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Figure 2 in Coding characters from different life stages for phylogenetic reconstruction: a case study on dragonfly adults and larvae, including a description of the larval head anatomy of Epiophlebia superstes (Odonata: Epiophlebiidae)
Figure 2. Overview of the outer head anatomy of Epiophlebia superstes: A, ventral view with the right part displayed as a three-dimensional reconstruction in order to show the peculiar muscle arrangement of the labial prehensile mask; B, lateral view; C, frontal view; D, dorsal view. Abbreviations: acl, anteclypeus; agp, anterior genal process; antb, antennal base; cl, cleavage line; cr0lb1 + 2, cranial origin of labral muscles 0lb1 and 0lb2; cr0lb5, cranial origin of labral muscle 0lb5; cr0te3, cranial origin of tentorial muscle 0te3; e, eye; fl, flagellum; fr, frons; lbr, labrum; loc, lateral occellus; lp, labial palpus; moc, middle occellus; oc, occiput; ocr, occipital ridge; pcl, postclypeus; pe, pedicellus; prm, prementum; sc, scapus. For muscle references, see text and Table S2. Scale bar: 1 mm.
Figure 1 in Coding characters from different life stages for phylogenetic reconstruction: a case study on dragonfly adults and larvae, including a description of the larval head anatomy of Epiophlebia superstes (Odonata: Epiophlebiidae)
Figure 1. Methodological workflow. In three matrices (AC, NMC, and MC) the full data set of 81 characters was used. The matrices differ in coding strategies. In matrix AC the larvae were coded as independent terminal taxa. In matrix NMC the larvae were omitted, thereby reducing the number of taxa from nine to six. If larval character states differed from adult ones, the character state of the adult was coded (non-multistate approach). In matrix MC we equally incorporated the larval character states into the adult character states, but in cases where larva possess a different character state than the adult these characters were coded as multistate characters. In matrix SC (separate coding) we coded larval and adult characters as separate characters within the same species, which resulted in a higher number of characters. If characters generated by the SC approach showed no variation they were omitted from the analysis, which is why not exactly twice as many characters as in matrices AC and MC are used.
Figure 3 in Coding characters from different life stages for phylogenetic reconstruction: a case study on dragonfly adults and larvae, including a description of the larval head anatomy of Epiophlebia superstes (Odonata: Epiophlebiidae)
Figure 3. SEM micrographs of the outer and three-dimensional reconstructions of the inner anatomy of Epiophlebia superstes. Ventral (A) and dorsolateral (B) view of the mandible (A1, detail of the ventral region of the mandible; B1, detail of the region at the molar base). C, the labral, antennal, tentorial, and pharyngeal musculature in dorsal view. D, the mandibular muscles in dorsofrontal view (D1, same as D in dorsolateral view). E, epipharynx in posterior view (E1, detail of e). F, the labral, antennal, tentorial, and pharyngeal musculature in lateral view. Brain, 0an2, 0lb1, 0bu2, and 0hy2 omitted for clarity. Abbreviations: ata, anterior tentorial arms; br, brain; ct, corpotentorium; dta, dorsal tentorial arms; inc, incisivi; lbr, labrum; le, lateral extension of labrum; mo, mola; pe, pedicellus; phx, pharynx; sc, scapus. For muscle references see text and Table S2. Scale bar: 100 μm.
FIGURE 3 in New stem-anisopteran dragonflies in the Jurassic of China (Odonata: Epiproctophora)
FIGURE 3. Oxfordgomphus trescellulae Huang & Nel, gen. et sp. nov., holotype NIGP202929, photographs. a, part; b, counterpart. Scale bars = 2 mm.
FIGURE 2 in New stem-anisopteran dragonflies in the Jurassic of China (Odonata: Epiproctophora)
FIGURE 2. Turanopteron sinensis Huang & Nel, sp. nov., holotype NIGP202928, forewing. a, photograph; b, drawing. Scale bars = 2 mm.
