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Figure 6 in Data-rich description of a new genus of praying mantid egg parasitoids, Lasallegrion gen. n. (Hymenoptera: Torymidae: Podagrionini), with a re-examination of Podagrion species of Australia and New Caledonia
Figure 6. Diagnostic characters of Lasallegrion gen. n.; L. koebelei (a – e), L. washingtoni (f). (a), habitus, lateral; (b), antenna, lateral; (c), head and mesosoma, lateral (arrows indicate pronotal collar carina and metapleuron); (d), propodeum, dorsal; (e), head, posterior; (f), petiolus and first sternite, ventral.
Figure 3 in New species of Orasema (Hymenoptera: Eucharitidae) from Central and South America
Figure 3. (a–c) Orasema lasallei sp. nov. ♀ holotype: (a) head; (b) mouthparts (c) head and mesosoma. (d) O. lasallei ♂, head and mesosoma. (e–f) Orasema janzeni sp. nov. ♀ holotype: (e) head and mesosoma; (f) lower face. (g) O. janzeni ♂: habitus.
Figure 1 in First record of the genus Tanaostigma (Hymenopteraı Chalcidoideaı Tanaostigmatidae) from the Afrotropical region with description of three new species
Figure 1. Tanaostigma lasallei Holotype female. (a) Habitus, lateral view (b) Habitus, dorsal view (c) Head and mesosoma, lateral view (d) Head and mesosoma, dorsal view (e) Head, anterior view (f) Wings (inset: data labels).
Figure 2 in Data-rich description of a new genus of praying mantid egg parasitoids, Lasallegrion gen. n. (Hymenoptera: Torymidae: Podagrionini), with a re-examination of Podagrion species of Australia and New Caledonia
Figure 2. Map of collection sites. Red – Lasallegrion koebelei; green – L. virescens; blue – L. washingtoni (MyMaps by google).
Figures 2 in The species of Astymachus Howard (Hymenoptera: Encyrtidae)ı potentially important parasitoids of Aclerdidae (Hemiptera: Coccoidea) associated with grasses (Poaceae)ı with descriptions of three new species
Figures 2. Astymachus saccharum sp. nov.: (a) head (holotype); (b) antenna ♀ (holotype); (c) apex of fore wing venation (paratype); (d) fore wing (paratype). Astymachus felix Singh and Hayat: (e) apex of fore wing venation. Astymachus phainae Sugonjaev: (f) fore wing; (g) apex of fore wing venation. Astymachus lasallei sp. nov. (holotype) (h) antenna ♀; (i) head; (j) fore wing; (k) discal setae below marginal vein, enlarged (differential interference contrast); (l) apex of fore wing venation. Asymachus phragmitis Trjapitzin: (m) head; (n) antenna ♀. (Figures e-g courtesy of Mohammad Hayat).
Figures 3 in The species of Astymachus Howard (Hymenoptera: Encyrtidae)ı potentially important parasitoids of Aclerdidae (Hemiptera: Coccoidea) associated with grasses (Poaceae)ı with descriptions of three new species
Figures 3. Astymachus phragmitis Trjapitzin: (a) antenna ♂; (b) fore wing; (c) apex of fore wing venation. Astymachus japonicus Howard: (d) head; (e) antenna ♀; (f) antenna ♂; (g) apex of fore wing venation; (h) fore wing. Astymachus srilankae sp. nov. (holotype): (i) head; (j) antenna ♀; (k) antenna ♂; (l) fore wing; (m) apex of fore wing venation.
Figure 4 in A new species of the enigmatic Australian endemic family Trachypetidae (Hymenoptera: Ichneumonoidea): Cercobarcon lasallei sp.n.
Figure 4. Metanotum and propodeum: (a) Cercobarcon lasallei sp. nov., ♀ holotype; (b) Cercobarcon niger Austin, Wharton and Dangerfield, 1993, ♀ holotype; (c) Cercobarcon rieki Tobias, 1979, ♀ holotype; (d) Cercobarcon lasallei sp. nov., ♀ holotype, lateral view of posterior metasoma.
