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1,579 results for “Baltics”
FIGURES 1–2 in Electrolichas circumbalticus gen. et sp. nov. (Coleoptera: Byrrhoidea: Ptilodactylidae) from Baltic amber, the first anchytarsine toed-winged beetle described from Europe
FIGURES 1–2. Electrolichas circumbalticus gen. et sp. nov., holotype, habitus: 1) dorsal view; 2) ventro-lateral view.
FIGURES 1–3 in First fossil record of Ischaliidae Blair, 1920 (Coleoptera) from Eocene Baltic amber
FIGURES 1–3. Ischalia youngi sp. nov., holotype male, habitus. 1) dorsal view; 2) ventral view; 3) lateral view.
FIGURES 1–3 in New fossil genus of Silvanidae (Insecta: Coleoptera) from Baltic amber (Tertiary, Eocene)
FIGURES 1–3. Mistran ot gen. et sp. nov., holotype: 1—habitus, dorsal view; 2—habitus, ventral view; 3—habitus, lateral view.
FIGURE 9 in The first fossil Dufoureillini (Hemiptera: Heteroptera: Anthocoridae: Lyctocorinae) from the Eocene Baltic amber
FIGURE 9. Xyloesteles kerneggeriorum sp. nov.. Holotype, Nr. 290/2002 – 1, male; coll. Senkenberg Museum in Frankfurt/ Main, dorsal view.
FIGURES 1–2 in The first fossil Dufoureillini (Hemiptera: Heteroptera: Anthocoridae: Lyctocorinae) from the Eocene Baltic amber
FIGURES 1–2. Xyloesteles parvulus sp. nov. 1. Holotype, male; coll. GPIH, nr. 4540, ventral view. 2. Head and pronotum.
FIGURES 8–21 in A new species of anapid spider (Araneae: Araneoidea, Anapidae) in Eocene Baltic amber, imaged using phase contrast X-ray computed micro-tomography
FIGURES 8–21. CT reconstructions of Balticoroma wheateri new species (male holotype, GPIH). (8) frontal view showing chelicerae and labral spur; (9) view of right pedipalp showing embolus; (10–14) various views of right metatarsus 1, showing y-shaped clasping structure; (15) anterior view of specimen showing the section taken through the chelicerae to produce the raw data slice in Figure 16; (16) raw data slice demonstrating that the chelicerae and clypeal extentions are clearly separated; (20–21) various views of the right pedipalp. C, chelicera; ce, clypeal extension; co, dorsal cymbial outgrowth; cy, cymbium; e, embolus; eb, embolic base; ec, embolic coil;?fc, functional conductor sensu Wunderlich (2004); ls, labral spur; t, tegulum.
FIGURE 1 in A new species of anapid spider (Araneae: Araneoidea, Anapidae) in Eocene Baltic amber, imaged using phase contrast X-ray computed micro-tomography
FIGURE 1. Microphotograph of Balticoroma wheateri new species (male holotype, GPIH). Body length = 1.8 mm.
FIGURES 2–7 in A new species of anapid spider (Araneae: Araneoidea, Anapidae) in Eocene Baltic amber, imaged using phase contrast X-ray computed micro-tomography
FIGURES 2–7. CT reconstructions of Balticoroma wheateri new species (male holotype, GPIH). (2) right lateral view; (3) left lateral view; (4) dorsal view; (5) ventral view; (6) anterior view; (7) posterior view. Body length = 1.8 mm. Mt1, metatarsus 1; ta1, tarsus 1; ti1, tibia 1.
FIGURE 1 in Fossil Eucharitidae and Perilampidae (Hymenoptera: Chalcidoidea) from Baltic Amber
FIGURE 1. Combined morphological and molecular results. Single successive-weighted tree (length 2080) of a set of 48 unweighted parsimony trees (length 2076, r.i. 0.82). Thin branches collapse in the unweighted trees. Bootstrap values (1000 replicates) for combined data above branches and for compatible nodes in morphology-only data below branches. Apostrophes around Perilampidae and Psilocharitini refer to their potential paraphyly (see text).
