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335 results for “Biological records”
FIGURES 2–9 in A new record of Chironomus (Chironomus) acidophilus Keyl (Diptera, Chironomidae) from the Uzon volcanic caldera (Kronotsky Reserve, Kamchatka Peninsula, Russia), its karyotype, ecology and biology
FIGURES 2–9. Imago male of C. acidophilus Keyl. 2—variability of frontal tubercles; 3—hypopygium, dorsal view; 3— tergite IX, lateral view; 5–9—variability of superior volsella. Scale bar 50 µm.
FIGURES 20–29 in A new record of Chironomus (Chironomus) acidophilus Keyl (Diptera, Chironomidae) from the Uzon volcanic caldera (Kronotsky Reserve, Kamchatka Peninsula, Russia), its karyotype, ecology and biology
FIGURES 20–29. Larva of C. acidophilus Keyl. 20—antenna; 21—labro-epipharyngeal region; 22—mandible; 23–26—apex of mandible; 27—maxilla; 28—anterior margin of base maxilla; 29—mentum and ventromental plate. Scale bar 50 µm.
FIGURES 10–19 in A new record of Chironomus (Chironomus) acidophilus Keyl (Diptera, Chironomidae) from the Uzon volcanic caldera (Kronotsky Reserve, Kamchatka Peninsula, Russia), its karyotype, ecology and biology
FIGURES 10–19. Pupa of C. acidophilus Keyl. 10–11—frontal tubules, dorsal view; 12—median hooks on the posterior margin of tergite II, lateral view; 13—tergites II–VI; 14—tergites VII–IX; 15–19—variability of anal combs. Scale bar 50 µm.
FIGURE 37 in A new record of Chironomus (Chironomus) acidophilus Keyl (Diptera, Chironomidae) from the Uzon volcanic caldera (Kronotsky Reserve, Kamchatka Peninsula, Russia), its karyotype, ecology and biology
FIGURE 37. Polytene chromosomes of C. acidophilus Keyl, 1960. Designations: A, B, C, D, E, F, G—chromosome arms, arabic numerals and letters—chromosome sections, N—nucleolus, BR—Balbiani Ring, arrows indicate the centromeres.
FIGURE 2 in Re-description and first host and biology records of Entedon magnificus (Girault & Dodd) (Hymenoptera, Eulophidae), a natural enemy of Gonipterus weevils (Coleoptera, Curculionidae), a pest of Eucalyptus trees
FIGURE 2. Entedon magnificus, female, SEM. A, habitus, dorsal view; B, head, frontal view; C, propodeum; D, lower face; E, head and anterior mesosoma; F, occiput.
FIGURE 5. Entedon magnificus, final instars. A in Re-description and first host and biology records of Entedon magnificus (Girault & Dodd) (Hymenoptera, Eulophidae), a natural enemy of Gonipterus weevils (Coleoptera, Curculionidae), a pest of Eucalyptus trees
FIGURE 5. Entedon magnificus, final instars. A, body of completely eaten Gonipterus larva filled with final instars of E. magnificus; B–E, parasitoid larvae emerging from remnants of its host, mature larva of Gonipterus sp.; F and G, pupae.
FIGURE 1. Entedon magnificus. A, B in Re-description and first host and biology records of Entedon magnificus (Girault & Dodd) (Hymenoptera, Eulophidae), a natural enemy of Gonipterus weevils (Coleoptera, Curculionidae), a pest of Eucalyptus trees
FIGURE 1. Entedon magnificus. A, B. Female, habitus: A, dorsal view; B, lateral view. C, D. Male, habitus: C, lateral view; D, dorsal view.
FIGURE 4. A and B in Re-description and first host and biology records of Entedon magnificus (Girault & Dodd) (Hymenoptera, Eulophidae), a natural enemy of Gonipterus weevils (Coleoptera, Curculionidae), a pest of Eucalyptus trees
FIGURE 4. A and B, Gonipterus platensis weevils, habitus. C and D, female of Entedon magnificus ovipositing into Gonipterus platensis larva feeding on Eucalyptus leaf.
FIGURES 1–5. 1–4 in The description of a new species of Agrilus Curtis, with distributional records, and taxonomic and biological notes for Agrilinae and Trachyinae (Coleoptera: Buprestidae) of Mexico and Central America
FIGURES 1–5. 1–4. aedeagi of Agrilus spp.: 1, A. eyai Westcott and Noguera, dorsal; 2, same, ventral; 3, A. vandenberghei sp. nov., dorsal; 4, same, ventral. 5, dorsal habitus, A. vandenbergehi sp. nov.
FIGURE 1 A–F in First record of rare dasydytid gastrotrich Setopus tongiorgii (Balsamo, 1982) from central Europe with some biological data
FIGURE 1 A–F. Setopus tongiorgii. Light microscopic images (differential interference contrast). A: Habitus. Some motile spines visible (arrowheads). Note the reinforcements within the pharynx (asterisk) B: Dorsal view of anterior part showing spines of the head (arrowheads). Note the special scales with sensory setae (asterisk) C: Trunk region with mature egg D: Ventral view of the trunk with keeled scales (arrowheads) E: Closeup of the ventral terminal plates (arrowheads) F: Closeup of the xorgan (X). lci – locomotory cilia of the head; mig – midgut; oo – mature egg; ts – terminal spines.