Figure 3 in A new species of the enigmatic Australian endemic family Trachypetidae (Hymenoptera: Ichneumonoidea): Cercobarcon lasallei sp.n.
Figure 3. Cercobarcon lasallei sp. nov., ♀ holotype: (a) fore and hind wing; (b) fore wing submarginal cell showing incomplete vein 1-SR+M with small terminal swelling; Cercobarcon rieki Tobias, 1979: (c) ♀ paratype from Western Australia, showing vein 1-SR+M without a terminal swelling; (d) ♀ holotype, showing submarginal cell with incomplete spurious areolet; (e) Cercobarcon niger Austin, Wharton and Dangerfield, 1993: (e) ♀ holotype showing incomplete vein 1-SR+M with small terminal swelling.
Figure 1 in A new species of the enigmatic Australian endemic family Trachypetidae (Hymenoptera: Ichneumonoidea): Cercobarcon lasallei sp.n.
Figure 1. (a) Cercobarcon rieki Tobias, 1979, anterior head showing shape of the clypeus; (b) Cercobarcon grossi Austin, Wharton and Dangerfield, 1993, lower face showing the sinuate shape of the clypeus; (c) Cercobarcon bilobatus Austin, Wharton and Dangerfield, 1993, lower face showing the bilobed shape of the clypeus.
Figure 2 in A new species of the enigmatic Australian endemic family Trachypetidae (Hymenoptera: Ichneumonoidea): Cercobarcon lasallei sp.n.
Figure 2. (a) Cercobarcon lasallei sp. nov., ♀ holotype: (a) anterior head; (b) dorsal head; (c) dorsal habitus; (d) lateral habitus.
Figure 3 in Lasalleistichus a new genus of Tetrastichinae (Hymenoptera: Eulophidae) from the Neotropical regionı including four new species
Figure 3. (a) Palmistichus ixtlilxochitli, ♀ nontype habitus lateral. (b) Agmostigma frontale, ♀ holotype habitus lateral. (c) Lasalleistichus albiclava, ♂ paratype head lateral. (d) L. longicaulis, ♀ holotype habitus dorsal. Scales: (a–b, d) 1 mm; (c) 0.5 mm.
FIG. 3 in A new fossil species of Trentepohlia (Diptera, Limoniidae) from the Dominican Miocene
FIG. 3. — Wing venation (A, B), head and antenna (C) of Trentepohlia (P.) miocenica Mederos & Wang n. sp. holotype specimen. Scale bars: A, 1 mm; B, not to scale; C, 0.5 mm.
FIG. 1 in A new fossil species of Trentepohlia (Diptera, Limoniidae) from the Dominican Miocene
FIG. 1. — Geographical location of the studied area (A), as well as the main amber and lignite deposits from the West Indies, and general geological map (B) of the eastern region of the Dominican Republic and location of the amber deposits associated to the Yanigua Formation (modified from Iturralde-Vinent 2001; Díaz-Neira et al. 2017).
FIG. 2. — A in A new fossil species of Trentepohlia (Diptera, Limoniidae) from the Dominican Miocene
FIG. 2. — A, general configuration of the syninclusion of the resinite piece with Trentepohlia (P.) miocenica Mederos & Wang n. sp. holotype specimen, Cecidomyiidae (Ce) and Ceratopogonidae (Cr) specimens; B, habitus of the male specimen (holotype) of T. miocenica Mederos & Wang n. sp. Scale bars: A, 5 mm; B, 1 mm.
Figs 41–50 in New fossil genus and new extant species of diatoms (Stephanodiscaceae, Bacillariophyceae) from Pleistocene sediments in the Neotropics (Guatemala, Central America): adaptation to a changing environment?
