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Natural history specimens collected and/or identified and deposited.
Natural history specimen data collected and/or identified by Luis Freire García, <a href="http://www.wikidata.org/entity/Q12392463">http://www.wikidata.org/entity/Q12392463</a>. Claims or attributions were made on Bionomia, <a href="http://bionomia.net">https://bionomia.net</a> using specimen data from the Global Biodiversity Information Facility, <a href="https://gbif.org">https://gbif.org</a>.
Natural history specimens collected and/or identified and deposited.
Natural history specimen data collected and/or identified by José Mansanet, <a href="http://www.wikidata.org/entity/Q21519908">http://www.wikidata.org/entity/Q21519908</a>. Claims or attributions were made on Bionomia, <a href="http://bionomia.net">https://bionomia.net</a> using specimen data from the Global Biodiversity Information Facility, <a href="https://gbif.org">https://gbif.org</a>.
Natural history specimens collected and/or identified and deposited.
Natural history specimen data collected and/or identified by Ernesto Viéitez Cortizo, <a href="http://www.wikidata.org/entity/Q8777407">http://www.wikidata.org/entity/Q8777407</a>. Claims or attributions were made on Bionomia, <a href="http://bionomia.net">https://bionomia.net</a> using specimen data from the Global Biodiversity Information Facility, <a href="https://gbif.org">https://gbif.org</a>.
Figure 5 in A Continued Study Of Amphipod Life Histories In The Daugava River Under Varying Meteorological Conditions
Figure 5. Seasonal variation of the average brood size and average size of ovigerous females (mm) of A – Gammarus varsoviensis and B – Pontogammarus robustoides in 2020.
Figure 2 in A Continued Study Of Amphipod Life Histories In The Daugava River Under Varying Meteorological Conditions
Figure 2. Average air temperature and average water temperature of the study sites in the Daugava River during the study (2017–2020) in Latvia. Air temperature prepared according to data from Latvian Environment, Geology and Meteorology Centre, 2017, 2018, 2019, 2020
Figure 4 in A Continued Study Of Amphipod Life Histories In The Daugava River Under Varying Meteorological Conditions
Figure 4. Seasonal occurrence (%) of females, ovigerous females, males, immature and juvenile, A – Gammarus varsoviensis and B – Pontogammarus robustoides in 2020.
Figure 3 in A Continued Study Of Amphipod Life Histories In The Daugava River Under Varying Meteorological Conditions
Figure 3. Seasonal population structure of A – Gammarus varsoviensis and B – Pontogammarus robustoides by size (mm) in 2020.
Natural history specimens collected and/or identified and deposited.
Natural history specimen data collected and/or identified by Karl Friedrich Meinshausen, <a href="http://www.wikidata.org/entity/Q5958256">http://www.wikidata.org/entity/Q5958256</a>. Claims or attributions were made on Bionomia, <a href="http://bionomia.net">https://bionomia.net</a> using specimen data from the Global Biodiversity Information Facility, <a href="https://gbif.org">https://gbif.org</a>.
Figure 13 - C. zonarius 1 in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part II: Natural history: morphology, ecology, and behaviour, with accounts of larval ecology and insights into the aphytophagous C. dicksoni (Gabriel)
Figure 13 - C. zonarius 1st instar, in captivity, feeding on Osteospermum moniliferum (Silwerstroomstrand, Cape Town) in a manner described for C. zeuxo by Clark & Dickson (1971:168). The usual host plant for C. zonarius in nature is O. incanum.
Figure 1 in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part II: Natural history: morphology, ecology, and behaviour, with accounts of larval ecology and insights into the aphytophagous C. dicksoni (Gabriel)
Figure 1 – Flattened components of male genitalia of eight Chrysoritis species. From top to bottom: juxta (furca), valve, and saccus. (a) C. thysbe, (b) C. p. pyroeis, (c) C. oreas, (d) C. zonarius, (e) C. f. felthami, (f) C. l. lycegenes, (g) C. dicksoni, and (h) C. phosphor. Reproduced from Heath (1997: 60). See also Fig. 2 in Heath et al., 2023.
Figure 3 in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part II: Natural history: morphology, ecology, and behaviour, with accounts of larval ecology and insights into the aphytophagous C. dicksoni (Gabriel)
Figure 3 – Micrographs of basal hind wing scales at three magnifications, under dorso-lateral lighting intending to invoke iridescence if any. Images show the base of the wing. A–C: C. violescens (Komsberg Pass, sample SAM-LEP-A041390). D– F: C. aridus (Studer's Pass, SAM-LEP-A041391). G–I: C. amatola stat. nov. (Groot Winterberg, SAM-LEP-A041392). Images by S. van Noort.
Figure 7 in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part II: Natural history: morphology, ecology, and behaviour, with accounts of larval ecology and insights into the aphytophagous C. dicksoni (Gabriel)
Figure 7 - Eggs of four Chrysoritis species (not to scale). A. C. z. zonarius (Churchhaven). B. C. rileyi (Brand Vlei). C. C. blencathrae (Waaihoek Mt.). D. C. dicksoni (Witsand; photo: S.E. Woodhall).
