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zenodo40/100

Text-fig. 14. Bolshoy Kuvshin, Frentsevka Formation, early-middle Albian. a, e: Asiatifolium elegans G.SUN, SHUANG X.GUO et SHAO L.ZHENG, a – spec. IBSS 320-8, e – spec. IBSS 320-75; b, c: Jixia pinnatipartita SHUANG X.GUO et G.SUN, b – spec. IBSS 320-359, c – spec. IBSS 320-367; d: Achaenocarpites capitellatus KRASSILOV et VOLYNETS, spec. IBSS 320-120; f: Ternaricarpites floribundus KRASSILOV et VOLYNETS, spec. IBSS 320-10; g: undescribed species, spec. IBSS 320-137. Scale bar 1 cm in a, e–g and 5 mm in b–d. in Angiosperm Diversification In The Early Cretaceous Of Primorye, Far East Of Russia

Text-fig. 14. Bolshoy Kuvshin, Frentsevka Formation, early-middle Albian. a, e: Asiatifolium elegans G.SUN, SHUANG X.GUO et SHAO L.ZHENG, a – spec. IBSS 320-8, e – spec. IBSS 320-75; b, c: Jixia pinnatipartita SHUANG X.GUO et G.SUN, b – spec. IBSS 320-359, c – spec. IBSS 320-367; d: Achaenocarpites capitellatus KRASSILOV et VOLYNETS, spec. IBSS 320-120; f: Ternaricarpites floribundus KRASSILOV et VOLYNETS, spec. IBSS 320-10; g: undescribed species, spec. IBSS 320-137. Scale bar 1 cm in a, e–g and 5 mm in b–d.

opencc-by-4.0Dec 2021View details →
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Text-fig. 11. a: Sapindopsis sp., 3rd Kamenka, Frentsevka Formation, early-middle Albian, spec. IBSS 40-1; b, c: Trochodendroides sp., Konstantinovka, Galenki Formation, early-middle Albian, spec. IBBS 11/145, b – upper part of leaf, c – crenate margin; d: Dicotylophyllum sp. 2, Konstantinovka, Galenki Formation, early-middle Albian, spec. IBBS 11/133; e: Sapindopsis cf. angusta (HEER) SEWARD et V.M.CONWAY, Andreev Inlet, Frentsevka Formation, early-middle Albian, spec. IBSS 28/104; f: Sapindopsis variabilis FONTAINE, Bikin River, Alchan Formation, early-middle Albian, spec. IBSS 4561/124-1; g: Laurophyllum sp., Konstantinovka, Galenki Formation, early-middle Albian, spec. IBBS 11/131. Scale bar 1 cm in a, b, d, f, g and 5 mm in c, e. in Angiosperm Diversification In The Early Cretaceous Of Primorye, Far East Of Russia

Text-fig. 11. a: Sapindopsis sp., 3rd Kamenka, Frentsevka Formation, early-middle Albian, spec. IBSS 40-1; b, c: Trochodendroides sp., Konstantinovka, Galenki Formation, early-middle Albian, spec. IBBS 11/145, b – upper part of leaf, c – crenate margin; d: Dicotylophyllum sp. 2, Konstantinovka, Galenki Formation, early-middle Albian, spec. IBBS 11/133; e: Sapindopsis cf. angusta (HEER) SEWARD et V.M.CONWAY, Andreev Inlet, Frentsevka Formation, early-middle Albian, spec. IBSS 28/104; f: Sapindopsis variabilis FONTAINE, Bikin River, Alchan Formation, early-middle Albian, spec. IBSS 4561/124-1; g: Laurophyllum sp., Konstantinovka, Galenki Formation, early-middle Albian, spec. IBBS 11/131. Scale bar 1 cm in a, b, d, f, g and 5 mm in c, e.

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Text-fig. 5. a: coal seam "Rabochy" with three tuff layers in upper part of Lipovtsy Formation in Porechye open pit coal mine; b: same section, enlarged view, upper tuff layer, sample 160/4 site; c: tuff layer in upper part of Frentsevka Formation below conglomerate at Palets Cape; d: same section, enlarged view, sample 1 site. in Angiosperm Diversification In The Early Cretaceous Of Primorye, Far East Of Russia

Text-fig. 5. a: coal seam "Rabochy" with three tuff layers in upper part of Lipovtsy Formation in Porechye open pit coal mine; b: same section, enlarged view, upper tuff layer, sample 160/4 site; c: tuff layer in upper part of Frentsevka Formation below conglomerate at Palets Cape; d: same section, enlarged view, sample 1 site.

