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1,393 results for “Biological Notes”
Figures 48–51. Microrhagus carinicollis Otto. 48 in Eucnemid larvae of the Nearctic region. Part V: Fifth instar larval descriptions for eight species of Microrhagus Dejean, 1833 (Coleoptera: Eucnemidae: Melasinae: Dirhagini), with descriptions of four new species and notes on their biology
Figures 48–51. Microrhagus carinicollis Otto. 48) Holotype, dorsal view. 49) Holotype, lateral view. 50) Holotype, ventral view. 51) Aedeagus of paratype. Scale line = 0.5 mm.
Figures 44–47. Microrhagus brunneus, fifth instar. 44 in Eucnemid larvae of the Nearctic region. Part V: Fifth instar larval descriptions for eight species of Microrhagus Dejean, 1833 (Coleoptera: Eucnemidae: Melasinae: Dirhagini), with descriptions of four new species and notes on their biology
Figures 44–47. Microrhagus brunneus, fifth instar. 44) Head, dorsal view. 45) Head and thoracic region, dorsal view. 46) Head and thoracic region, ventral view. 47) Abdominal segments VII–IX, ventral view.
Figures 67–70. Microrhagus triangularis, fifth instar. 67 in Eucnemid larvae of the Nearctic region. Part V: Fifth instar larval descriptions for eight species of Microrhagus Dejean, 1833 (Coleoptera: Eucnemidae: Melasinae: Dirhagini), with descriptions of four new species and notes on their biology
Figures 67–70. Microrhagus triangularis, fifth instar. 67) Head, dorsal view. 68) Head and thoracic region, dorsal view. 69) Head and thoracic region, ventral view. 70) Abdominal segments VII–IX, ventral view. Scale line = 0.5 mm.
Figure 4 in Aylax hypecoi Trotter (Hymenoptera, Cynipidae) in Europe: Redescription, with taxonomic and biological notes
Figure 4. The phylogenetic relationships of Aylax hypecoi after Nylander et al. (2004a, 2004b) (distant clades omitted). Majority-rule consensus tree from analysis of three genes (EF1a, COI, 28S) combined with morphology.
Figure 3 in Aylax hypecoi Trotter (Hymenoptera, Cynipidae) in Europe: Redescription, with taxonomic and biological notes
Figure 3. (A) Aylax minor, anterodorsal view of pronotum. (B) Aylax papaveris, forewing venation. (C–F) Neaylax versicolor: (C) pronotum; (D) mesosoma dorsal view; (E) head anterior view; (F) forewing venation.
Figure 2 in Aylax hypecoi Trotter (Hymenoptera, Cynipidae) in Europe: Redescription, with taxonomic and biological notes
Figure 2. Aylax hypecoi, female and galls. (A) Mesosoma, anterodorsal view showing the pronotum; (B) metasoma, lateral view; (C) left forewing; (D) emerged adult female; (E) section of a gall showing an adult female inside; (F) galls in fruits of Hypecoum.
Figure 1 in Aylax hypecoi Trotter (Hymenoptera, Cynipidae) in Europe: Redescription, with taxonomic and biological notes
Figure 1. Aylax hypecoi, female (SEM). (A) Head anterior view; (B) head posterior view; (C) antenna; (D) mesosoma dorsal view; (E) mesosoma lateral view; (F) mesosoma posterodorsal view.
Figure 1. A, B, solitary A. pacificus web, a in Notes on the biology of Anelosimus pacificus Levi, 1963 (Theridiidae, Araneae)-evidence for an evolutionary reversal to a less social state
Figure 1. A, B, solitary A. pacificus web, a flimsy tangle of silk lines with conspicuous globules of glue throughout; C, web of the subsocial A. may Agnarsson, 2005, a typical Anelosimus 'basket' web with dense silk sheet containing living and dead leaves, and aerial threads above, without visible glue; D, the bright white A. pacificus egg sac. All webs have been dusted with corn starch to enhance the visibility of the silk lines.
Figure 4 in Horsehair worms (Nematomorpha) from the Baltic island Bornholm (Denmark), with notes on the biology of Gordius albopunctatus
Figure 4. Six dissected larvae and praepupae of Pomatophylax cingulatus (Trichoptera), parasitized by Gordius albopunctatus (note that worms are white in colour except for the one to the right which is light brown).
Figure 1 in Horsehair worms (Nematomorpha) from the Baltic island Bornholm (Denmark), with notes on the biology of Gordius albopunctatus
Figure 1. Gordius albopunctatus. (A) Details of three males with different coloration, white spots are not visible on the lightest specimen (top); (B) ventral view of male posterior end showing tail lobes, cloacal opening, and postcloacal crescent; (C, D) cuticle with regular polygonal areoles. (B–D) SEM. Scale bars: 100 mm (B); 20 mm (C, D).
Figure 2 in Horsehair worms (Nematomorpha) from the Baltic island Bornholm (Denmark), with notes on the biology of Gordius albopunctatus
Figure 2. Gordionus violaceus. (A, B) Ventral view of male posterior end showing tail lobes, cloacal opening surrounded by spines, and anterolateral rows of bristles (arrows in A); (C) cuticle with rounded areoles which are surrounded by short bristles; (D) magnification of one areole. All SEM. Scale bars: 50 mm (A, B); 10 mm (C); 5 mm (D).
