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Figure 3 in On the morphology of the terminal-instar larvae of some European species of Sycophila (Hymenoptera: Eurytomidae) parasitoids of gall wasps (Hymenoptera: Cynipidae)
Figure 3. Illustrations of the terminology used for general descriptions in different views. (A) Anterior view of head of Sycophila mayri (Erdos), letters refer as follows to the described structures: ams, anteromedial setae of antennal region; an, antenna; anr, antennal area; cl, clypeus; cs, clypeal setae; fr, frons; gns, genal setae; gr, genal region; hr, hypostomal region; hs, hypostomal setae; lb, labrum; lbi, labium; md, mandible; mx, maxillae; vams, anteromedial setae of vertex; vr, vertex region. (B) Anterior view of mouthparts of Sycophila biguttata (Swederus), showing the clypeus (cl); clypeal setae (cs); labrum (lb); labral setae (lbs); lateral lobes of labrum (lfp): medial piece of labrum (lmp) and the lower-lip complex: labium (lbi); mandible (md); maxillae (mx). (C) Anterior view of the right mandible of Sycophila binotata (Fonscolombe), showing the first and second tooth and the base (mbs).
Figure 8 in On the morphology of the terminal-instar larvae of some European species of Sycophila (Hymenoptera: Eurytomidae) parasitoids of gall wasps (Hymenoptera: Cynipidae)
Figure 8. Anterior view of the right mandible of terminal-instar larvae. (A) Sycophila biguttata; (B) Sycophila binotata; (C). Sycophila flavicollis; (D) Sycophila mayri; (E) Sycophila submutica ex Isocolus scabiosae (k) form rogenhoferi (k).
FIGURE 1 in Genetic and shell-shape analyses of Orlitia borneensis (Testudines: Geoemydidae) reveal limited divergence among founders of the European zoo population
FIGURE 1. Ventral and dorsal view of a shell of Orlitia borneensis showing the landmarks used in this study.
FIGURES 5–6 in Dichrorampha dinarica, new species, a century of confusion in European lepidopterology (Lepidoptera: Tortricidae) resolved by combining morphology and DNA barcoding
FIGURES 5–6. Male genitalia of Dichrorampha. 5, D. rilana Drenowsky, slide P. Huemer TOR 455 ♂; 6, D. dinarica sp. n., paratype, slide P. Huemer TOR 452 ♂.
FIGURES 1–4 in Dichrorampha dinarica, new species, a century of confusion in European lepidopterology (Lepidoptera: Tortricidae) resolved by combining morphology and DNA barcoding
FIGURES 1–4. Adults of Dichrorampha. 1, D. ligulana (Herrich-Schäffer), ♂; 2, D. rilana Drenowsky, ♂; 3–4, D. dinarica sp. n., paratypes, 3, ♂, 4, ♀. Scale bar = 5 mm.
FIGURE 28. Anomopsyllus hamiltonae n in Copepods associated with polychaete worms in European seas
FIGURE 28. Anomopsyllus hamiltonae n. sp., female. A, habitus, dorsal; B, urosome, ventral; C, antennule; D, antenna; E, mouthparts; F, mandible; G, maxillule; H, maxilla; I, maxilliped. Scale bars: A, 0.1 mm; B, I, 0.02 mm; C–H, 0.01 mm.
FIGURE 29. Vectoriella gabesensis n in Copepods associated with polychaete worms in European seas
FIGURE 29. Vectoriella gabesensis n. sp. female: A, habitus, ventral; B, urosome, dorsal; C, left caudal ramus, dorsal; D, antennule; E, antenna; F, labrum; G, mandible; H, paragnath; I, maxillule; J, maxilla, ventral; K, maxilliped. Male: L, habitus, ventral; M, labrum, posterior. Scale bars: A, 0.1 mm; B, L, 0.05 mm; C, F, M, 0.02 mm; D, E, G–K, 0.01 mm.
FIGURE 22. Sheaderia bifida n. gen. et n in Copepods associated with polychaete worms in European seas
FIGURE 22. Sheaderia bifida n. gen. et n. sp., female. A, maxilla; B, maxilliped; C, leg 1; D, leg 2; E, leg 3; F, leg 5. Scale bars: A–E, 0.2 mm; F, 0.05 mm.
FIGURE 20. Boreoclausia holmesi n. gen. et n in Copepods associated with polychaete worms in European seas
FIGURE 20. Boreoclausia holmesi n. gen. et n. sp., female. A, leg 1; B, leg 2; C, leg 3; D, leg 4. All scale bars: 0.02 mm.
