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861 results for “Zygoptera”
FIGURE 5 in Perilestes jueni (Zygoptera: Perilestidae), new species from Amazonas State Northern Brazil
FIGURE 5. Female holotype of Perilestes attenuatus Selys, 1886, from Santarém, Pará State, Brazil. Photo by Jérôme Constant (IRSNB).
FIGURE 3 in Perilestes jueni (Zygoptera: Perilestidae), new species from Amazonas State Northern Brazil
FIGURE 3. Type location of Perilestes jueni sp. nov. in São Gabriel da Cachoeira, Amazonas State, Brazil.
FIGURE 2 in Perilestes jueni (Zygoptera: Perilestidae), new species from Amazonas State Northern Brazil
FIGURE 2. (a) Perilestes jueni sp. nov. male holotype from Amazonas State, Brazil: dorsal view of left cercus; (b) Perilestes attetnuatus Selys, 1886, from Rondônia State, Brazil: dorsal view of cerci.
FIGURE 1 in Perilestes jueni (Zygoptera: Perilestidae), new species from Amazonas State Northern Brazil
FIGURE 1. Perilestes jueni sp. nov. male holotype from Amazonas State, Brazil: left view of habitus.
Fig. 3. Phylogenetic reconstruction for 356 in Redefining the damselfly families: a comprehensive molecular phylogeny of Zygoptera (Odonata)
Fig. 3. Phylogenetic reconstruction for 356 specimens from the combined maximum likelihood analysis of 28S and 16S. Bootstrap values are shown only if below 100. Species names and classification as proposed are shown. (a) Lestoidea and Platystictoidea; (b, c) various groups; (d) Platycnemididae; (e) Coenagrionidae.
Fig. 2. Phylogenetic reconstruction for 295 in Redefining the damselfly families: a comprehensive molecular phylogeny of Zygoptera (Odonata)
Fig. 2. Phylogenetic reconstruction for 295 specimens from the combined Bayesian analysis of 28S, 16S and COI. Posterior probabilities are shown (as percentages) only if below 100%. Species names and classification as proposed are shown. (a) Lestoidea and Platystictoidea; (b, c) various groups; (d) Platycnemididae; (e) Coenagrionidae.
Fig. 1 in Redefining the damselfly families: a comprehensive molecular phylogeny of Zygoptera (Odonata)
Fig. 1. Summary of Zygoptera phylogeny, based on Figs 2, 3 and the Discussion section. Only reasonably supported dichotomies are shown. The classification follows Appendix 1 (see for other genera placed near Dimeragrion, Priscagrion and Rhipidolestes) and the fate of some traditional taxa is indicated. For each recognized damselfly lineage, the known numbers of genera and species (in brackets) are shown, as is their occurrence in the Afrotropical (AT), Australasian (AU), Nearctic (NA), Neotropical (NT), Oriental (OL), Pacific (PC) and Palaearctic (PA) regions.
FIGURE 24. FUM-N 17242 in The damselfly genus Furagrion Petrulevičius et al. (Odonata, Zygoptera) from the early Eocene Fur Formation of Denmark and the dysagrionoid grade
FIGURE 24. FUM-N 17242: A, photograph, B, drawing. A fore- or hind wing. Both to scale, 5 mm. Diagonal bands in the lower left and upper right are plant material.
FIGURE 22. MGUH 34113, a in The damselfly genus Furagrion Petrulevičius et al. (Odonata, Zygoptera) from the early Eocene Fur Formation of Denmark and the dysagrionoid grade
FIGURE 22. MGUH 34113, a forewing: A, photograph of the part; B, photograph of the counterpart; C, drawing from both A and B. Note infuscation very light on the part as preserved, darker on the counterpart (see text). All to scale, 5 mm.
FIGURE 19. 14M-3801 in The damselfly genus Furagrion Petrulevičius et al. (Odonata, Zygoptera) from the early Eocene Fur Formation of Denmark and the dysagrionoid grade
FIGURE 19. 14M-3801: A; drawing of forewing; B, drawing of the hind wing; C, photograph, complete. All to scale, 5 mm.
FIGURE 20. A in The damselfly genus Furagrion Petrulevičius et al. (Odonata, Zygoptera) from the early Eocene Fur Formation of Denmark and the dysagrionoid grade
FIGURE 20. A, "Furagrion morsi" MOA 769 redrawn from part and counterpart photographs (Zessin 2011 Figs. 6 and 7); B–D, F. morsi (red) superimposed on F. jutlandicus wings: B, MHM 1742; C, D, FUM-N 11616. All to scale, 5 mm.