FIGURE 2 in A new hemeroscopid dragonfly (Odonata, Anisoptera) from the Lower Cretaceous of the Jiuquan Basin, northwestern China
FIGURE 2. Parahemeroscopus jiuquanensis gen. et sp. nov., holotype (NIGP203629), line drawing based on two parts. Scale bar = 5 mm.
FIGURE 1 in A new hemeroscopid dragonfly (Odonata, Anisoptera) from the Lower Cretaceous of the Jiuquan Basin, northwestern China
FIGURE 1. Parahemeroscopus jiuquanensis gen. et sp. nov., holotype (NIGP203629), photographs of male hindwing, part (A) and counterpart (B). Scale bar = 5 mm.
Figs 7–11 in Additions to dragonfly (Odonata) fauna of the Republic of Adygea (North-Western Caucasus)
Figs 7–11. Selysiothemis nigra: 7 — imago ♂; 8 — pterostigma; 9 — anal appendages ♂, lateral view; 10–11 — exuvia (arrows indicate dorsal spikes) (collected in the Maykop). Рис. 7–11. Selysiothemis nigra: 7 — имаго ♂; 8 — птеростигма; 9 — конец брюШка ♂ (анальные придатки), сбоку; 10–11 — ЭкЗувий (стрелками укаЗаны дорсальные Шипы) (ЭкЗемплЯр собран в Майкопе).
Figs 1–6 in Additions to dragonfly (Odonata) fauna of the Republic of Adygea (North-Western Caucasus)
Figs 1–6. Pantala flavescens: 1 — imago ♂; 2 — head coloration, lateral view; 3 — thorax, lateral view; 4 — anal appendages, dorsal view; 5 — anal appendages, lateral view; 6 — anal appendages, ventral view (collected in the settlement of Podgorny). Рис. 1–6. Pantala flavescens: 1 — имаго ♂; 2 — окраска головы, сбоку; 3 — грудь, сбоку; 4 — анальные придатки, сверху; 5 — анальные придатки, сбоку; 6 — анальные придатки, сниЗу (ЭкЗемплЯр собран в пос. Подгорный).
FIGURE 1. Kishenehna prima USNM 621304, holotype hind wing. A in Kishenehna prima, a new genus and species of darner dragonfly (Odonata, Aeshnidae, Gomphaeschninae) from the early middle Eocene Kishenehn Formation of Montana, USA
FIGURE 1. Kishenehna prima USNM 621304, holotype hind wing. A, composite photograph; B, drawing. CuA, cubitus anterior; CuP, cubitus posterior; Mspl, medial supplement, the intercalary vein between MA and MP; Rspl, radial supplement, the intercalary vein between IR2 and RP3-4; b, brace vein; o, oblique crossvein; n, nodus; a, arculus; MA, media anterior; MP, media posterior; RP1, posterior branch of the radius 1; RP2, posterior branch of the radius 2; RP3-4, posterior branch of the radius 3+4; IRP1, first radial intercalary vein; IRP2, second radial intercalary vein; RA, anterior branch of the radius; pt, pterostigma; MAb, vein portion forming the distal side of the triangle; hp, humeral plate; ap, axillary plate. Coloured cells: purple, radial planate between IRP2 and Rspl; light blue, medial planate between MA and Mspl; darker blue, triangle; green, subtriangle; red, anal loop; yellow, supratriangle; brown, cubito-anal space. Scale bar is 10 mm.
Figure 3 in Phylogeny, migration and geographic range size evolution of Anax dragonflies (Anisoptera: Aeshnidae)
Figure 3. Maximum likelihood ancestral state reconstruction of migratory behaviour and geographical range of Anax on a Bayesian tree from five gene regions. The fraction of the circle that is shaded indicates the likelihood that the ancestor was migratory.