Figs. 1–8. 1 in New Distribution Records of the Small Avocado Seed Weevil,Conotrachelus perseaeBarber (Coleoptera: Curculionidae), in Mexico and Notes on Its Biology
Figs. 1–8. 1) Conotrachelus perseae female on avocado fruit; 2) Fuerte avocado fruit with weevil oviposition signs; 3) Eggs of C. perseae in oviposition holes; 4) C. perseae larvae feeding in fruit; 5) C. perseae larvae burrowing in soil to begin pupation; 6) Adults of C. perseae in pupation cells; 7) C. perseae female, lateral view; 8) C. perseae male, lateral view.
Figure 2 in Reproductive biology of direct developing and threatened frog Adelophryne maranguapensis (Anura, Eleutherodactylidae) reveals a cryptic reproductive mode for anurans and the first record of parental care for the genus
Figure 2. Climatic parameters in Serra de Maranguape between the months of April 2010 and April 2012. Precipitation (columns); maximum relative humidity of air (blue line), minimum relative humidity of air (blue dashes), maximum temperature (red line), minimum temperature (red dashes), musical note (occurrence of vocalisations), egg (presence of egg masses); * without field work.
Distribution. Known only from the type locality in S Peru. Ecuadorean records from Tapichalaca Biological Reserve need confirmation. in Cricetidae
Distribution. Known only from the type locality in S Peru. Ecuadorean records from Tapichalaca Biological Reserve need confirmation.
FIGURES 14–15 in First record and new species of the parasitoid wasp Chaenotetrastichus Graham (Hymenoptera: Eulophidae) for the Neotropical Region, with notes on its biology and a key for the species of the genus
FIGURES 14–15. Brood cells from where the specimens of Chaenotetrastichus neotropicalis sp. nov. were reared. Fig. 14. Pupae of C. neotropicalis sp. nov. inside the white cocoon. Fig. 15. Open cocoon showing the pupae disposition in its interior.
FIGURES 10–11 in First record and new species of the parasitoid wasp Chaenotetrastichus Graham (Hymenoptera: Eulophidae) for the Neotropical Region, with notes on its biology and a key for the species of the genus
FIGURES 10–11. Paratype ♀, Chaenotetrastichus neotropicalis sp. nov. Fig. 10. Detail of pronotum and mesoscutum. Fig. 11. Scutellum, dorsellum and propodeum.
FIGURES 7–9 in First record and new species of the parasitoid wasp Chaenotetrastichus Graham (Hymenoptera: Eulophidae) for the Neotropical Region, with notes on its biology and a key for the species of the genus
FIGURES 7–9. Paratype ♀, Chaenotetrastichus neotropicalis sp. nov. Fig. 7. Head (laterofrontal view). Fig. 8. Details of vertex pilosity and sculpture. Fig. 9. Antennae.
Supplementary material 2 from: Senderov V, Georgiev T, Penev L (2016) Online direct import of specimen records into manuscripts and automatic creation of data papers from biological databases . Research Ideas and Outcomes 2: e10617. https://doi.org/10.3897/rio.2.e10617
This spreadsheet contains the information about the specimen API's of GBIF, BOLD Systems, iDigBio, and PlutoF. It lists the endpoints and the documentation URLs in the sheet named "APIs". In the sheet named "Mappings" it lists how to map the non-DwC compliant APIs (BOLD and PlutoF) to DwC-terms.
Supplementary material 3 from: Senderov V, Georgiev T, Penev L (2016) Online direct import of specimen records into manuscripts and automatic creation of data papers from biological databases . Research Ideas and Outcomes 2: e10617. https://doi.org/10.3897/rio.2.e10617
This archive contains XSLT transformations from EML v. 2.1.1 and v. 2.1.0 to Pensoft data paper format.
FIGURE 2 in New species and records of Awas Löbl (Coleoptera: Staphylinidae: Pselaphinae) from China, with notes on the biology of the genus
FIGURE 2. Morphological details of Awas helii male. A. Antenna. B–C. Head, in dorsal (B), and lateral (C) views. D. Pronotum. E. Elytral base. F–H. Aedeagus, in dorsal (F), lateral (G), and ventral (H) views. Scale bars: 0.5 mm in A–D, 0.2 mm in E–H.
FIGURE 3. Habitat and living Awas helii with host ant. A in New species and records of Awas Löbl (Coleoptera: Staphylinidae: Pselaphinae) from China, with notes on the biology of the genus
FIGURE 3. Habitat and living Awas helii with host ant. A. Habitat of Awas helii, image in box shows the original state of the beetle (male holotype) when the stone was turned over. B. A living Awas helii female with host in the field. C–F. A living Awas helii female with host in laboratory sample, showing rest pose (C) and lack of recognition of the beetle by the hosts (D–F).
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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.