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Figs 4–8 in On the African crab spider genus Geraesta Simon, 1889 (Araneae: Thomisidae)
Figs 4–8. (4) Geraesta ansieae sp. n. (MRAC 239298) and (5–8) G. congoensis (Lessert, 1943) (MRAC 239299): (4, 5) left male palp, ventral view; (6) epigynum, ventral view; (7) vulva, dorsal view; (8) vulva, ventral view. Abbreviations: C – conductor; CD – copulatory duct; CO – copulatory opening; E – embolus; MA – median apophysis; RTA – retrolateral tibial apophysis; S – spermatheca. Scale bars = 0.1 mm (5), 0.2 mm (4, 6–8).
FIGS. 1–8. Scopaeus. Figs. 1–4. habitus. 1. S in Generic Revisions Of The Scopaeina And The Sphaeronina (Coleoptera: Staphylinidae: Paederinae: Lathrobiini)
FIGS. 1–8. Scopaeus. Figs. 1–4. habitus. 1. S. chiriquensis sp. grp., S. sp. 2. S. frater. 3. nitidus sp. grp., S. laxus. 4. S. "reticulate" sp. grp., S. sp. 5, 6. S. opacus sp. grp., S. elaboratus. 5. Habitus. 6. Labrum, dorsal, setae omitted. 7, 8. S. nevermanni sp. grp., S. sp. 7. Head, dorsal, marginal setae omitted. 8. Habitus, prolegs not visible.
Рис. 1–8. КопуΛятивные органы Zelotes abdurakhmanovi sp. n. (1–6) и Zelotes mikhailovi (7–8). 1–2, 7 – эпигина, вентраΛьно; 3–6, 8 – паΛьпа и буΛьбус самцов: 3 – паΛьпа, вентраΛьно (MA – меΔиаΛьный отросток, E – эмбоΛюс, TA – терминаΛьный отросток), 4 – паΛьпа, ретроΛатераΛьно, 5 – апикаΛьная часть буΛьбуса, ΔорсаΛьно, 6 – буΛьбус, проΛатераΛьно, 8 – буΛьбус, ΔорсаΛьно. Figs 1–8. Copulatory organs of Zelotes abdurakhmanovi sp. n. (1–6) and Zelotes mikhailovi (7–8). 1–2, 7 – epigyne, ventral view; 3–6, 8 – male palp and bulbus: 3 – palp, ventral view (MA – median apohysis, E – embolus, TA – terminal apophysis), 4 – palp, retrolateral view, 5 – apical part of bulbus, dorsal view, 6 – bulbus, prolateral view, 8 – bulbus, dorsal view. in A new species of spiders of the genus Zelotes Gistel, 1848 (Aranei: Gnaphosidae) from the North-East Pre-Caspian region
Рис. 1–8. КопуΛятивные органы Zelotes abdurakhmanovi sp. n. (1–6) и Zelotes mikhailovi (7–8). 1–2, 7 – эпигина, вентраΛьно; 3–6, 8 – паΛьпа и буΛьбус самцов: 3 – паΛьпа, вентраΛьно (MA – меΔиаΛьный отросток, E – эмбоΛюс, TA – терминаΛьный отросток), 4 – паΛьпа, ретроΛатераΛьно, 5 – апикаΛьная часть буΛьбуса, ΔорсаΛьно, 6 – буΛьбус, проΛатераΛьно, 8 – буΛьбус, ΔорсаΛьно. Figs 1–8. Copulatory organs of Zelotes abdurakhmanovi sp. n. (1–6) and Zelotes mikhailovi (7–8). 1–2, 7 – epigyne, ventral view; 3–6, 8 – male palp and bulbus: 3 – palp, ventral view (MA – median apohysis, E – embolus, TA – terminal apophysis), 4 – palp, retrolateral view, 5 – apical part of bulbus, dorsal view, 6 – bulbus, prolateral view, 8 – bulbus, dorsal view.