Figs 41–50. Discostella gabinii Paillès & Sylvestre sp. nov., Lake Petén-Itzá (Guatemala); LM valve views. 41–42. Modern specimens of D. gabinii sp. nov. from Cenote Juarez. 43–44. Modern specimens of D. gabinii sp. nov. from Lake Amatitlan. 45–50. Type material of fossil lacustrine diatom D. gabinii sp. nov. 45. Holotype (MNHN, slide PC060873). 48–50. A shadow line is visible in large specimens. Scale bar = 10 µm.
Figs 25–32 in New fossil genus and new extant species of diatoms (Stephanodiscaceae, Bacillariophyceae) from Pleistocene sediments in the Neotropics (Guatemala, Central America): adaptation to a changing environment?
Figs 25–32. Type material of fossil lacustrine diatom Cyclocostis rolfii Paillès gen. et sp. nov.; SEM external valve views. 25. Valve view of concentrically undulated marginal area and tangentially undulated central area; punctuated striae become in the central area rows of larger areolae arranged in a stellate pattern. 26. Valve surface with scattered papillae; the external opening of the single valve face fultoportula is located on the raised part (white arrowhead). 27. Marginal area showing the external openings of marginal fultoportulae, collared but with no projections (white arrowheads). 28. Side view of marginal area showing striation, papillae, external openings of marginal fultoportulae (mfp – two white arrows), and the cingulum consisting of an open valvocopula and several copulae (white arrow). 29. Detail of the central area with large areolae; external areolae are bigger and occluded by volae in places where ribs are fusing. 30. Broken valve view showing the different striation between the margins and the center, the steep transversal undulation and the valve thickness. 31. Marginal area with the external openings of marginal fultoportulae (white arrowheads), papillae, and the cingulum. 32. Broken valve view showing the simple structure of anastomosing ribs covered by a finely perforated silica layer. Scale bars: 25 = 5 µm; 26, 28–32 =2 µm; 27 = 1 µm (27).
Fig. 59 in New fossil genus and new extant species of diatoms (Stephanodiscaceae, Bacillariophyceae) from Pleistocene sediments in the Neotropics (Guatemala, Central America): adaptation to a changing environment?
Fig. 59. Diagram showing the succession of Stephanodiscaceae Glezer & Makarova in Pleistocene sediments (0–84 ka) from Lake Petén-Itzá (Guatemala).
Figs 1–24 in New fossil genus and new extant species of diatoms (Stephanodiscaceae, Bacillariophyceae) from Pleistocene sediments in the Neotropics (Guatemala, Central America): adaptation to a changing environment?
Figs 1–24. Type material of fossil lacustrine diatom Cyclocostis rolfii Paillès gen. et sp. nov., Lake PeténItzá (Guatemala); LM girdle view (1) and valve views (2–24). 4. Holotype (MNHN, slide PC0608731). 7–8. Valve surface strongly tangentially undulated, forming an S shape. Scale bar = 10 µm.
Fig. 3 in First records and a new genus of comb-tailed spiders (Araneae: Hahniidae) from Thailand with comments on the six-eyed species of this family
Fig. 3. Hexamatia seekhaow gen. et sp. nov., holotype, ♂ (RMNH.ARA.18411). a–e. Palp. a. Ventral view, cleared. b. Retrolateral view. c. Dorso-retrolateral view, cleared. d. Prolateral view. e. Dorsoretrolateral view. f. Male spinnerets, ventral view. g. Chelicera. Posterior view. Scale bars: a–f = 0.15 mm; g = 0.5 mm.
Fig. 2 in First records and a new genus of comb-tailed spiders (Araneae: Hahniidae) from Thailand with comments on the six-eyed species of this family
Fig. 2. Hexamatia seekhaow gen. et sp. nov., holotype, ♂ (RMNH.ARA.18411). a–c. Habitus. a. Ventral view. b. Lateral view. c. Dorsal view. d. Prosoma, anterior view. e–f. Palp. e. Retrolateral view. f. Ventral view. Scale bars: a–c = 0. 5 mm; d–f = 0.15 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.