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Figures 6-10 in A new species of Tanaostigmodes Ashmead, 1896 (Hymenoptera: Tanaostigmatidae) from Brazil associated with Machaerium acutifolium Voguel, 1837 (Fabaceae)
Figures 6-10. Tanaostigmodes anamariae Perioto and Lara, sp. nov., female. 6. Mesosoma, dorsal. 7. Propodeum, dorsal. 8. Mesosoma, lateral. 9. Metafemur, lateral. 10. Metasoma, lateral. /Tanaostigmodes anamariae Perioto y Lara, sp. nov., hembra. 6. Mesosoma, dorsal. 7. Propodeo, dorsal. 8. Mesosoma, lateral. 9. Metafémur, lateral. 10. Metasoma, lateral.
Figures 1-5 in A new species of Tanaostigmodes Ashmead, 1896 (Hymenoptera: Tanaostigmatidae) from Brazil associated with Machaerium acutifolium Voguel, 1837 (Fabaceae)
Figures 1-5. Tanaostigmodes anamariae Perioto and Lara, sp. nov., female. 1. Habitus, lateral. 2. Head, frontal. 3. Head, dorsal. 4. Head, lateral. 5. Antenna, frontal. / Tanaostigmodes anamariae Perioto y Lara, sp. nov., hembra. 1. Hábitos, lateral. 2. Cabeza, frontal. 3. Cabeza, dorsal. 4. Cabeza, lateral. 5. Antena, frontal.
Figures 13-15 in A new species of Rileya Ashmead (Hymenoptera: Eurytomidae) from Brazil associated with Zalepidota Rübsaamen (Diptera: Cecidomyiidae)
Figures 13-15. Rileya priscillae Perioto and Lara sp. nov., male. 13. Habitus, latero dorsal. 14. Habitus, dorsal. 15. Petiole, dorsal.
Figures 7-12 in A new species of Rileya Ashmead (Hymenoptera: Eurytomidae) from Brazil associated with Zalepidota Rübsaamen (Diptera: Cecidomyiidae)
Figures 7-12. Rileya priscillae Perioto and Lara sp. nov., female. 7. Mesosoma, lateral. 8. Mesosoma, dorsal. 9. Propodeum, dorsal. 10. Fore wing. 11. Metasoma, lateral. 12. Metasoma, dorsal.
Figures 1-6 in A new species of Rileya Ashmead (Hymenoptera: Eurytomidae) from Brazil associated with Zalepidota Rübsaamen (Diptera: Cecidomyiidae)
Figures 1-6. Rileya priscillae Perioto and Lara sp. nov., female. 1. Habitus, lateral. 2. Habitus, latero dorsal. 3. Head, frontal. 4. Clypeus and mandibles. 5. Head, lateral. 6. Antenna.
Fig. 2 in Doridicola similis (Copepoda: Poecilostomatoida: Rhynchomolgidae) Associated with Sepioteuthis sp. (Cephalopoda: Myopsida: Loliginidae), New to Japan
Fig. 2. Doridicola similis, female (NSMT-Cr 25448). A, mandible; B, maxillule; C, maxilla; D, maxilliped; E, leg 1; F, leg 2; G, leg 3. Scale bars: A, C, D, 50 µm; B, 10 µm; E–G, 100 µm.
Fig. 3. Doridicola similis. A–C in Doridicola similis (Copepoda: Poecilostomatoida: Rhynchomolgidae) Associated with Sepioteuthis sp. (Cephalopoda: Myopsida: Loliginidae), New to Japan
Fig. 3. Doridicola similis. A–C, female (NSMT-Cr 25448): A, leg 4; B, free segment of leg 5; C, posterior surface of genital double-somite and leg 6, dorsal. D–H, male (NSMT-Cr 25449): D, habitus, dorsal; E, antenna; F, maxilliped; G, free segment of leg 5; H, part of genital somite and leg 6, ventral. Scale bars: A–C, 100 µm; D, 500 µm; E, F, 100 µm; G, 50 µm; H, 200 µm.