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Text-fig. 17. Angiosperm leaf morphotypes in late Aptian and early-middle Albian of Primorye. a, k: Dicotylophyllum sp. 1, 2; b: Araliaephyllum vittenburgii GOLOVN. et VOLYNETS; c: Araliaephyllum ussuriense (KRASSILOV) GOLOVN.; d: Trochodendroides sp., e: undescribed species, spec. IBSS 320-137; f: Asiatifolium elegans G.SUN, SHUANG X.GUO et SHAO L.ZHENG; g: Sapindopsis cf. angusta (HEER) SEWARD et V.M.CONWAY; h: Sapindopsis sp.; i: Achaenocarpites capitellatus KRASSILOV et VOLYNETS; j: Jixia pinnatipartita SHUANG X.GUO et G.SUN; l: Pandanites ahnertii (KRYSHT.) GOLOVN.; m: Araliaephyllum luciferum (KRYSHT.) GOLOVN. in Angiosperm Diversification In The Early Cretaceous Of Primorye, Far East Of Russia

Text-fig. 17. Angiosperm leaf morphotypes in late Aptian and early-middle Albian of Primorye. a, k: Dicotylophyllum sp. 1, 2; b: Araliaephyllum vittenburgii GOLOVN. et VOLYNETS; c: Araliaephyllum ussuriense (KRASSILOV) GOLOVN.; d: Trochodendroides sp., e: undescribed species, spec. IBSS 320-137; f: Asiatifolium elegans G.SUN, SHUANG X.GUO et SHAO L.ZHENG; g: Sapindopsis cf. angusta (HEER) SEWARD et V.M.CONWAY; h: Sapindopsis sp.; i: Achaenocarpites capitellatus KRASSILOV et VOLYNETS; j: Jixia pinnatipartita SHUANG X.GUO et G.SUN; l: Pandanites ahnertii (KRYSHT.) GOLOVN.; m: Araliaephyllum luciferum (KRYSHT.) GOLOVN.

opencc-by-4.0Dec 2021View details →
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Text-fig. 12. a: Artocarpidium sp., Andreev Inlet, Frentsevka Formation, early-middle Albian, spec. IBSS 28-105; b–d: Onoana nicanica KRASSILOV, Fedorovsky Rudnik, Lipovtsy Formation, Aptian, spec. IBSS 63-83; e: Araliaephyllum ussuriense (KRASSILOV) GOLOVN., Andreev Inlet, Frentsevka Formation, early-middle Albian, e1 – spec. IBSS 28-102/1, lectotype, e2 – spec. IBSS 28-102/2. Scale bar 1 cm in a, d, e and 5 mm in b, c. in Angiosperm Diversification In The Early Cretaceous Of Primorye, Far East Of Russia

Text-fig. 12. a: Artocarpidium sp., Andreev Inlet, Frentsevka Formation, early-middle Albian, spec. IBSS 28-105; b–d: Onoana nicanica KRASSILOV, Fedorovsky Rudnik, Lipovtsy Formation, Aptian, spec. IBSS 63-83; e: Araliaephyllum ussuriense (KRASSILOV) GOLOVN., Andreev Inlet, Frentsevka Formation, early-middle Albian, e1 – spec. IBSS 28-102/1, lectotype, e2 – spec. IBSS 28-102/2. Scale bar 1 cm in a, d, e and 5 mm in b, c.

