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FIGURE 3 in Two new dragonflies (Odonata: Anisoptera) from the Miocene of Carinthia (Austria)
FIGURE 3. Photograph of the hind wing fragment of Gomphaeschna carinthiae sp. nov., holotype UMJG&P 211472, plate A. The wingtip is covered with sediment.
FIGURE 5 in Two new dragonflies (Odonata: Anisoptera) from the Miocene of Carinthia (Austria)
FIGURE 5. Drawing of the hind wing fragment of Gomphaeschna carinthiae sp. nov., holotype UMJG&P 211472. The drawing involves features of both plates.
FIGURE 2 in Two new dragonflies (Odonata: Anisoptera) from the Miocene of Carinthia (Austria)
FIGURE 2. Drawing of the hind wing fragment of Ictinogomphus hassleri sp. nov., holotype LMK-Pal-2016-5538, with terminology of wing venation.
FIGURE 7. Elektrogomphaeschna annekeae, holotype MNHN.F.A58663. A in First record of hawker dragonflies from Eocene Baltic amber (Odonata: Anisoptera: Gomphaeschnidae)
FIGURE 7. Elektrogomphaeschna annekeae, holotype MNHN.F.A58663. A, photograph of antesubnodal area; B, photograph of nodus (scale bars represent 3 mm).
FIGURE 2 in First record of hawker dragonflies from Eocene Baltic amber (Odonata: Anisoptera: Gomphaeschnidae)
FIGURE 2. Elektrogomphaeschna peterthieli, holotype SMNS BB-2390. A, photograph of forewing (scale bar represents 2 mm); B, photograph of hind wing (scale bar represents 2 mm); C, photograph of forewing triangle (scale bar represents 1 mm).
FIGURE 6. Elektrogomphaeschna annekeae, holotype MNHN.F.A58663. A in First record of hawker dragonflies from Eocene Baltic amber (Odonata: Anisoptera: Gomphaeschnidae)
FIGURE 6. Elektrogomphaeschna annekeae, holotype MNHN.F.A58663. A, photograph of wing base; B, photograph of bases of RP3/4 and IR2 (scale bars represent 3 mm).
FIGURE 8. Elektrogomphaeschna annekeae, holotype MNHN.F.A58663. A in First record of hawker dragonflies from Eocene Baltic amber (Odonata: Anisoptera: Gomphaeschnidae)
FIGURE 8. Elektrogomphaeschna annekeae, holotype MNHN.F.A58663. A, photograph of mid part of wing; B, photograph of wing apex (scale bars represent 3 mm).
FIGURE 5. Elektrogomphaeschna annekeae, holotype MNHN.F.A58663. A in First record of hawker dragonflies from Eocene Baltic amber (Odonata: Anisoptera: Gomphaeschnidae)
FIGURE 5. Elektrogomphaeschna annekeae, holotype MNHN.F.A58663. A, drawing of wing apex; B, drawing of wing base (scale bars represent 3 mm).
FIGURE 4 in First record of hawker dragonflies from Eocene Baltic amber (Odonata: Anisoptera: Gomphaeschnidae)
FIGURE 4. Elektrogomphaeschna peterthieli, paratype SMNS BB-2825. A, Photograph of forewing and hind wing fragment); B, photograph of fore- and hind wing triangles (scale bars represent 2 mm).
FIGURE 3 in First record of hawker dragonflies from Eocene Baltic amber (Odonata: Anisoptera: Gomphaeschnidae)
FIGURE 3. Elektrogomphaeschna peterthieli, paratype SMNS BB-2825. Drawing of forewing and hind wing fragment (scale bar represents 2 mm).
FIGURE 1 in First record of hawker dragonflies from Eocene Baltic amber (Odonata: Anisoptera: Gomphaeschnidae)
FIGURE 1. Elektrogomphaeschna peterthieli, holotype SMNS BB-2390. A, drawing of forewing; B, drawing of hind wing (scale bars represent 2 mm).
FIGURE 3 in Two new dragonfly species (Odonata: Anisoptera: Aeshnidae) from north-eastern India
FIGURE 3. Planaeschna poumai sp. nov.; (a) dorsal habitus of holotype male (NCBS-AV557), (b) dorsal habitus of allotype female (NCBS-AV568), (c) lateral habitus of allotype female (NCBS-AV568), (d) lateral habitus of holotype male (NCBS- AV557), (e) face of holotype male (NCBS-AV557, image credit: J. Veino & L. Veino), and (f) lateral habitus of holotype male (NCBS-AV557, image credit: J. Veino & L. Veino).