FIGURES 27–32. 27 in Description of Leptoomus janzeni, n. gen. and n. sp. (Hymenoptera: Chalcidoidea) from Baltic amber, and discussion of its relationships and classification relative to Eupelmidae, Tanaostigmatidae and Encyrtidae
FIGURES 27–32. 27, Cynipencyrtus flavus, mesosoma dorsal [mesonotum unflexed]. 28, Aenasius sp., mesonotum dorsal [flexed]. 29 and 30, mesosoma dorsal [mesonotum flexed]: 29, Charitopus cuprifrons (Motschulsky); 30, Tanaoneura hirticoxa. 31 and 32, Neanastatus sp., mesosoma dorsal: 31, mesonotum unflexed; 32, mesonotum flexed.
FIGURES 39–44. 39 and 40 in Description of Leptoomus janzeni, n. gen. and n. sp. (Hymenoptera: Chalcidoidea) from Baltic amber, and discussion of its relationships and classification relative to Eupelmidae, Tanaostigmatidae and Encyrtidae
FIGURES 39–44. 39 and 40, Tanaostigmodes sp. [left leg removed]: 39, mesosoma ventral [prothorax removed]; 40, mesocoxal articulation ventral. 41 and 42, mesocoxal articulation [left leg removed]: 41, Ericydnus sp., ventrolateral; 42, Bothriothorax noveboracensis Howard, ventral. 43 and 44, mesocoxal articulation ventral: 43, Cynipencyrtus flavus; 44, Eopelma n. sp.
FIGURES 9–16. Leptoomus janzeni. 9 in Description of Leptoomus janzeni, n. gen. and n. sp. (Hymenoptera: Chalcidoidea) from Baltic amber, and discussion of its relationships and classification relative to Eupelmidae, Tanaostigmatidae and Encyrtidae
FIGURES 9–16. Leptoomus janzeni. 9, habitus lateral (holotype). 10 and 11, mesosoma lateral: 10, ♂ 406; 11, Ψ 401. 12, pronotum-prepectus lateral (Ψ 402). 13, mesosoma lateral (Ψ 404). 14 and 15, mesocoxal articulation: 14, ventrolateral (holotype); 15, posteroventral (Ψ 402). 16, fore wings (Ψ 401).
FIGURES 1–8. Leptoomus janzeni. 1 and 2 in Description of Leptoomus janzeni, n. gen. and n. sp. (Hymenoptera: Chalcidoidea) from Baltic amber, and discussion of its relationships and classification relative to Eupelmidae, Tanaostigmatidae and Encyrtidae
FIGURES 1–8. Leptoomus janzeni. 1 and 2, habitus dorsal: 1, Ψ holotype; 2, ♂ 405. 3, head, antenna and prepectus (holotype). 4, mesonotum dorsal (Ψ 401). 5, head, antenna and prepectus (Ψ 401). 6–10, mesonotum: 6, dorsolateral (Ψ 402); 7, dorsal (Ψ 404); 8, dorsal (♂ 405) [arrows point to inner angle of axillae on Figs 1, 4, 7, 8].
FIGURES 33–38. 33 and 34 in Description of Leptoomus janzeni, n. gen. and n. sp. (Hymenoptera: Chalcidoidea) from Baltic amber, and discussion of its relationships and classification relative to Eupelmidae, Tanaostigmatidae and Encyrtidae
FIGURES 33–38. 33 and 34, prepectus [prothorax removed]: 33, Neanastatus sp.; 34, Ericydnus sp. 35, Cynipencyrtus sp., mesosoma dorsolateral [mesonotum flexed]. 36, C. flavus, mesosoma dorsal [mesonotum unflexed]. 37 and 38, mesosoma lateral: 37, Eopelma n. sp.; 38, Tanaostigmodes sp.