Fig. 3. Pennatulicola piscatorius n in A New Species of Pennatulicola Humes and Stock (Copepoda: Cyclopoida: Rhynchomolgidae) Associated with a Pennatulacean from Tokyo Bay, Japan
Fig. 3. Pennatulicola piscatorius n. sp. Female, paratype: A, leg 4 (arrowhead indicates inner terminal process that is usually absent); B, exopod of leg 5; C, genital aperture. Male, paratype: D, habitus, dorsal; E, urosome, ventral; F, right caudal ramus, ventral; G, maxilliped; H, exopod of leg 5. Scale bars: A–C, E, H, 0.05 mm; D, 0.1 mm; F, G, 0.02 mm.
Fig. 2. Pennatulicola piscatorius n in A New Species of Pennatulicola Humes and Stock (Copepoda: Cyclopoida: Rhynchomolgidae) Associated with a Pennatulacean from Tokyo Bay, Japan
Fig. 2. Pennatulicola piscatorius n. sp., female, paratype. A, mandible; B, paragnath; C, maxillule; D, maxilla (Roman numerals I–III indicate setae I–III); E, maxilliped; F, leg 1; G, leg 2; H, leg 3. Scale bars: A–E, 0.02 mm; F–H, 0.05 mm.
Fig. 4 in A New Species of Podocerus (Crustacea: Amphipoda: Podoceridae) Associated with the Whale Shark Rhincodon typus
Fig. 4. Podocerus jinbe sp. nov., holotype male 6.0 mm, NSMT-Cr 26048. A, pereopod 5, medial view; B, pereopod 6, medial view; C, pereopod 7, medial view; D, basis and ischium of pereopod 7, medial view; E, pleopod 1, medial view; F, retinacula (coupling hooks) of peduncle of pleopod 1, medial view; G, uropod 1, dorsal view; H, uropod 2, dorsal view; I, uropod 3, dorsal view; J, telson, dorsal view.
Fig. 3 in A New Species of Podocerus (Crustacea: Amphipoda: Podoceridae) Associated with the Whale Shark Rhincodon typus
Fig. 3. Podocerus jinbe sp. nov., holotype male 6.0 mm, NSMT-Cr 26048. A, basis to dactylus of gnathopod 1 (some setae omitted; dactylus is strongly curved due to mounting angle), medial view; B, basis to dactylus of gnathopod 2 (some setae omitted), medial view; C, palmar margin of gnathopod 2 propodus, medial view; D, pereopod 3, medial view; E, basis and ischium of pereopod 3, medial view; F, pereopod 4.
Data for: Faster evolution of a premating reproductive barrier is not associated with faster speciation rates in New World passerine birds
<p>Why are speciation rates so variable across the tree of life? One hypothesis is that this variation is explained by how rapidly reproductive barriers evolve. We tested this hypothesis by conducting a comparative study of the evolution of bird song, a premating barrier to reproduction. Speciation in birds is typically initiated when geographically isolated (allopatric) populations evolve reproductive barriers. We measured the strength of song as a premating barrier between closely related allopatric populations by conducting 2,339 field experiments to measure song discrimination for 175 taxon pairs of allopatric or parapatric New World passerine birds, and estimated recent speciation rates from a global molecular phylogeny of birds. Taxon pairs with high song discrimination in allopatry failed to regularly interbreed in parapatry, evidence that song discrimination is indeed an important reproductive barrier. However, evolutionary rates of song discrimination were not associated with recent speciation rates, and song discrimination evolves faster in suboscine passerines than their more species-rich sister clade, the oscines. Our findings support the long-held idea that song is a key premating reproductive barrier in birds, but show that faster evolution of this reproductive barrier between populations does not result in faster diversification betweeen species.</p>
Fig. 5 in A new species of Plagiognathus (Heteroptera: Miridae) associated with the locally endemic Phlomis leucophracta (Lamiales: Lamiaceae) from Karaman, Turkey
Fig. 5. Distribution of Plagiognathus spp. Star: P. ozgurkocaki sp. nov.; circle: P. marivanensis Linnavuori, 2010; square: P. bipunctatus albicans (Reuter, 1901). Grey color indicates previous literature records, red color indicates new records presented in this paper.