FIGURE 16. FUM-N 11696 in The damselfly genus Furagrion Petrulevičius et al. (Odonata, Zygoptera) from the early Eocene Fur Formation of Denmark and the dysagrionoid grade
FIGURE 16. FUM-N 11696: A, drawing of bottom wing in 17C; B, drawing to top wing in 17C; C, photograph. All to scale, 5 mm.
FIGURE 15. 14M-2765 in The damselfly genus Furagrion Petrulevičius et al. (Odonata, Zygoptera) from the early Eocene Fur Formation of Denmark and the dysagrionoid grade
FIGURE 15. 14M-2765: A, photograph; B, drawing as preserved; C, the fore- or hind wing graphically unfolded. All to scale, 5 mm.
FIGURE 23. A, Furagrion ansorgei MOA 770 redrawn from a in The damselfly genus Furagrion Petrulevičius et al. (Odonata, Zygoptera) from the early Eocene Fur Formation of Denmark and the dysagrionoid grade
FIGURE 23. A, Furagrion ansorgei MOA 770 redrawn from a higher resolution copy of Zessin's (2011) figure 3 photograph provided by J. Ansorge; shape compared with that of the proposed neotype (blue) B, forewing; C, hind wing. A to scale, 5 mm; B, C wings to no scales, the sizes of proposed neotype wings are adjusted to match arculus to apex and anterior wing margin of MOA 770 to compare shape.
FIGURE 12 in The damselfly genus Furagrion Petrulevičius et al. (Odonata, Zygoptera) from the early Eocene Fur Formation of Denmark and the dysagrionoid grade
FIGURE 12. Wings of MM-4785A: A, top wing in Fig. 9 (red), a forewing; B, wing below (blue), a hind wing. Both to scale, 5 mm.
FIGURE 8 in The damselfly genus Furagrion Petrulevičius et al. (Odonata, Zygoptera) from the early Eocene Fur Formation of Denmark and the dysagrionoid grade
FIGURE 8. Wings of MM-10750, colour-coded forewings (FW) and hind wings (HW) to match colours in Fig. 7. All to scale, 5 mm.
FIGURE 10 in The damselfly genus Furagrion Petrulevičius et al. (Odonata, Zygoptera) from the early Eocene Fur Formation of Denmark and the dysagrionoid grade
FIGURE 10. Principle component analysis of Furagrion wings. F. jutlandicus forewings in red, hindwings in blue, those unknown as fore- or hind wings in green, and the F. ansorgei wing is in purple. A, based on ratios only; B, based on both measured distances and ratios. See Table 4 for input data.
FIGURE 2. FUM-N 13856 in The damselfly genus Furagrion Petrulevičius et al. (Odonata, Zygoptera) from the early Eocene Fur Formation of Denmark and the dysagrionoid grade
FIGURE 2. FUM-N 13856, with which Petrulevičius et al. (2008) defined Furagrion (as ERK-KL-T1): A, photograph; B, drawing. Both to scale, 5 mm. A forewing. Ax1, Ax2 = antenodal cross veins 1 and 2; arc = arculus; b = brace vein; CuA = anterior branch of the cubitus; IR1, IR2 = intercalar vein 1 and 2; MA, MP = the anterior and posterior branches of the media; nod = nodus; pt = pterostigma; Q = quadrangle; RA = radius anterior; RP1, RP2, RP3-4 = branches of the radius posterior; sn = subnodus; * = origin of RP2.
FIGURE 1. MGUH 1819 in The damselfly genus Furagrion Petrulevičius et al. (Odonata, Zygoptera) from the early Eocene Fur Formation of Denmark and the dysagrionoid grade
FIGURE 1. MGUH 1819, Henriksen's type specimen of Phenacolestes jutlandica: A, photograph; B, drawing; C–E, labelled wings. A, B to scale, C–E to scale, both scales 5 mm.
FIGURE 9 in The damselfly genus Furagrion Petrulevičius et al. (Odonata, Zygoptera) from the early Eocene Fur Formation of Denmark and the dysagrionoid grade
FIGURE 9. Miopodagrion optimum (Cockerell), Priabonian of Florissant Formation, Florissant, Colorado, United States of America. A, full fossil; B, closeup of basal portion of the wings showing difficulty in confidently discerning, e.g., character states 5–7 of the dysagrionoid grade. Scale bars are 5 mm. Photo Talia Karim (University of Colorado, Boulder).
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
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.