FIGURES 17–26. 17–19 in Description of Leptoomus janzeni, n. gen. and n. sp. (Hymenoptera: Chalcidoidea) from Baltic amber, and discussion of its relationships and classification relative to Eupelmidae, Tanaostigmatidae and Encyrtidae
FIGURES 17–26. 17–19, Leptoomus janzeni: 17, apex of gaster (Ψ 402); 18, mesotarsus and apex of mesotibia (♂ 406); 19, mesotarsus [lines indicate separation between tarsomeres] and [insert] mesotibial apical pegs (holotype). 20, Cynipencyrtus flavus, apex of pedicel to fourth funicular segment. 21–26, apex of protibia: 21, L. janzeni (Ψ 401) and [insert: ♂ 406]; 22, Eopelma n. sp.; 23, Lambdobregma n. sp.; 24, C. flavus; 25, Tanaoneura hirticoxa LaSalle; 26, Aenasius sp.
FIGURE 10 in Revision of fossil Metretopodidae (Insecta: Ephemeroptera) in Baltic amber— Part 3: Description of two new species of Siphloplecton Clemens, 1915, with notes on the re-discovered lectotype of Siphloplecton macrops (Pictet-Baraban & Hagen, 1856)
FIGURE 10. Siphloplecton sartorii sp. nov., CCHH, BaB 1177/3, holotype, male imago (photographs): A—total dorsolateral view; B—head and thorax dorsolaterally; C—right forewing in dorsal view; D—left hind wing; E—cubital field of right forewing in dorsal view; F—cubital field of left forewing in dorsal view; G—left hind leg in lateral view; H—genitalia in ventral view.
FIGURE 11 in Revision of fossil Metretopodidae (Insecta: Ephemeroptera) in Baltic amber— Part 3: Description of two new species of Siphloplecton Clemens, 1915, with notes on the re-discovered lectotype of Siphloplecton macrops (Pictet-Baraban & Hagen, 1856)
FIGURE 11. Siphloplecton sartorii sp. nov., CCHH, BaB 1177/3, holotype, male imago (line drawings): A—total dorsolateral view; B—genitalia in ventral view.
FIGURE 8 in Revision of fossil Metretopodidae (Insecta: Ephemeroptera) in Baltic amber— Part 3: Description of two new species of Siphloplecton Clemens, 1915, with notes on the re-discovered lectotype of Siphloplecton macrops (Pictet-Baraban & Hagen, 1856)
FIGURE 8. Siphloplecton picteti Staniczek & Godunko, 2012, MNHK, MP/869, male imago (photographs): A—total lateral view, left side; B—body and wings in dorsolateral view, right side; C—wings and abdomen, dorsal view; D—right hind wing, ventral view; E—genitalia, lateroventral view; F—right hind leg, lateral view.
FIGURE 6 in Revision of fossil Metretopodidae (Insecta: Ephemeroptera) in Baltic amber— Part 3: Description of two new species of Siphloplecton Clemens, 1915, with notes on the re-discovered lectotype of Siphloplecton macrops (Pictet-Baraban & Hagen, 1856)
FIGURE 6. Siphloplecton picteti Staniczek & Godunko, 2012, SMNS, BB-100-G, male imago (photographs): A—total dorsal view; B—general dorsolateral view; C—general ventrolateral view; D—genitalia in ventral view; E—head and thorax in ventrolateral view; F—head and thorax in dorsolateral view.
FIGURE 4 in Revision of fossil Metretopodidae (Insecta: Ephemeroptera) in Baltic amber— Part 3: Description of two new species of Siphloplecton Clemens, 1915, with notes on the re-discovered lectotype of Siphloplecton macrops (Pictet-Baraban & Hagen, 1856)
FIGURE 4. Siphloplecton barabani Staniczek & Godunko, 2012, CCG, no. 2803, female imago (photographs). A—total dorsal view; B—body in ventral view; C—thorax in dorsal view; D—head and thorax in ventral view; E—tip of abdomen in ventral view.
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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.