Рис. 1–10. КопуΛятивные органы и ΔетаΛи строения паΛьп самцов Haplodrassus alexeevi sp. n. (1, 3, 4, 8), H. umbratilis (2, 5, 6, 9) и H. soerenseni (7, 10). 1–2 – паΛьпа, вентраΛьно; 3, 5, 7 – буΛьбус, вентраΛьно; 4, 6 – буΛьбус, вентро-ΛатераΛьно; 8–10 – отросток гоΛени паΛьпы. Масштабные Λинейки 0.2 мм. Figs 1–10. Copulatory organs and details of structure of male palps of Haplodrassus alexeevi sp. n. (1, 3, 4, 8), H. umbratilis (2, 5, 6, 9) and H. soerenseni (7, 10). 1–2 – palp, ventral view; 3, 5, 7 – bulbus, ventral view; 4, 6 – bulbus, ventro-lateral view; 8–10 – tibial apophysis. Scale bars 0.2 mm. in A new species of spiders of the genus Haplodrassus Chamberlin, 1922 (Aranei: Gnaphosidae) from the Northern Pre-Caspian area
Рис. 1–10. КопуΛятивные органы и ΔетаΛи строения паΛьп самцов Haplodrassus alexeevi sp. n. (1, 3, 4, 8), H. umbratilis (2, 5, 6, 9) и H. soerenseni (7, 10). 1–2 – паΛьпа, вентраΛьно; 3, 5, 7 – буΛьбус, вентраΛьно; 4, 6 – буΛьбус, вентро-ΛатераΛьно; 8–10 – отросток гоΛени паΛьпы. Масштабные Λинейки 0.2 мм. Figs 1–10. Copulatory organs and details of structure of male palps of Haplodrassus alexeevi sp. n. (1, 3, 4, 8), H. umbratilis (2, 5, 6, 9) and H. soerenseni (7, 10). 1–2 – palp, ventral view; 3, 5, 7 – bulbus, ventral view; 4, 6 – bulbus, ventro-lateral view; 8–10 – tibial apophysis. Scale bars 0.2 mm.
Рис. 1–9. Leptacinus spp., имаго и генитаΛии самцов. 1, 5–6 – L. stradomskyi sp. n.; 2–4 – L. batychrus; 7–9 – L. khachikovi, гоΛотип. 1–2, 7 – габитус; 3–6, 8–9 – генитаΛии и их структуры (6 – вентроапикаΛьный скΛерит, 9 – извитой канаΛ). Figs 1–9. Leptacinus spp., imagoes and male genitalia. 1, 5–6 – L. stradomskyi sp. n.; 2–4 – L. batychrus; 7–9 – L. khachikovi, holotype. 1–2, 7 – habitus; 3–6, 8–9 – genitalia and their structures (6 – ventralapical sclerit, 9 – curved duct). in A new species of the genus Leptacinus Erichson, 1839 (Coleoptera: Staphylinidae: Xantholininae) from Rostov Region of Russia
Рис. 1–9. Leptacinus spp., имаго и генитаΛии самцов. 1, 5–6 – L. stradomskyi sp. n.; 2–4 – L. batychrus; 7–9 – L. khachikovi, гоΛотип. 1–2, 7 – габитус; 3–6, 8–9 – генитаΛии и их структуры (6 – вентроапикаΛьный скΛерит, 9 – извитой канаΛ). Figs 1–9. Leptacinus spp., imagoes and male genitalia. 1, 5–6 – L. stradomskyi sp. n.; 2–4 – L. batychrus; 7–9 – L. khachikovi, holotype. 1–2, 7 – habitus; 3–6, 8–9 – genitalia and their structures (6 – ventralapical sclerit, 9 – curved duct).
Fig. 70. Begonia wollnyi Herzog. 1. Habit. 2. Leaf. 3. Staminate flower, front view. 4. Androecium, side view. 5–7. Stamens, side view. 8. Pistillate flower, side view. 9 in The genus Begonia (Begoniaceae) in Peru
Fig. 70. Begonia wollnyi Herzog. 1. Habit. 2. Leaf. 3. Staminate flower, front view. 4. Androecium, side view. 5–7. Stamens, side view. 8. Pistillate flower, side view. 9. Cross section of ovary, side view. 10–11. Style, front and back view. 12. Cross section of ovary. Reproduction of an illustration of Begonia williamsii Rusby & Nash by an unknown artist reproduced from Nash (1916: pl. 29) at the Royal Botanic Garden Edinburgh.