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Text-fig. 9. a–d: Nyssidium orientale SAMYLINA, Partizansk, Starosuchan Formation, Barremian, a – spec. BIN 506/3749, general view of four fruits, b1 – spec. BIN 506/3749-1, holotype, b2 – spec. BIN 506/3749-2, c – spec. BIN 506/3749-6, d – spec. BIN 506/3749-5; e–f: Cercidiphyllum sujfunense KRASSILOV, Konstantinovka, Galenki Formation, early-middle Albian, e – spec. IBSS 11-135, fruit, f – spec. IBSS 11-134, leaf, holotype. Scale bar 5 mm in a, e, f and 2 mm in b–d. in Angiosperm Diversification In The Early Cretaceous Of Primorye, Far East Of Russia

Text-fig. 9. a–d: Nyssidium orientale SAMYLINA, Partizansk, Starosuchan Formation, Barremian, a – spec. BIN 506/3749, general view of four fruits, b1 – spec. BIN 506/3749-1, holotype, b2 – spec. BIN 506/3749-2, c – spec. BIN 506/3749-6, d – spec. BIN 506/3749-5; e–f: Cercidiphyllum sujfunense KRASSILOV, Konstantinovka, Galenki Formation, early-middle Albian, e – spec. IBSS 11-135, fruit, f – spec. IBSS 11-134, leaf, holotype. Scale bar 5 mm in a, e, f and 2 mm in b–d.

opencc-by-4.0Dec 2021View details →
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Text-fig. 10. a–d: Araliaephyllum luciferum (KRYSHT.) GOLOVN., Partizansk, Severosuchan Formation, Aptian, a – spec. TSNIGRM 3013/1, lectotype, b – spec TSNIGRM 3013/2, c – spec. TSNIGRM 3013/4, d – spec. TSNIGRM 3013/3; e, j: Pandanites ahnertii (KRYSHT.) GOLOVN., Konstantinovka, Lipovtsy Formation, Aptian, TSNIGRM 3013/5, e – fragment of leaf margin, j – general view, j1 – lectotype, j2 – leaf, figured in (e); f: Araliaephyllum ussuriense (KRASSILOV) GOLOVN., Andreev Inlet, Frentsevka Formation, early-middle Albian, spec. IBBS 28/103; g: Araliaephyllum vittenburgii GOLOVN. et VOLYNETS, Podgorodenka coalfield, Galenki Formation, early-middle Albian, spec. IBBS 41/1, g1 – spec. IBBS 41/1a, holotype, g2 – spec. IBBS 41/1b; h: Dicotylophyllum sp. 1, Podgorodenka coalfield, Lipovtsy Formation, Aptian, spec. IBBS 28L-4; i: Sapindopsis sp., 3rd Kamenka, Frentsevka Formation, early-middle Albian, spec. IBSS 325/8. Scale bar 5 mm in a–h and 1 cm in i, j. in Angiosperm Diversification In The Early Cretaceous Of Primorye, Far East Of Russia

Text-fig. 10. a–d: Araliaephyllum luciferum (KRYSHT.) GOLOVN., Partizansk, Severosuchan Formation, Aptian, a – spec. TSNIGRM 3013/1, lectotype, b – spec TSNIGRM 3013/2, c – spec. TSNIGRM 3013/4, d – spec. TSNIGRM 3013/3; e, j: Pandanites ahnertii (KRYSHT.) GOLOVN., Konstantinovka, Lipovtsy Formation, Aptian, TSNIGRM 3013/5, e – fragment of leaf margin, j – general view, j1 – lectotype, j2 – leaf, figured in (e); f: Araliaephyllum ussuriense (KRASSILOV) GOLOVN., Andreev Inlet, Frentsevka Formation, early-middle Albian, spec. IBBS 28/103; g: Araliaephyllum vittenburgii GOLOVN. et VOLYNETS, Podgorodenka coalfield, Galenki Formation, early-middle Albian, spec. IBBS 41/1, g1 – spec. IBBS 41/1a, holotype, g2 – spec. IBBS 41/1b; h: Dicotylophyllum sp. 1, Podgorodenka coalfield, Lipovtsy Formation, Aptian, spec. IBBS 28L-4; i: Sapindopsis sp., 3rd Kamenka, Frentsevka Formation, early-middle Albian, spec. IBSS 325/8. Scale bar 5 mm in a–h and 1 cm in i, j.