FIGURE 13. Rhodinicola similis n in Copepods associated with polychaete worms in European seas
FIGURE 13. Rhodinicola similis n. sp., female. A, cephalothorax, dorsal; B, caudal rami, dorsal; C, antennule, ventral; D, antenna; E, labrum, ventral; F, mandible; G, maxillule; H, maxilla; I, maxilliped. Scale bars: A, 0.2 mm; B, 0.1 mm; C–F, H, I, 0.05 mm; G, 0.02 mm.
FIGURE 11. Rhodinicola tenuis n in Copepods associated with polychaete worms in European seas
FIGURE 11. Rhodinicola tenuis n. sp., female. A, habitus, dorsal; B, urosome, ventral; C, left caudal ramus, ventral; D, rostrum and antennule, dorsal; E, antenna; F, labrum, ventral; G, mandible; H, maxillule; I, maxilla; J, maxilliped. Scale bars: A, 0.5 mm; B, 0.2 mm; C–J, 0.05 mm.
FIGURE 8. Rhodinicola gibbosus Bresciani, 1964, female. A in Copepods associated with polychaete worms in European seas
FIGURE 8. Rhodinicola gibbosus Bresciani, 1964, female. A, maxilla, medial; B, distal segment of maxilla, ventral; C, maxilliped; D, leg 1; E, leg 2; F, leg 3; G, leg 4; H, leg 5. All scale bars: 0.02 mm.
FIGURES 2–5 in The red-listed species Thamnurgus rossicus in East Europe is a synonym of the rare Central European species, T. petzi (Curculionidae: Scolytinae)
FIGURES 2–5. Thamnurgus petzi, dorsal view, with declivity enlarged. 2–3, immature female specimen of T. petzi collected in Windischgarsten in Oberösterreich; 4–5, mature female specimen of T. rossicus collected in Streletskaya steppe, Kursk.
FIGURE 1 in The red-listed species Thamnurgus rossicus in East Europe is a synonym of the rare Central European species, T. petzi (Curculionidae: Scolytinae)
FIGURE 1. Distribution of Thamnurgus petzi (dots) and T. rossicus (stars). Question marks indicate unverified records. Stippled circle is from Weichselbaumer (2014).
Figure 6 in Phylogeny and taxonomy of European funnel-web spiders of the Tegenaria-Malthonica complex (Araneae: Agelenidae) based upon morphological and molecular data
Figure 6. Bayesian tree of single analysis of 28S. Posterior probabilities of clades are expressed in percentages and given above branches. Clade support (> 50) from the resampling method (jack-knife, 1000 replications) based on parsimony analysis with implied weighting (K = 6) is given below the branches. Abbreviations: GR, Greece; IT, Italy.
FIGURE 4 in Competing generic concepts for Blanding's, Pacific and European pond turtles (Emydoidea, Actinemys and Emys)-Which is best?
FIGURE 4. Dorsal and lateral views of skulls of Actinemys marmorata (Museum of Zoology Dresden, MTD 24914), Emydoidea blandingii (MTD 44419), and Emys orbicularis (MTD 44202). Note much elongated skull shape in Emydoidea. Drawings: C. Schmidt.
Figure 4 in Conservation genetics of native and European-introduced Chinese water deer (Hydropotes inermis)
Figure 4. Median-joining network analysis of Cytb haplotypes. Missing haplotypes are represented as black dots. Mutations are represented by hatch marks in connecting vectors and the size of circles is proportional to haplotype frequencies. Colours correspond to the source population. Haplotypes labelled under Unknown and listed by country correspond to the additional sequences taken from Genbank.
FIGS 82, 83 in The larvae of European Bibioninae (Diptera, Bibionidae)
FIGS 82, 83. (82) Bibio lepidus, cuticle of dorsal side of fourth abdominal segment. After Brindle (1962). (83) Bibio venosus, cuticle of dorsal side of ®rst abdominal segment. After Morris (1921).
FIGS 47 in The larvae of European Bibioninae (Diptera, Bibionidae)
FIGS 47± 53. Bibio nigriventris. (47) Labrum, dorsal view. (48) Mandible, internal view. (49) Maxilla and prementum, ventral view. (50) Cuticle of dorsal side of prothorax. (51) Cuticle of dorsal side of metathorax. (52) Cuticle of dorsal side of fourth abdominal segment. (53) Cuticle of dorsal side of ninth abdominal segment.
FIGS 91 in The larvae of European Bibioninae (Diptera, Bibionidae)
FIGS 91± 97. Dilophus femoratus. (91) Labrum, dorsal view. (92) Mandible, internal view. (93) Maxilla and prementum, ventral view. (94) Cuticle of dorsal side of prothorax. (95) Cuticle of dorsal side of metathorax. (96) Cuticle of dorsal side of fourth abdominal segment. (97) Cuticle of dorsal side of ninth abdominal segment.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.