Fig. 4. Plagiognathus spp. A. P in A new species of Plagiognathus (Heteroptera: Miridae) associated with the locally endemic Phlomis leucophracta (Lamiales: Lamiaceae) from Karaman, Turkey
Fig. 4. Plagiognathus spp. A. P. ozgurkocaki sp. nov., ♂, paratype (LEMT). B. P. marivanensis Linnavuori, 2010, ♂ (BCIT), Karaman. C. P. bipunctatus albicans (Reuter, 1901), ♂ (BCIT), Karaman. D. P. bipunctatus bipunctatus, ♂ (BCIT), İzmir. Scale bar = 1 mm.
Fig. 3 in A new species of Plagiognathus (Heteroptera: Miridae) associated with the locally endemic Phlomis leucophracta (Lamiales: Lamiaceae) from Karaman, Turkey
Fig. 3. Plagiognathus ozgurkocaki sp. nov., ♂, paratype (LEMT). A–C. Vesica from different perspectives. D–G. Left paramere from different perspectives. H. Right paramere. Scale bar = 0.1 mm.
Fig. 2 in A new species of Plagiognathus (Heteroptera: Miridae) associated with the locally endemic Phlomis leucophracta (Lamiales: Lamiaceae) from Karaman, Turkey
Fig. 2. Plagiognathus ozgurkocaki sp. nov. A. ♂, holotype (LEMT). B. ♀, paratype (LEMT). C. Head from dorsal view, ♂, paratype (LEMT). D. Head from lateral view, ♂, paratype (LEMT). E. Variability of buccal plate, ♂, paratype (LEMT). F. Antenna, ♂, paratype (LEMT). Scale bars: A–B = 1 mm; C–F = 0.25 mm.
Fig. 1 in A new species of Plagiognathus (Heteroptera: Miridae) associated with the locally endemic Phlomis leucophracta (Lamiales: Lamiaceae) from Karaman, Turkey
Fig. 1. Plagiognathus ozgurkocaki sp. nov. A. Colony on Phlomis leucophracta P.H.Davis & Hub.- Mor. B. ♂. C. ♀. D. ♀. Photographs: Özgür Koçak.
Fig. 4 in Three New Unusual Beetle-Associated Species Of The Genus Gaeolaelaps (Acari, Mesostigmata, Laelapidae) From Ukraine
Fig. 4. Gaeolaelaps sevastianovi Trach, sp. n., ♀: 1 — idiosoma, dorsal view; 2 — idiosoma, ventral view; 3 — subcapitulum and palp; 4 — chelicera.
Fig. 3 in Three New Unusual Beetle-Associated Species Of The Genus Gaeolaelaps (Acari, Mesostigmata, Laelapidae) From Ukraine
Fig. 3. Gaeolaelaps khaustovi Trach, sp. n., ♀: 1 — idiosoma, dorsal view; 2 — idiosoma, ventral view; 3 — tectum; 4 — subcapitulum and palp; 5 — chelicera; 6 — sternal shield of paratype; 7 — epigynal shield of paratype.
Fig. 5 in Three New Unusual Beetle-Associated Species Of The Genus Gaeolaelaps (Acari, Mesostigmata, Laelapidae) From Ukraine
Fig. 5. Gaeolaelaps khaustovi Trach, sp. n. (1) and G. sevastianovi Trach, sp. n. (2–5), ♀: 1 — leg IV; 2 — leg I (from trochanter to tibia); 3 — leg II (from femur to tibia); 4 — leg III (from femur to tibia); 5 — leg IV.
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
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.