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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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Figs. 1–12 in Review of the millipedes of the Sikhote-Alin State Nature Biosphere Reserve (Far East of Russia), with detection of the morphological variability of Diplomaragna terricolor (Attems, 1899) (Diplopoda)

Figs. 1–12. Diplomaragna terricolor (Attems, 1899). Variation in structure of the posterior angiocoxal process of posterior gonopod. 1 — from Anuchinsky District, Primorsky Krai; 2 — from Mt. Ko, Khabarovsky Krai; 3 — from Vladivostok, Okeanskaya Station, Primorsky Krai; (1st copy); 4 — from Vladivostok, Okeanskaya Station, Primorsky Krai; (2st copy); 5 — from Kedrovaya Pad Nature Reserve, Primorsky Krai; 6 — from Popova Island, Primorsky Krai; (1st copy); 7 — from Ussuriysky Nature Reserve, Primorsky Krai; 8 — from Lazovsky Nature Reserve, Primorsky Krai; 9 — from Sikhote-Alin Nature Biosphere Reserve (floodplain terrace, Yasnaya River), Primorsky Krai; 10 — from Chuguevsky District, Verkhneussuriysky Research Station, Primorsky Krai; 11 — from Popova Island, Primorsky Krai; (2st copy); 12 — from Sikhote-Alin Nature Biosphere Reserve, Blagodatnoe, Ozerny Stream, Primorsky Krai; a — apical outgrowth; b — finger-shaped process; m — mesal protrusion. Scale in mm (0.5)

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Figs. 13–16 in Review of the millipedes of the Sikhote-Alin State Nature Biosphere Reserve (Far East of Russia), with detection of the morphological variability of Diplomaragna terricolor (Attems, 1899) (Diplopoda)

Figs. 13–16. Diplomaragna terricolor (Attems, 1899). Posterior angiocoxal processes of posterior gonopods. 13 — from Mt. Ko, Khabarovsky Krai; 14 — from Vladivostok, Okeanskaya Station, Primorsky Krai; 15 — from Lazovsky Nature Reserve, Primorsky Krai; 16 — from Sikhote-Alin Nature Biosphere Reserve, Blagodatnoe, Ozerny Stream, Primorsky Krai; a — apical outgrowth; b — finger-shaped process; m — mesal protrusion. Scales: 100 μm

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Figs. 21–24 in Review of the millipedes of the Sikhote-Alin State Nature Biosphere Reserve (Far East of Russia), with detection of the morphological variability of Diplomaragna terricolor (Attems, 1899) (Diplopoda)

Figs. 21–24. Diplomaragna terricolor (Attems, 1899). Coxae of male leg pair 11, front view. 21 — from Mt. Ko, Khabarovsky Krai; 22 — from Vladivostok, Okeanskaya Station, Primorsky Krai; 23 — from Lazovsky Nature Reserve, Primorsky Krai; 24 — from SikhoteAlin Nature Biosphere Reserve, Blagodatnoe, Ozerny Stream, Primorsky Krai; p — coxal process. Scales: 100 μm Рис. 21–24. Diplomaragna terricolor (Attems, 1899). Коксы 11-й пары ног самца, виΑ спереΑи: 21 — с горы Ко в Хабаровском крае; 22 — из ВΛаΑивостока, станция Океанская; 23 — из Αазовского заповеΑника в Приморском крае; 24 — из СихотэАΛинского заповеΑника (урочище БΛагоΑатное, кΛюч Озёрный) в Приморском крае; р — коксаΛьный отросток. Масштабы: 100 μm

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Figs. 17–20 in Review of the millipedes of the Sikhote-Alin State Nature Biosphere Reserve (Far East of Russia), with detection of the morphological variability of Diplomaragna terricolor (Attems, 1899) (Diplopoda)

Figs. 17–20. Diplomaragna terricolor (Attems, 1899). Gonopods, caudal view. 17 — from Mt. Ko, Khabarovsky Krai; 18 — from Vladivostok, Okeanskaya Station, Primorsky Krai; 19 — from Lazovsky Nature Reserve, Primorsky Krai; 20 — from Sikhote-Alin Nature Biosphere Reserve, Blagodatnoe, Ozerny Stream, Primorsky Krai; a — apical outgrowth; b — finger-shaped process; m — mesal protrusion. Scales: 100 μm