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→ Fig. 9. Antiarchan fish Bothriolepis leptocheira jeremejevi (Rohon, 1900), Sosnogorsk locality, Sosnogorsk Formation, lowermost Famennian, anterior median dorsal (A–G) and posterior median dorsal (H–M) plates of the trunk armour. A. IG KSC 155/5 in dorsal (A1) and visceral (A2) views. B. IG KSC 155/108 in dorsal (B1) and visceral (B2) views. C. IG KSC 155/97 in dorsal view. D. IG KSC 155/113 in dorsal (D1) and visceral (D2) views. E. IG KSC 155/140 in dorsal (E1) and visceral (E2) views. F. Impression of the dorsal surface of IG KSC 155/42. G. IG KSC 155/44 in dorsal view. H. Fragment of IG KSC 155/7 in dorsal view. I. IG KSC 155/1 in dorsal (I1) and visceral (I2) views. J. IG KSC 155/71 in dorsal view. K. Slightly deformed IG KSC 155/70 in dorsal (K1) and visceral (K2) views. L. IG KSC 155/158 in dorsal view. M. IG KSC 155/157 in dorsal (M1) and visceral (M2) views. Abbreviations: ADL, anterior dorso-lateral plate; alr, postlevator thickening; AMD, anterior median dorsal plate; cf.ADL, cf.AMD, and cf.MxL, area overlapping ADL, AMD or MxL respectively; cr.tp, posterior transversal internal crest; dlg1 and dlg2, anterior and posterior oblique dorsal sensory line groove; dma, tergal angle; dmr, dorsal median ridge; f.retr, levator fossa; grm, ventral median groove; l, lateral corner; mvr, median ventral ridge; MxL, mixilateral plate; npn, postnuchal notch; oa.ADL, oa.MxL and oa.PMD, area overlapped by ADL, MxL or PMD respectively; pa, posterior corner; pma, posterior marginal area; PMD, posterior median dorsal plate; pr.p, posterior process of AMD; pr.pl, external postlevator process; prv2, posterior ventral process of dorsal wall of trunk armour; pt1 and pt2, anterior and posterior ventral pit; pua, posterior unornamented area of PMD; rf, "round fossula"; sna, supranuchal area; tb, ventral tuberosity. in A new assessment of the Late Devonian antiarchan fish Bothriolepis leptocheira from South Timan (Russia) and the biotic crisis near the Frasnian-Famennian boundary

→ Fig. 9. Antiarchan fish Bothriolepis leptocheira jeremejevi (Rohon, 1900), Sosnogorsk locality, Sosnogorsk Formation, lowermost Famennian, anterior median dorsal (A–G) and posterior median dorsal (H–M) plates of the trunk armour. A. IG KSC 155/5 in dorsal (A1) and visceral (A2) views. B. IG KSC 155/108 in dorsal (B1) and visceral (B2) views. C. IG KSC 155/97 in dorsal view. D. IG KSC 155/113 in dorsal (D1) and visceral (D2) views. E. IG KSC 155/140 in dorsal (E1) and visceral (E2) views. F. Impression of the dorsal surface of IG KSC 155/42. G. IG KSC 155/44 in dorsal view. H. Fragment of IG KSC 155/7 in dorsal view. I. IG KSC 155/1 in dorsal (I1) and visceral (I2) views. J. IG KSC 155/71 in dorsal view. K. Slightly deformed IG KSC 155/70 in dorsal (K1) and visceral (K2) views. L. IG KSC 155/158 in dorsal view. M. IG KSC 155/157 in dorsal (M1) and visceral (M2) views. Abbreviations: ADL, anterior dorso-lateral plate; alr, postlevator thickening; AMD, anterior median dorsal plate; cf.ADL, cf.AMD, and cf.MxL, area overlapping ADL, AMD or MxL respectively; cr.tp, posterior transversal internal crest; dlg1 and dlg2, anterior and posterior oblique dorsal sensory line groove; dma, tergal angle; dmr, dorsal median ridge; f.retr, levator fossa; grm, ventral median groove; l, lateral corner; mvr, median ventral ridge; MxL, mixilateral plate; npn, postnuchal notch; oa.ADL, oa.MxL and oa.PMD, area overlapped by ADL, MxL or PMD respectively; pa, posterior corner; pma, posterior marginal area; PMD, posterior median dorsal plate; pr.p, posterior process of AMD; pr.pl, external postlevator process; prv2, posterior ventral process of dorsal wall of trunk armour; pt1 and pt2, anterior and posterior ventral pit; pua, posterior unornamented area of PMD; rf, "round fossula"; sna, supranuchal area; tb, ventral tuberosity.

