; (2) cercal plate and surstylus, dorsal view; (3) cercal plate and surstylus, lateral view; (4) aedeagal complex, lateral view. Spilogona breviaristata sp. nov., paratype male: (5) sternite 5, dorsal view; (6) cercal plate and surstylus, dorsal view; (7) surstylus, lateral view; (8) aedeagal complex, lateral view. Spilogona fuscotriangulata Emden, male: (9) sternite 5, dorsal view; (10) cercal plate and surstylus, dorsal view; (11) cercal plate and surstylus, lateral view; (12) aedeagal complex, lateral view. Spilogona natalensis Zielke, male: (13) sternite 5, dorsal view; (14) cercal plate and surstylus, dorsal view; (15) cercal plate and surstylus, lateral view; (16) aedeagal complex, lateral view.
FIGURES 17–25. Eopompilus, males. 17, 19, 22. E in Review of the genus Eopompilus Gussakovskij, 1932 (Hymenoptera: Pompilidae) with the description of new species from China
FIGURES 17–25. Eopompilus, males. 17, 19, 22. E. internalis (Russia, Primorskij Terr.). 18, 23. E. luteus (Russia, Primorskij Terr.). 20, 24. E. minor (Russia, Primorskij Terr.). 21, 25. E. ungulivarius (China, Ningxia). 17. S6, ventral view. 18–21. Genitalia, ventral view. 22–25. Hypopygium, ventral view. Scale bar for 18–20, 22–24 = 0.5 mm, for 21, 25 = 0.2 mm. (18–20, 22–24 from: Loktionov & Lelej 2014).
FIGURES 91–97. Guyalna fumea comb. nov., male. 91 in Seven new species of the cicada genus Guyalna Boulard & Martinelli, 1996 (Hemiptera: Cicadidae: Fidicinini) with a re-description of the type species
FIGURES 91–97. Guyalna fumea comb. nov., male. 91. Head and thorax in dorsal view; 92. Basisternum 3 in ventral view; 93. Right operculum in ventral view; 94. Sternite VII in ventral view; 95. Pygofer in ventrolateral view; 96. Theca in lateral right view; 97. Theca in lateral left view. Scales bar 91: 2 mm; 92–95: 1 mm; 96, 97: 0.5 mm.
FIGURES 40–57. 40–48 in Two new species of Nullana from southern Brazil (Hemiptera: Cicadellidae: Gyponini) with key to males
FIGURES 40–57. 40–48, Ponana (Lataponana) cephalata DeLong, 1977, holotype male (OSUC, 0158466). 40, habitus, dorsal view. 41, habitus, lateral view. 42, head, frontal view. 43, labels. 44–48, genitalia, redrawn from DeLong (1977), pg. 113. 44, pygofer, lateral view. 45, subgenital plate, ventral view. 46, style, lateral view. 47, aedeagus, lateral view. 48, aedeagus, ventral view. 49–57, Nullana sinchona DeLong & Martinson, 1980, holotype male (OSUC, 0169828). 49, habitus, dorsal view. 50, habitus, lateral view. 51, head, frontal view. 52, labels. 53–57, genitalia, redrawn from DeLong & Martinson (1980), pg. 487. 53, pygofer, lateral view. 54, subgenital plate, ventral view. 55, style, lateral view. 56, aedeagus, lateral view. 57, aedeagus, ventral view. Scale bars= 1.0 mm.
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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.