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Рис. 1–11. Mimela spp., имаго и ΔетаΛи строения. 1–6 – M. cupidinea sp. n., гоΛотип, самец; 7–8 – M. anopunctata, самец («Tenasserim»); 9 – M. nigrosellata, гоΛотип, самец (о. Ява, «Java coll. Nonfried»); 10–11 – M. gressitti comb. n., паратип, самка. 1, 10 – общий виΔ; 2, 11 – простернаΛьный отросток; 3 – переΔняя Λапка; 4, 7, 9 – эΔеагус, виΔ сбоку; 5, 8 – парамеры, виΔ сверху, 6 – парамеры и базаΛьная пΛастинка, виΔ снизу. Масштабные Λинейки: 1, 4–10 – 2 мм (Λинейка общая ΔΛя 4–9), 2 – 0.2 мм, 3 – 1 мм, 11 – 0.5 мм. Figs 1–11. Mimela spp., imagoes and details of structure. 1–6 – M. cupidinea sp. n., holotype, male; 7–8 – M. anopunctata, male ("Tenasserim"); 9 – M. nigrosellata, holotype, male ("Java coll. Nonfried"); 10–11 –M. gressitti comb. n., paratype, female.1, 10 – habitus; 2, 11 – prosternal process; 3 – fore protarsus; 4, 7, 9 – aedeagus, lateral view; 5, 8 – parameres, dorsal view; 6 – parameres and basal plate, ventral view. Scale bars: 1, 4–10 – 2 mm (common for 4–9), 2 – 0.2 mm, 3 – 1 mm, 11 – 0.5 mm. in A new species of Mimela Kirby, 1825 from Laos with comments on M. gressitti (Frey, 1970), comb. n. (Coleoptera: Scarabaeidae: Rutelinae)
Рис. 1–11. Mimela spp., имаго и ΔетаΛи строения. 1–6 – M. cupidinea sp. n., гоΛотип, самец; 7–8 – M. anopunctata, самец («Tenasserim»); 9 – M. nigrosellata, гоΛотип, самец (о. Ява, «Java coll. Nonfried»); 10–11 – M. gressitti comb. n., паратип, самка. 1, 10 – общий виΔ; 2, 11 – простернаΛьный отросток; 3 – переΔняя Λапка; 4, 7, 9 – эΔеагус, виΔ сбоку; 5, 8 – парамеры, виΔ сверху, 6 – парамеры и базаΛьная пΛастинка, виΔ снизу. Масштабные Λинейки: 1, 4–10 – 2 мм (Λинейка общая ΔΛя 4–9), 2 – 0.2 мм, 3 – 1 мм, 11 – 0.5 мм. Figs 1–11. Mimela spp., imagoes and details of structure. 1–6 – M. cupidinea sp. n., holotype, male; 7–8 – M. anopunctata, male ("Tenasserim"); 9 – M. nigrosellata, holotype, male ("Java coll. Nonfried"); 10–11 –M. gressitti comb. n., paratype, female.1, 10 – habitus; 2, 11 – prosternal process; 3 – fore protarsus; 4, 7, 9 – aedeagus, lateral view; 5, 8 – parameres, dorsal view; 6 – parameres and basal plate, ventral view. Scale bars: 1, 4–10 – 2 mm (common for 4–9), 2 – 0.2 mm, 3 – 1 mm, 11 – 0.5 mm.
FIGURE 1 in Mini DNA barcodes reveal the details of the foraging ecology of the largehead hairtail, Trichiurus lepturus (Scombriformes: Trichiuridae), from São Paulo, Brazil
FIGURE 1 | Diagram showing the taxonomic composition of the prey items identified in the stomach of the largehead hairtail, Trichiurus lepturus, collected off the coast of São Paulo state in southeastern Brazil.