Figure 3 in Horsehair worms (Nematomorpha) from the Baltic island Bornholm (Denmark), with notes on the biology of Gordius albopunctatus
Figure 3. Outline of the Baltic island Bornholm with location of investigated streams and relation of species found in those streams. White, Gordius albopunctatus; black, Gordionus violaceus.
Fig. 19 in Confirmed occurrence of Hydroscapha granulum in Iran, with notes on its biology (Coleoptera: Myxophaga: Hydroscaphidae)
Fig. 19. Known distribution of West-Palaearctic Hydroscapha derived from the published data (see the text for details). Asian records are mapped by full circles, Spanish record of H. granulum (Motschulsky, 1855) by JÄCH et al. (1999) by an empty circle. Species whose synonymy with H. granulum requires revision are mapped in dotted line.
Figs. 1–9 in Confirmed occurrence of Hydroscapha granulum in Iran, with notes on its biology (Coleoptera: Myxophaga: Hydroscaphidae)
Figs. 1–9. Iranian specimens of Hydroscapha granulum (Motschulsky, 1855) and their typical habitat. 1 – egg size in comparison to female beetle (locality no. 6); 2 – air bubble under elytra; 3 – typical habitat of the species (rocks covered by algae, locality no. 12); 4–6 – mites (possibly parasitic) infecting Hydroscapha adults at localities 6 and 12 (4, 5 – mites on abdominal tergites; 6 – microscopic slide of the mite, scale bar 0.1 mm); 7–9 – habitus of different larval instars.
Figs. 36–41 in Horelophus walkeri rediscovered: adult morphology and notes on biology (Coleoptera: Hydrophilidae)
Figs. 36–41. Legs of Horelophus walkeri Orchymont, 1913. 36 – male, apex of protibia and basal part of protarsus; 37 – male, mesotarsomeres 1–3; 38 – female, mesotarsomeres 1–3; 39 – male, metatarsomere 5 and pretarsus in relaxed condition; 40 – male, metatarsomeres 1–3; 41 – male, metatarsomere 5 and pretarsus with exposed unguitractor.
Figs. 18–24 in Horelophus walkeri rediscovered: adult morphology and notes on biology (Coleoptera: Hydrophilidae)
Figs. 18–24. Morphology of Horelophus walkeri Orchymont, 1913. 18 – head, dorsal view (inset: detail of punctation of frons); 19 – head, ventral view; 20 – maxillary palpomere 4, dorsal view; 21 – detail of mouthparts; 22 – prothorax, posterior view; 23 – prothorax, ventral view; 24 – right side of pronotum.
Figs. 11–17 in Horelophus walkeri rediscovered: adult morphology and notes on biology (Coleoptera: Hydrophilidae)
Figs. 11–17. Mouthparts and head appendages of Horelophus walkeri Orchymont, 1913. 11 – labrum, dorsal view; 12 – labrum, ventral view (epipharynx); 13 – maxilla; 14 – mentum and prementum; 15 – mandible; 16–17 – antenna (16 – male, 17 – female).
Figs. 1–4. Horelophus walkeri Orchymont, 1913. 1–2 in Horelophus walkeri rediscovered: adult morphology and notes on biology (Coleoptera: Hydrophilidae)
Figs. 1–4. Horelophus walkeri Orchymont, 1913. 1–2 – general habitus in dorsal and lateral view (photo M. Fikáček); 3–4 – individuals on the wet rock surfaces at Dead Horse Creek, Marlborough (photo R. Leschen).
Figs. 25–35 in Horelophus walkeri rediscovered: adult morphology and notes on biology (Coleoptera: Hydrophilidae)
Figs. 25–35. Morphology of Horelophus walkeri Orchymont, 1913. 25 – meso- and metathorax, ventral view; 26 – metanotum; 27 – elytral margin, dorsal view; 29 – elytron, dorsal view; 30 – detail of elytral punctation; 31 – meso- and metafurca, lateral view (part of mesoventrite broken off); 32 – mesofurca, posterior view; 33 – detail of projections of laterotergite 3; 34 – abdominal laterotergites 3–4; 35 – abdomen, ventral view
Figs. 5–10 in Horelophus walkeri rediscovered: adult morphology and notes on biology (Coleoptera: Hydrophilidae)
Figs. 5–10. Habitats of Horelophus walkeri Orchymont, 1913. 5–6 – Marlborough, Dead Horse Creek, 30.xi.2010 (5 – R. Leschen collecting specimens walking on rock steps; 6 – general view of the exposed part of Dead Horse Creek where H. walkeri occurred); 7–9 – Nelson, Deepwater Creek, 2.xii.2010 (7 – general view of the small streamlet on which side the specimens were found, see black arrows; 8–9 – details of the microhabitats where H. walkeri occurred); 10 – Marlborough, Pelorus Bridge, 28.xii.1984, A. Newton collecting H. walkeri at the side of the waterfall. Photos by M. Fikáček (5–9) and M. Thayer (10).
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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.