Figure 2 in Phylogeny, migration and geographic range size evolution of Anax dragonflies (Anisoptera: Aeshnidae)
Figure 2. Bayesian time-calibrated tree of five gene regions with placement of fossil taxa. Clades with dragonflies have at least one migratory taxon. Monophyletic species are condensed to show relationships. Posterior Probabilities> 0.90 not shown. *Outgroups include species from Aeshna, Oplonaeschna, Anaciaeschna and Gynacantha. See the Supporting Information (Table S1) for more details.
FIGURE 13 in Burmagomphus chaukulensis, a new species of dragonfly (Odonata: Anisoptera Gomphidae) from the Western Ghats, Maharashtra, India
FIGURE 13. Caudal appendages of Indian Burmagomphus spp. in dorsal and lateral views. (a–b) B. chaukulensis sp. nov.; (c–d) B. divaricatus; (e–f) B. hasimaricus; (g–h) B. laidlawi; (i–j) B. pyramidalis [scale=0.5 mm]
FIGURE 11 in Burmagomphus chaukulensis, a new species of dragonfly (Odonata: Anisoptera Gomphidae) from the Western Ghats, Maharashtra, India
FIGURE 11. Thorax of Indian Burmagomphus spp. in dorsal view: (a) B. chaukulensis sp. nov.; (b) B. cauverivus; (c) B. divaricatus; (d) B. hasimaricus; (e) B. laidlawi; (f) B. pyramidalis (not to scale).
FIGURE 3 in Burmagomphus chaukulensis, a new species of dragonfly (Odonata: Anisoptera Gomphidae) from the Western Ghats, Maharashtra, India
FIGURE 3. Burmagomphus chaukulensis Holotype male [IBC-BN809]. Hamuli: (a) lateral; and (b) ventral view. Vesica spermalis: (c) right lateral view; (d) lateral close-up; and e) dorsal view (scale=0.5 mm).
FIGURE 9 in Burmagomphus chaukulensis, a new species of dragonfly (Odonata: Anisoptera Gomphidae) from the Western Ghats, Maharashtra, India
FIGURE 9. Burmagomphus chaukulensis in situ. (a) male, 4.vi.2021, Chaukul, Maharashtra, India; (b–d) IBC-BN811; (e) female, 4.vi.2021, Chaukul, Maharashtra, India; (f) copula, 4.vi.2021, Chaukul, Maharashtra, India.
FIGURE 8 in Burmagomphus chaukulensis, a new species of dragonfly (Odonata: Anisoptera Gomphidae) from the Western Ghats, Maharashtra, India
FIGURE 8. Burmagomphus chaukulensis Paratype female [IBC-BN813]: (a) dorsal habitus; (b) head; (c) lateral habitus; (d) caudal appendages dorsal; (e) caudal appendages ventral (b, d: scale=0.5 mm).
FIGURE 7 in Burmagomphus chaukulensis, a new species of dragonfly (Odonata: Anisoptera Gomphidae) from the Western Ghats, Maharashtra, India
FIGURE 7. Burmagomphus chaukulensis Paratype female [IBC-BN812] caudal appendages: (a) dorsal; (b) lateral; (c) ventral view (scale= 0.5 mm).
FIGURE 4 in Burmagomphus chaukulensis, a new species of dragonfly (Odonata: Anisoptera Gomphidae) from the Western Ghats, Maharashtra, India
FIGURE 4. Burmagomphus chaukulensis Paratype males. Lateral habitus: (a) IBC-BN810; (b) IBC-BN811; (c) IBC-BN814. Lateral view of thorax: (d) IBC-BN814; (e) IBC-BN810.
FIGURE 6 in Burmagomphus chaukulensis, a new species of dragonfly (Odonata: Anisoptera Gomphidae) from the Western Ghats, Maharashtra, India
FIGURE 6. Burmagomphus chaukulensis Paratype female [IBC-BN812]: (a) head; (b) left lateral view of thorax; (c) dorsal habitus; (d) dorsal view of thorax; (e) lateral habitus.
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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.