Fig. 2. Lithological details for Section B in Ordovician ostracods from east central Iran
Fig. 2. Lithological details for Section B of the Shirgesht Formation in the Derenjal Mountains on the west side of the Dahaneh Kolut valley. The position of fossil sample points, and the stratigraphical distribution of ostracods and selected trilobites, brachiopods and conodonts are also shown. Within lithological Unit B5, ostracod sample B−D/2 was taken from the base of the unit, sample B−D/3 at 18.85 m and sample B−D/4 at 46.7 m above the base of the unit. Ostracod sample B−D/5 was taken at the base of lithological Unit B6. The dashed lines for Liomegalaspides winsnesi, Neseuretinus birmanicus, and Nicolella sp. indicate that this fossil material was collected from loose blocks directly adjacent to the upper part of lithological Unit B5 in the field.
Linked collectors and determiners for: A detailed morphological dataset outlining the diversity of the genus Mimophis (Serpentes: Psammophiinae).
Natural history specimen data linked to collectors and determiners held within, "A detailed morphological dataset outlining the diversity of the genus Mimophis (Serpentes: Psammophiinae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/c7979ea4-1a59-42e3-bd57-3abc9c263e8c">https://bionomia.net/dataset/c7979ea4-1a59-42e3-bd57-3abc9c263e8c</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/c7979ea4-1a59-42e3-bd57-3abc9c263e8c">https://gbif.org/dataset/c7979ea4-1a59-42e3-bd57-3abc9c263e8c</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Redescription of Tapinesthis inermis (Araneae, Oonopidae), with detailed information on its ultrastructure.
Natural history specimen data linked to collectors and determiners held within, "Redescription of Tapinesthis inermis (Araneae, Oonopidae), with detailed information on its ultrastructure". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/661ec579-2551-46f4-821b-9af75650f9a8">https://bionomia.net/dataset/661ec579-2551-46f4-821b-9af75650f9a8</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/661ec579-2551-46f4-821b-9af75650f9a8">https://gbif.org/dataset/661ec579-2551-46f4-821b-9af75650f9a8</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Taxonomic synthesis of the eastern North American millipede genus Pseudopolydesmus (Diplopoda: Polydesmida: Polydesmidae), utilizing high-detail ultraviolet fluorescence imaging.
Natural history specimen data linked to collectors and determiners held within, "Taxonomic synthesis of the eastern North American millipede genus Pseudopolydesmus (Diplopoda: Polydesmida: Polydesmidae), utilizing high-detail ultraviolet fluorescence imaging". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/7226548c-af21-4648-85ea-733acdfda22e">https://bionomia.net/dataset/7226548c-af21-4648-85ea-733acdfda22e</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/7226548c-af21-4648-85ea-733acdfda22e">https://gbif.org/dataset/7226548c-af21-4648-85ea-733acdfda22e</a>. Formatted as a Frictionless Data package.
Detailed analytical results for archaeological textiles from the Uden–Slabroekse Heide elite burial (Early Iron Age, Netherlands)
<p>The dataset contains 3D volume of the mineralised textile, showing four superimposed layers. The textile layer was segmented on the basis of the fibre orientation used for the 3D rendering of the vanished colour pattern.</p>
University Archives Literature Review Dataset | A detailed exploration of the produced research studies of the last 15 years
<p>Based on this retrieved dataset, an effort is given to provide clarity, up-to-date knowledge, and ongoing insights into University Archives research studies over the last 15 years. This will give a clear view to the university archivists and researchers regarding the nature of the topic and how it is investigated and evolved until now by prior relevant research efforts (Hart, 2018). To achieve this goal, in this literature review, we deployed the proposed methodology of Kitchenham (2004). This methodology involves five sequential steps: i)the identification of related studies, ii)the studies selection, iii)the studies quality assessment, the iv)data extraction and data synthesis.</p> <p>The dataset contains information regarding 49 papers and their metadata. That is, title of the study, the year of publication, the type of publication, document type (journal, conference paper, or book chapter etc.), the URL link where the study could be found, the full citation at APA style, and lastly the abstract.of each research document.</p>
FrcuR!l 1.-Details of Callirhipis ouoi: a, male genitalia, dorsal view; b, ventral elements of larval head; c, caudal tergite of male in Rhipiceridae Of Guam
FrcuR!l 1.-Details of Callirhipis ouoi: a, male genitalia, dorsal view; b, ventral elements of larval head; c, caudal tergite of male
FrcuR!l 1.-Details of Callirhipis ouoi: a, male genitalia, dorsal view; b, ventral elements of larval head; c, caudal tergite of male. in Rhipiceridae Of Guam
FrcuR!l 1.-Details of Callirhipis ouoi: a, male genitalia, dorsal view; b, ventral elements of larval head; c, caudal tergite of male.