opencc-by-4.0Feb 2017View details →
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FIGURE 4 in Late Pleistocene insects from the Dubrovino site at Ob River (West Siberia, Russia) and their paleoenvironmental significance

FIGURE 4. Subfossil beetle fragments from the Dubrovino assemblage; elytra (1-2, 7, 11, 13, 17), pronotum (3-4, 6, 8, 15), head (5, 9, 14, 16), and rostrum (10, 12). 1, Otiorhynchus altaicus Stierlin, 1861; 2–3, O. obscurus Gyllenhal in Schoenherr, 1834; 4, O. pullus Gyllenhal in Schoenherr, 1834; 5-6, O. politus Gyllenhal in Schoenherr, 1834; 7, O. beatus Faust, 1890; 8, Stephanocleonus eruditus Faust, 1890; 9, S. isochromus Suvorov, 1912; 10, S. favens Faust, 1884; 11, Pissodes insignatus Boheman in Schoenherr, 1843; 12, Trichalophus biguttatus (Gebler, 1832); 13, Tychius albolineatus Motschulsky, 1860; 14, Phyllobius femoralis Boheman in Schoenherr, 1842; 15, Metadonus distinguendus (Boheman in Schoenherr, 1842); 16, Notaris aethiops (Paykull, 1792); 17, Tournotaris bimaculata (Fabricius, 1787). Scale bars are 1 mm increments.

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FIGURE 3 in Late Pleistocene insects from the Dubrovino site at Ob River (West Siberia, Russia) and their paleoenvironmental significance

FIGURE 3. Subfossil beetle fragments from the Dubrovino assemblage; pronotum (1-4, 6, 10-12), head (5), and elytron (7-9, 13-15). 1, Elaphrus cf. riparius (Linnaeus, 1758); 2, Pogonus punctulatus Dejean, 1828; 3, Pterostichus cf. brevicornis (Kirby, 1837); 4, Cymindis cf. arctica Kryzhanovskij et Emetz, 1979; 5, Aphodius multiplex Reitter, 1867; 6, Cymbiodyta marginella (Fabricius, 1792); 7, Trechus cf. compactulus Belousov et Kabak, 1996; 8, Bembidion dauricum (Motschulsky, 1844); 9, Olisthopus sturmii (Duftschmid, 1812); 10, Pterostichus macer (Marsham, 1802); 11, P. mirus (Tschitschérine, 1894); 12, Amara aurichalcea Germar, 1823; 13, Porcinolus murinus (Fabricius, 1794); 14, Morychus ostasiaticus Tshernyshev, 1997; 15, Poecilus cf. ravus (Lutshnik, 1922). Scale bars are 1 mm increments. Figure parts 1–9 and 10–15 correspond to upper and the bottom scale bars, respectively.

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FIGURE 1 in Late Pleistocene insects from the Dubrovino site at Ob River (West Siberia, Russia) and their paleoenvironmental significance

FIGURE 1. Locality map of Dubrovino site and similarage late Pleistocene deposits from the West Siberian Plain. 1, Dubrovino; 2, Tyurseda-Khadyta; 3, Kul'egan- 2247; 4, Bun'kovo; 5, Kalistratikha; 6, Novaya Surtaika.

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FIGURE 3. Spermophilus glacialis Vinogradov, 1948 in Paleoparasitology in Russia, history and prospects

FIGURE 3. Spermophilus glacialis Vinogradov, 1948 (photograph by F.N. Golenishchev). Reproduced with permission of ZIN RAS.

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FIGURE 6 in Paleoparasitology in Russia, history and prospects

FIGURE 6. The bots of Gastrophilus intestinalis De Geer, 1776 from horse stomach, Ukok burial (Shokh, 2000, figure 278, p. 253). The photo was modified by the author.

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FIGURE 2. The Beryozovsky mammoth. 2.1 in Paleoparasitology in Russia, history and prospects

FIGURE 2. The Beryozovsky mammoth. 2.1 – the exhibit of Zoological museum in St. Petersburg (photograph by A.N. Tikhonov); 2.2 – the formation of "problematic bodies" located in the submucous membrane of the stomach of mammoth; 2.3 – a separate "body" (Zalenskyi, 1909, table V, figure 7). Reproduced with permission of ZIN RAS.