low Cerro Gordo; StL 2, Cerro Gordo sandstone; StL 3, between Cerro Gordo and Chunchullo; StL 4, Chunchullo sandstone; StL 5, bed set between Chunchullo and Tatacoa; StL 6, Tatacoa sandstone; StL 7, bed set below Cerbatana conglomerate; StL 8, Cerbatana conglomerate; StL 9, Monkey beds; StL 10, bed set above Monkey beds; StL 12, bed set above Fish bed; StL 14, bed set below La Venta red beds; StL 15, La Venta red beds; StL 16, bed set between La Venta red beds and El Cardón red beds; StL 17, El Cardón red beds; StL 18, San Francisco sandstone; StL 19, Polonia red beds; D, reconstruction of the head of Neodolodus colombianus based on the 3D model of the almost complete skull of the specimen VPPLT 1696. Abbreviations: Fm, Formation; St m, Stratigraphic meter. Reconstruction of N. colombianus made by Tatsuya Shimura. in New remains of Neotropical bunodont litopterns and the systematics of Megadolodinae (Mammalia: Litopterna)
low Cerro Gordo; StL 2, Cerro Gordo sandstone; StL 3, between Cerro Gordo and Chunchullo; StL 4, Chunchullo sandstone; StL 5, bed set between Chunchullo and Tatacoa; StL 6, Tatacoa sandstone; StL 7, bed set below Cerbatana conglomerate; StL 8, Cerbatana conglomerate; StL 9, Monkey beds; StL 10, bed set above Monkey beds; StL 12, bed set above Fish bed; StL 14, bed set below La Venta red beds; StL 15, La Venta red beds; StL 16, bed set between La Venta red beds and El Cardón red beds; StL 17, El Cardón red beds; StL 18, San Francisco sandstone; StL 19, Polonia red beds; D, reconstruction of the head of Neodolodus colombianus based on the 3D model of the almost complete skull of the specimen VPPLT 1696. Abbreviations: Fm, Formation; St m, Stratigraphic meter. Reconstruction of N. colombianus made by Tatsuya Shimura.
Dawidziuk, 2002, C. praedubeli/C. deubeli Biozone, Arctic Canada. 28. Spinograptus spinosus Wood, 1900, L. nilssoni Biozone, EEP, Poland. 29. Spinograptus latespinosus Kozłowska−Dawidziuk, 1997. 30. Spinograptus munchi Eisenack, 1951, C. praedubeli/C. deubeli Biozone, EEP, Poland. 31. Papiliograptus papilio Lenz and Kozłowska−Dawidziuk, 2002, C. praedubeli/C. deubeli Biozone, Arctic Canada. 32. Plectograptus? karlsteinensis Kozłowska−Dawidziuk, Lenz, and Štorch, 2001, C. praedubeli/C. deubeli Biozone, Barrandian. 33. Neogothograptus thorsteinssoni Lenz and Kozłowska−Dawidziuk, 2004, L. progenitor Biozone, Arctic Canada. 34. Neogothograptus alatiformis Lenz and Kozłowska−Dawidziuk, 2004, L. progenitor Biozone, Arctic Canada. 35. Neogothograptus purus Kozłowska−Dawidziuk, 1995, EEP, Poland. 36. Holoretiolites mancki (Münch, 1931). 37. Holoretiolites helenaewitoldi sp. nov., L. progenitor Biozone, EEP, Poland. 38. Plectograptus wimani Eisenack, 1951, N. nilssoni Biozone, Baltic erratic boulder, Poland. 39. Plectograptus robustus Obut and Zaslavskaya, 1983, L. nilssoni Biozone, EEP, Kaliningrad. 40. Plectograptus macilentus Törnquist, 1887, L. scanicus Biozone, Baltic erratic boulder, Poland. 41. Semiplectograptus urbaneki Kozłowska−Dawidziuk, 1995, Cucullograptus hemiaversus/C. aversus Biozone, EEP, Poland. 42. Plectodinemagraptus gracilis Kozłowska−Dawidziuk, 1995, Cucullograptus hemiaversus/C. aversus Biozone, EEP, Poland. Figures adapted from: 1, Melchin (1999); 2, 4–5, Bouček and Münch (1944); 3, holotype photographed by A. Lenz; 6, 9, Bates and Kirk (1992); 7, Bates and Kirk (1997); 8, Štorch (1994); 10–15, 38, 40–42, Kozłowska−Dawidziuk (1995); 16, Kozłowska−Dawidziuk (2001); 17–21, Lenz and Kozłowska−Dawidziuk (2001); 22, 25, Kozłowska−Dawidziuk (1990); 23, 35, photo taken by author; 24, 32, Kozłowska−Dawidziuk et al. (2001); 26, 27, 31, Lenz and Kozłowska−Dawidziuk (2002a); 28, 35, photo taken by author; 29, Kozłowska−Dawidziuk (1997); 30, Kozłowska−Dawidziuk 2002; 36, Kozłowska−Dawidziuk and Lenz (2001); 37, this paper; 39, Obut and Zaslavskaya (1983). Not to scale. Abbreviations: RD, Rhuddanian; SHEIN, Sheinwoodian; GORST, Gorstian; LUDF, Ludfordian. Biozonal scheme after Koren' et al. 1996; Geological time scale by International Commission on Stratigraphy, International Union of Geological Sciences 2004 (www.stratigraphy.org) in Evolution of retiolitid graptolites-a synopsis