Fig 1 in A detailed illustrated description of Palearctic species Magwengiella (=Listrocalus) nycthemerops (HEINRICH, 1978). Notes on transformation of pigmental coloration of type specimens (Hymenoptera, Ichneumonidae, Ichneumoninae, Ctenocalini)
Fig 1: Magwengiella (=Listrocalus) nycthemerops (HEINRICH, 1978) paratype from ZSM (photo of St. Schmidt 06.09.2013).
Fig. 14–19. Enithares Spinola, 1837, morphological details. 14–15 in Notes on Notonectidae (Hemiptera: Heteroptera) from southeastern Asia, mostly from Brunei and the Philippines
Fig. 14–19. Enithares Spinola, 1837, morphological details. 14–15 – lateral arms of basal plate of aedeagus, left aspect: 14 – E. freyi Brooks, 1948; 15 – E. quadrispinosa Lansbury, 1967. 16–17 – left mesotrochanter of female, ventral aspect: 16 – E. intha Paiva, 1918 (sp = spur); 17 – E. sinica (Stål, 1854). 18–19 – metaxiphus of female, ventral aspect: 18 – E. intha; 19 – E. sinica.
Fig. 8 in Scanning the Hyocephalidae: details of their external morphology with respect to phylogenetic relationships within Eutrichophora (Hemiptera: Heteroptera)*
Fig. 8. Abdominal trichobothria in Hyocephalus aprugnus Bergroth, 1906, female: A – position of trichobothria on sternites III and IV (AT3 and AT4) (magnification 45×); B – AT3 (300×); C–D – AT4 (C – 400×, D – 800×); E–G – AT5 (E – 160×, F – 300×, G – 800×); H – AT6 (300×). Abbreviations: AT3–4 – abdominal trichobothria on sternites III to IV; bo – bothrium; cs – crocus-like structure; sp – spiracle; tr – trichome. Scale bars: 50 μm (D, G), 0.1 mm (B–C, F, H), 0.3 mm (E), 1 mm (A).
Fig. 5 in Scanning the Hyocephalidae: details of their external morphology with respect to phylogenetic relationships within Eutrichophora (Hemiptera: Heteroptera)*
Fig. 5. External scent efferent system of dorsoabdominal glands in Hyocephalidae. A–F – Hyocephalus aprugnus Bergroth, 1906, female: A – abdomen, dorsal view (magnification 19×); B, D, E – dorsoabdominal scent efferent system on tergites IV–V (B – 47×, D – 200×, E – 400×); C, F – dorsoabdominal scent efferent system on tergites V–VI (C – 80×, F – 200×). G–K – Maevius luridus Brailovsky, 2002, male: abdomen, dorsal view (30×); H – suture between tergites III and IV (42×); I, K – dorsoabdominal scent efferent system on tergites IV–V (I – 130×, K – 500×); J – dorsoabdominal scent efferent system on tergites V–VI (120×). Abbreviations: DAGIV–V, DAGV–VI – scent efferent system of dorsoabdominal scent glands on tergites IV–V and V–VI, respectively. Scale bars: 0.1 mm (E, K), 0.2 mm (D, F), 0.4 mm (I–J), 0.5 mm (C), 1 mm (B, G–H), 3 mm (A).