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FIGURE 1 in Paleoparasitology in Russia, history and prospects

FIGURE 1. Location of Paleoparasitological investigations (the map from http://kimkardashiani.blogspot.ru). The finds of parasites in Proboscidea: 1 – the Beryozovsky mammoth, 2 – the Kirgilaykh mammoth, 3 – the Shandrin mammoth, 4 – Berelekh mammoth cemetery, 5 – the Zhenya Mammoth; in Perissodactyla: 6 - the Selerikan horse, 7 – horse from Ukok burial; in Artiodactyla: 8 – the Indigirka bison; in Rodentia: 9 – the Indigirka ground squirrel, 10 – Egorov's narrow-skull vole. The finds of parasites at the archaeological sites: 11 – Caucasus dung deposits, 12 – Voymezhnoe, 13 – Zamostye-1, 2; 14 – Maray-1, 15 – Yarte-6, 16 – Nadym settlement, 17 – Ust-Voikar, 18 – Mangezeya, 19 – Zeleny Yar, 20 – Kikki-Akki, 21 – Vesakoyakha, 22 – Nyamboyto, 23 – Yaroslavl Kremlin.

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FIGURE 4 in Paleoparasitology in Russia, history and prospects

FIGURE 4. The mammoth calf Dima (Kirgilaykh mammoth): 4.1 – photograph taken at the discovery site (photograph by A.V. Lozhkin); 4.2 – "parasite eggs" in the blood vessels of Kirgilaykh mammoth, 4.3 – "a helminth fragment" (Ivanova, 1981, figures 15 and 16, p. 143). The figure was modified by the author.

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FIGURE 5 in Paleoparasitology in Russia, history and prospects

FIGURE 5. The woman mummy from Ukok and her reconstruction. The photo was modified by the author (photograph by K.A. Bannikov, V.P. Mylnikov and reconstruction by D.V. Pozdnyakov).

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Figs. 15–18 in Two new water mite species of the genus Lebertia Neuman, 1880 (Acari, Hydrachnidae: Lebertiidae) from northern lakes of Russia

Figs. 15–18. Lebertia prokini sp. n., male: 15 — genital field, right side; 16 — chelicera; 17 — IV-Leg-6; 18 — leg claw. Lebertia porosa, male: 19 — fragment of integument; 20 — pedipalp. Scale bars: 15–17 = 100 μm, 18 = 50 μm Рис. 15–18. Lebertia prokini sp. n., самец: 15 — генитаΛьное поΛе, правая сторона; 16 — хеΛицера; 17 — Λапка ноги IV; 18 — коготок ног. Lebertia porosa, самец: 19 — фрагмент покрова; 20 — пеΔипаΛьпа. ШкаΛы: 15–17 = 100 μm, 18 = 50 μm

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Figs. 10–14 in Two new water mite species of the genus Lebertia Neuman, 1880 (Acari, Hydrachnidae: Lebertiidae) from northern lakes of Russia

Figs. 10–14. Lebertia prokini sp. n., male: 10 — seta Fch; 11 — seta Oi; 12 — seta Oe; 13 — ventral view; 14 — pedipalp, lateral view. Scale bars: 10– 13 = 100 μm; 14 = 50 μm Рис. 10-14. Lebertia prokini sp. n., самец: 10 — щетинка Fch; 11 — щетинка Oi; 12 — щетинка Oe; 13 — вентраΛьная сторона; 14 — пеΔипаΛьпа, боковая сторона. ШкаΛы: 10–13 = 100 μm; 14 = 50 μm

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Figs. 1–5 in Two new water mite species of the genus Lebertia Neuman, 1880 (Acari, Hydrachnidae: Lebertiidae) from northern lakes of Russia

Figs. 1–5. Lebertia makarovae sp. n., female: 1 — seta Fch; 2 — seta Oi; 3 — seta Oe; 4 — ventral view; 5 — pedipalp. Scale bars: 1–3, 5 = 100 μm; 4 = 200 μm Рис. 1–5. Lebertia makarovae sp. n., самка: 1 — щетинка Fch; 2 — щетинка Oi; 3 — щетинка Oe; 4 — вентраΛьная сторона; 5 — пеΔипаΛьпа. ШкаΛы: 1–3, 5 = 100 μm; 4 = 200 μm

opencc-by-4.0Feb 2022View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record