Dawidziuk, 2002, C. praedubeli/C. deubeli Biozone, Arctic Canada. 28. Spinograptus spinosus Wood, 1900, L. nilssoni Biozone, EEP, Poland. 29. Spinograptus latespinosus Kozłowska−Dawidziuk, 1997. 30. Spinograptus munchi Eisenack, 1951, C. praedubeli/C. deubeli Biozone, EEP, Poland. 31. Papiliograptus papilio Lenz and Kozłowska−Dawidziuk, 2002, C. praedubeli/C. deubeli Biozone, Arctic Canada. 32. Plectograptus? karlsteinensis Kozłowska−Dawidziuk, Lenz, and Štorch, 2001, C. praedubeli/C. deubeli Biozone, Barrandian. 33. Neogothograptus thorsteinssoni Lenz and Kozłowska−Dawidziuk, 2004, L. progenitor Biozone, Arctic Canada. 34. Neogothograptus alatiformis Lenz and Kozłowska−Dawidziuk, 2004, L. progenitor Biozone, Arctic Canada. 35. Neogothograptus purus Kozłowska−Dawidziuk, 1995, EEP, Poland. 36. Holoretiolites mancki (Münch, 1931). 37. Holoretiolites helenaewitoldi sp. nov., L. progenitor Biozone, EEP, Poland. 38. Plectograptus wimani Eisenack, 1951, N. nilssoni Biozone, Baltic erratic boulder, Poland. 39. Plectograptus robustus Obut and Zaslavskaya, 1983, L. nilssoni Biozone, EEP, Kaliningrad. 40. Plectograptus macilentus Törnquist, 1887, L. scanicus Biozone, Baltic erratic boulder, Poland. 41. Semiplectograptus urbaneki Kozłowska−Dawidziuk, 1995, Cucullograptus hemiaversus/C. aversus Biozone, EEP, Poland. 42. Plectodinemagraptus gracilis Kozłowska−Dawidziuk, 1995, Cucullograptus hemiaversus/C. aversus Biozone, EEP, Poland. Figures adapted from: 1, Melchin (1999); 2, 4–5, Bouček and Münch (1944); 3, holotype photographed by A. Lenz; 6, 9, Bates and Kirk (1992); 7, Bates and Kirk (1997); 8, Štorch (1994); 10–15, 38, 40–42, Kozłowska−Dawidziuk (1995); 16, Kozłowska−Dawidziuk (2001); 17–21, Lenz and Kozłowska−Dawidziuk (2001); 22, 25, Kozłowska−Dawidziuk (1990); 23, 35, photo taken by author; 24, 32, Kozłowska−Dawidziuk et al. (2001); 26, 27, 31, Lenz and Kozłowska−Dawidziuk (2002a); 28, 35, photo taken by author; 29, Kozłowska−Dawidziuk (1997); 30, Kozłowska−Dawidziuk 2002; 36, Kozłowska−Dawidziuk and Lenz (2001); 37, this paper; 39, Obut and Zaslavskaya (1983). Not to scale. Abbreviations: RD, Rhuddanian; SHEIN, Sheinwoodian; GORST, Gorstian; LUDF, Ludfordian. Biozonal scheme after Koren' et al. 1996; Geological time scale by International Commission on Stratigraphy, International Union of Geological Sciences 2004 (www.stratigraphy.org)
Dataset 4 of 8: Particulate matter PM2.5 concentrations in California (2014-2015) (CARB 19RD004)
Open the record for dataset details and reuse information.
Text-figure 4. Mormotomyia hirsuta Austen, 8. Wing. Greatly enlarged. in A Remarkable Semi-Apterous Fly (Diptera) found in a Cave in East Africa, and representing a new Family, Genus, and Species.
Text-figure 4. Mormotomyia hirsuta Austen, 8. Wing. Greatly enlarged.
Fig. 8. Mynonebra opaca Fisher, 1925 in To the knowledge of long-horned beetles (Coleoptera: Cerambycidae) of the Oriental Region (with new synonymy). Part 4
Fig. 8. Mynonebra opaca Fisher, 1925
Figs 1–8. 1–4 in TO THE KNOWLEDGE OF VELVET ANTS OF THE GENERA ARTIOTILLA INVREA, RADOSZKOWSKITILLA LELEJ AND TAIWANOMYRME TSUNEKI (HYMENOPTERA: MUTILLIDAE)
Figs 1–8. 1–4 – Radoszkowskitilla aulica, ♀; 5–8 – Taiwanumyrme cheni sp. n., ♀,
Fig. 8 in Fig. 4 in Fig. 4 in Fig. 3 in Fig. 21. Sesarmops mora n in Paralbunea dayriti
Fig. 8. Number of freshwater fishes of Iran in each IUCN Red List category.