Fig. 4 in Scanning the Hyocephalidae: details of their external morphology with respect to phylogenetic relationships within Eutrichophora (Hemiptera: Heteroptera)*
Fig. 4. Ultrastructure of thoracic spiracles in Hyocephalidae. A–C – Hyocephalus aprugnus Bergroth, 1906, male: A – mesothoracic spiracle (magnifi- cation 400×); B–C – metathoracic spiracle (B – 200×, C – 500×). D – Maevius luridus Brailovsky, 2002: metathoracic spiracle (500×). Scale bars: 0.1 mm (A, C–D), 0.2 mm (B).
Fig. 2 in Scanning the Hyocephalidae: details of their external morphology with respect to phylogenetic relationships within Eutrichophora (Hemiptera: Heteroptera)*
Fig. 2. Head and prothorax of Hyocephalidae. A–C – Maevius luridus Brailovsky, 2002, male: A – dorsal habitus (magnification 13×); B – head and pronotum, dorsal view (32×), C – apex of profemur with spines (130×). D–H – Hyocephalus aprugnus Bergroth, 1906, female: D–F – head and prothorax (D – dorsal view, 23×; E – lateral view, 21×; F – ventral view, 23×); G–H – head (G – dorsal view, 40×; H – lateral view, 30×). Scale bars: 0.4 mm (C), 1 mm (B, G–H), 2 mm (D–F), 4 mm (A).
Fig. 1 in Scanning the Hyocephalidae: details of their external morphology with respect to phylogenetic relationships within Eutrichophora (Hemiptera: Heteroptera)*
Fig. 1. Dorsal habitus of Hyocephalidae. A – Hyocephalus aprugnus Bergroth, 1906, female (15.4 mm); B – Maevius luridus Brailovsky, 2002, male (8.7 mm).
Fig. 7 in Scanning the Hyocephalidae: details of their external morphology with respect to phylogenetic relationships within Eutrichophora (Hemiptera: Heteroptera)*
Fig. 7. Schematic drawing of abdomen of Maevius luridus Brailovsky, 2002, male, in lateral view. Scale bar: 1 mm.Abbreviations: AT3–7a–c – particular positions of abdominal trichobothria on sternites III–VII; sml – submarginal depressed line; sp – spiracle; tss – tergosternal suture.
Fig. 3 in Scanning the Hyocephalidae: details of their external morphology with respect to phylogenetic relationships within Eutrichophora (Hemiptera: Heteroptera)*
Fig. 3. External scent efferent system of metathoracic glands in Hyocephalidae. A–E – Hyocephalus aprugnus Bergroth, 1906 (A–D – male, E – female): A – meso- and metathorax, lateral view (magnification 37×); B – external scent efferent system, lateral view (60×); C – ostiole and peritreme, lateral view (180×); D – peritreme, lateral view (300×); E – ostiole and peritreme, ventral view (180×). F–H – Maevius luridus Brailovsky, 2002: F – external scent efferent system, lateral view (85×); G – ostiole and peritreme, lateral view (250×); H – peritreme, lateral view (550×).Abbreviations: mss – mesothoracic spiracle, mts – metathoracic spiracle, o – ostiole, vs – vestibular scar. Scale bars: 0.1 mm (D, H), 0.2 mm (G), 0.3 mm (C, E), 0.5 mm (B, F), 1 mm (A).
Fig. 6 in Scanning the Hyocephalidae: details of their external morphology with respect to phylogenetic relationships within Eutrichophora (Hemiptera: Heteroptera)*
Fig. 6. Strainer organ in Hyocephalidae. A–D – Hyocephalus aprugnus Bergroth, 1906: A – female, abdomen, lateral view (magnification 18×); B–D – strainer (B – male, 150×; C – female, 150×; D – female, 600×). E – Maevius luridus Brailovsky, 2002, male, strainer (370×). F – Maevius indecorus (Stål, 1874), female, strainer (250×).Abbreviations:AT3–7 – abdominal trichobothria on sternites III–VII; cp – closed pore; op – open pore; st – strainer. Scale bars: 50 μm (D), 0.1 mm (E), 0.2 mm (F), 0.3 mm (B–C), 3 mm (A).
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.