FIGURE 2 in Two new dragonfly species (Odonata: Anisoptera: Aeshnidae) from north-eastern India
FIGURE 2. Comparison of heads of C. acanthifrons sp. nov.: a: dorsal, b: frontal, and C. acutifrons (Martin, 1909) [from Asahina 1981]: c: dorsal, d: frontal.
FIGURE 1 in Two new dragonfly species (Odonata: Anisoptera: Aeshnidae) from north-eastern India
FIGURE 1. Cephalaeschna acanthifrons sp. nov., holotype male (NCBS-AQ279); (a) dorsal habitus, (b) lateral habitus, (c) anal appendages: dorsal view, (d) face, and (e) anal appendages: lateral view.
FIGURE 4 in Two new dragonfly species (Odonata: Anisoptera: Aeshnidae) from north-eastern India
FIGURE 4. Anal appendages of Planaeschna poumai sp. nov.; (a) dorsal view of holotype male (NCBS-AV557), (b) left lateral view of holotype male, (c) left lateral view (ovipositor) of allotype female (NCBS-AV568), and (d) left lateral view of paratype male (NCBS-AV585).
F in Frenguelliidae, a new family of dragonflies from the earliest Eocene of Argentina (Insecta: Odonata): phylogenetic relationships within Odonata
F. 3. Interpretation of Frenguellia patagonica gen. nov., sp. n. holotype MLP 6431, detail of nodal structures (scale=0.5 mm). Arrows show the zigzagged portion of RA and the posterior displacement of ScP due to biostratinomic deformation.
F in Frenguelliidae, a new family of dragonflies from the earliest Eocene of Argentina (Insecta: Odonata): phylogenetic relationships within Odonata
F. 1. Photograph of Frenguellia patagonica gen. nov., sp. n. holotype MLP 6431, general habitus (scale=3 mm).
F in Frenguelliidae, a new family of dragonflies from the earliest Eocene of Argentina (Insecta: Odonata): phylogenetic relationships within Odonata
F. 2. Interpretation of Frenguellia patagonica gen. nov., sp. n. holotype MLP 6431, general habitus (scale=3 mm). Arrow shows the distal displacement of RA due to biostratinomic deformation.
Figure 5 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 5. The single most-parsimonious trees from the TNT analyses: A, matrix AC (artificial coding; tree length, L = 113; consistency index, CI = 79; retention index, RI = 77); B, matrix NMC, applying non-multistate coding and preferring the adult character state over the larval state in the case of character state conflict (L = 89; CI = 88; RI = 83); C, matrix MC, applying a multistate coding strategy in cases of conflict between larval and adult morphology (L = 57; CI = 91; RI = 85); D, matrix SC, coding larval and adult characters seperately within the same taxon (L = 159; CI = 88; RI = 82). Non-homoplasious character changes are indicat- ed with black squares; homoplasious characters are indicated with white squares. Trait numbers are indicated above squares, state changes below. The 'M' below the character state changes in (C) indicates a multistate character optimized as an autapomorphy. For trait references, see Table S1 and Table S6; for detailed trees, see Figure S7.
Figure 4 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 4. SEM micrographs and three-dimensional reconstructions of the maxillae, labium, and hypopharynx of Epiophlebia superstes. A, ventral view of the maxilla, scale bar: 1 mm. B, ventral view of the maxilla, with musculature shown. C, dorsal view of the maxilla. D, dorsal view of the maxilla, with musculature shown. E, labium in dorsal view. Scale bar: 1 mm. E1, detail of the apical area of the labium. Scale bar: 500 μm. E2, detail of E1. Scale bar: 5 μm. F, musculature of the labium and hypopharynx in dorsolateral view. G, musculature of the labium and hypopharynx in lateral view. Abbreviations: ca, cardo; dse, dentisetae; eh, end hook; hyp, hypopharnyx; inc, incisivi; lac, lacinia; lp, labial palpus; mh, moveable hook; ml, median lobe; mp, maxillar palpus; pm, postmentum; prm, prementum; set, setae; st, stipes; trod, T-shaped cuticular rod. For muscle references see text and Table S2.
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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)
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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.