High-throughput combinatorial droplet generation by sequential spraying: Fig 4, Synergism, Synergism Assay (Part 8)
<p>Fluorescent and darkfield images for the synergism droplets of Figure 4 of "High-throughput combinatorial droplet generation by sequential spraying." Accompanying code is found at https://github.com/RenaFukuda99/High-throughput-combinatorial-droplet-generation-by-sequential-spraying. </p>
High-throughput combinatorial droplet generation by sequential spraying: Fig 4, Antagonism, Antagonsim Assay (Part 8)
<p>Fluorescent and darkfield images for the antagonism assay droplets of Figure 4 of "High-throughput combinatorial droplet generation by sequential spraying." Accompanying code is found at https://github.com/RenaFukuda99/High-throughput-combinatorial-droplet-generation-by-sequential-spraying. </p>
Периодическая культура Y. pseudotuberculosis штамма 512-Ib после 10-летнего хранения в полужидком агаре Хоттингера под вазелиновым маслом при температуре 4–8°С (А). Динамика и корреляция между концентрацией вегетативных и VBNC клеток бактерий, а также содержанием кислорода и питательных веществ (источником углеводов) в зависимости от фаз роста при периодическом культивировании (Б)
<p>Периодическая культура <em>Y. pseudotuberculosis</em> штамма 512-Ib после 10-летнего хранения в полужидком агаре Хоттингера под вазелиновым маслом при температуре 4–8°С (<strong>А</strong>). Динамика и корреляция между концентрацией вегетативных и VBNC клеток бактерий, а также содержанием кислорода и питательных веществ (источником углеводов) в зависимости от фаз роста при периодическом культивировании (<strong>Б</strong>)</p>
Single-cell RNA sequencing of mouse embryonic cells from the oocyte, 2-cell, 4-cell, 8-cell, blastocyst, and morula stages
<p>STRT-N is a newly optimized single-cell RNA sequencing method for studies of early genome activation in mammalian preimplantation development. Single embryos from the oocyte, 2-cell, 4-cell, 8-cell, blastocyst, and morula stages were sampled for experiments and were sequenced using STRT-N method. Here is the raw data from STRTN-seq. FASTQ files are available in <a href="https://www.ebi.ac.uk/biostudies/studies/S-BSST976">BioStudies database</a>.</p>
Figures 2–12 in A new specIes of the genus Stereocephalus Lynch, Į8 8 4 from Paraguay (Coleoptera StaphylInIdae PaederInae)
Figures 2–12. Aedeagi, in ventral and lateral view, of Stereocephalus (eccept new species, all by Herman, 1979). Figs. 2, 3: S. agostii n. sp., holotype. Figs. 4, 5: S. ruhus. Figs. 6, 7: S. myrigeus. Figs. 8, 9: S. seriatipennis. Figs. 10-12: S. rinnanus.
FIGURES 4–8 in Cybaeus (Araneae: Cybaeidae): the adenes species group of the Californian clade
FIGURES 4–8. Cybaeus adenes, females (4–6 holotype; 7–8 from San Geronimo, California), copulatory organ (4 epigynum, ventral; 5 vulva, ventral; 6 same, dorsal; 7 atrium, ventral; 8 vulva, dorsal). AT—atrium, BG—Bennett's gland, BS—base of spermatheca, CD—copulatory duct, HS—head of spermatheca, SS—stalk of spermatheca. Scale bars: 0.1 mm.
FIGURES 1–8. Figs. 1–2. Ropalidia binghami, female. 1. Head, frontal view. 2. Habitus. Figs. 3–4. Ropalidia parartifex, female. 1. Head, frontal view. 2. Habitus. Figs. 5–6. Ropalidia sumatrae, female. 1. Head, frontal view. 2. Habitus. Figs. 7–8. Ropalidia variegata, female. 1. Head, frontal view. 2 in Additional knowledge respecting taxonomy of the social wasp genus Ropalidia (Hymenoptera: Vespidae: Polistinae) from Vietnam, with new records of three species and an updated key to species
FIGURES 1–8. Figs. 1–2. Ropalidia binghami, female. 1. Head, frontal view. 2. Habitus. Figs. 3–4. Ropalidia parartifex, female. 1. Head, frontal view. 2. Habitus. Figs. 5–6. Ropalidia sumatrae, female. 1. Head, frontal view. 2. Habitus. Figs. 7–8. Ropalidia variegata, female. 1. Head, frontal view. 2. Habitus. Scale: 1mm
ScienceDex guides
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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.