Figure 9 in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part II: Natural history: morphology, ecology, and behaviour, with accounts of larval ecology and insights into the aphytophagous C. dicksoni (Gabriel)
Figure 9 – Four tubercles (excluding tentacular organ) re-drawn from Clark & Dickson (1971). (a) C. nigricans, (b) C. pan, (c) C. p. palmus, (d) C. u. uranus.
Figure 11 – C. t. thysbe 5 in Chrysoritis Butler (Papilionoidea: Lycaenidae: Aphnaeinae) - Part II: Natural history: morphology, ecology, and behaviour, with accounts of larval ecology and insights into the aphytophagous C. dicksoni (Gabriel)
Figure 11 – C. t. thysbe 5th instar plus two Crematogaster peringueyi ants engaged in mutual trophallaxis, sharing honeydew that was taken from the larva's DNO (Blaauwberg N. Res.)
Figure 8 in A contribution to the knowledge of the butterfly fauna of Maputo Special Reserve, Mozambique from African Natural History Research Trust expeditions (Papilionoidea)
Figure 8 – Vegetation map of Maputo Special Reserve adapted from De Boer (2000). Collecting sites are numbered as they appear in the Materials & Methods. 'Woodland' sensu De Boer was separated by the researchers into 'Closed' and 'Grassy' woodland.
Figure 3 in A contribution to the knowledge of the butterfly fauna of Maputo Special Reserve, Mozambique from African Natural History Research Trust expeditions (Papilionoidea)
Figure 3 – Afrogegenes letterstedti ♀ pre-vaginal plate, the diagnostic shallow indentation indicated by a black arrow (see De Jong & Coutsis, 2017 for a full explanation)
Figure 1 in A contribution to the knowledge of the butterfly fauna of Maputo Special Reserve, Mozambique from African Natural History Research Trust expeditions (Papilionoidea)
Figure 1 – Some of the major habitat types encountered in the MSR: sand thicket (A), sand forest (B), hygrophilous grassland (C), dune grassland-dune forest ecotone (D)
Figures 9–17 in Notes on the life history and taxonomy of Cerurina marshalli (Noctuoidea: Notodontidae: Cerurinae)
Figures 9–17: Comparative adult specimens of Cerurina marshalli (all ANHRT, unless otherwise indicated), arrows indicate diagnostic generic characters. 9. Syntype ♀, Zimbabwe, Mashonaland (NHMUK), a. defined antemedial fascia, b. almost completely deleted subterminal fascia; 10. Zambia, Mutinondo (ANHRTUK00152995, LG5366♀); 11. Zambia, Mutinondo (ANHRTUK00152996, LG5357♀); 12. Zambia, Lukwakwa (ANHRTUK00061207, ANHRT Gen. slide no. 00519♀); 13. Zambia, Lukwakwa (ANHRTUK00061232, LG5358♂); 14. Zambia, Kitwe (ANHRTUK00050387, ♂); 15. Ivory Coast, Mt. Tonkoui (ANHRTUK00043082, ANHRT Gen. slide no. 00315♂); 16. Tanzania, Livingstone Mts. (ANHRTUK00081591, ANHRT Gen. slide no. 00520♂); 17. D. R. Congo, Nord Kivu (ANHRTUK00158203, LG5367♂).
Figures 39‒42 in Notes on the life history and taxonomy of Cerurina marshalli (Noctuoidea: Notodontidae: Cerurinae)
Figures 39‒42 ‒ Male genitalia of Afrocerura spp. (all ANHRT), arrow indicates a diagnostic generic character. 39. A. cameroona (Bethune-Baker, 1927), Gabon, Ivindo N.P. (ANHRTUK00044930, ANHRT slide no. 00521♂); 40. A. cameroona, Zambia, Kafue N.P. (ANHRTUK00081592, ANHRT slide no. 00522♂); 41. A. cameroona, Zambia, Hillwood, Ikelenge (ANHRTUK00073571, LG5359♂); 42. A. thomensis (Talbot, 1929), São Tomé, Bom Successo (ANHRTUK00041722, LG5362♂), a. dorsal crest on the uncus.
Figures 32‒35 in Notes on the life history and taxonomy of Cerurina marshalli (Noctuoidea: Notodontidae: Cerurinae)
Figures 32‒35: Male genitalia of Cerurina marshalli (Hampson, 1910) (all ANHRT), arrows indicate diagnostic generic characters. 32. Zambia, Lukwakwa (ANHRTUK00061232, LG5358♂), a. bifid uncus tip and lateral denticulations, b. socii well developed with 2‒3 denticulations, c. valvae club-like and apically rounded; 33. Ivory Coast, Mt. Tonkoui, (ANHRTUK00043082, ANHRT Gen. slide no. 00315♂); 34. Tanzania, Livingstone Mts. (ANHRTUK00081591, ANHRT Gen. slide no. 00520♂); 35. D.R. Congo, Nord Kivu (ANHRTUK00158203, LG5367♂).
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.