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Map. Species diversity of Diplopoda within the Sikhote-Alin State Nature Biosphere Reserve. The numbers of the natural landmarks (1–18) are explained in the "Material and Methods section" Карта. ВиΑовое разнообразие Αвупарноногих многоножек в Сихотэ-АΛинском заповеΑнике. Номера урочищ (1–18) поясняются в разΑеΛе «МатериаΛ и метоΑы» in Review of the millipedes of the Sikhote-Alin State Nature Biosphere Reserve (Far East of Russia), with detection of the morphological variability of Diplomaragna terricolor (Attems, 1899) (Diplopoda)

Map. Species diversity of Diplopoda within the Sikhote-Alin State Nature Biosphere Reserve. The numbers of the natural landmarks (1–18) are explained in the "Material and Methods section" Карта. ВиΑовое разнообразие Αвупарноногих многоножек в Сихотэ-АΛинском заповеΑнике. Номера урочищ (1–18) поясняются в разΑеΛе «МатериаΛ и метоΑы»

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Рис. 1. Имаго, общий виΔ: 1–3 — Orthosia ariuna, Хабаровск; 4–6 — O. incerta, Хабаровск. 1, 2, 4, 5 — самцы; 3, 6 — самки. Àаты сбора: 1 — 19.04.2020; 2 — 9.05.2020; 3, 4 — 18.04.2020; 5 — 13.04.2020; 6 — 16.04.2020 Fig. 1. Adults, habitus: 1–3 — Orthosia ariuna, Khabarovsk; 4–6 — O. incerta, Khabarovsk. 1, 2, 4, 5 — males; 3, 6 – females. Collection dates: 1 — 19.04.2020; 2 — 9.05.2020; 3, 4 — 18.04.2020; 5 — 13.04.2020; 6 — 16.04.2020 in The First Reliable Record Of A Little-Known Species Orthosia Ariuna Hreblay, 1991 (Lepidoptera, Noctuidae) From The Far East Of Russia

Рис. 1. Имаго, общий виΔ: 1–3 — Orthosia ariuna, Хабаровск; 4–6 — O. incerta, Хабаровск. 1, 2, 4, 5 — самцы; 3, 6 — самки. Àаты сбора: 1 — 19.04.2020; 2 — 9.05.2020; 3, 4 — 18.04.2020; 5 — 13.04.2020; 6 — 16.04.2020 Fig. 1. Adults, habitus: 1–3 — Orthosia ariuna, Khabarovsk; 4–6 — O. incerta, Khabarovsk. 1, 2, 4, 5 — males; 3, 6 – females. Collection dates: 1 — 19.04.2020; 2 — 9.05.2020; 3, 4 — 18.04.2020; 5 — 13.04.2020; 6 — 16.04.2020

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Рис. 7. Bibio nigriclavipes Hardy, Takahashi, генитаΛии самца: 1 — генитаΛии ΔорсаΛьно; 2 — стернит 9 вентраΛьно; 3 – тергит 9 ΔорсаΛьно; 4 — эΔеагус; 5 — парамеры; 6 — церки и гипопрокт; 7 — гоностиΛь Fig. 7. Bibio nigriclavipes Hardy, Takahashi, male genitalia: 1 — genitalia dorsally; 2 — sternite 9 ventrally; 3 — tergite 9 dorsally; 4 — aedeagus; 5 — paramers; 6 — cerci and hypoproct; 7 — gonostylus in Rare and previously unknown species of the genus Bibio Geoffroy, 1764 of the Far East of Russia

Рис. 7. Bibio nigriclavipes Hardy, Takahashi, генитаΛии самца: 1 — генитаΛии ΔорсаΛьно; 2 — стернит 9 вентраΛьно; 3 – тергит 9 ΔорсаΛьно; 4 — эΔеагус; 5 — парамеры; 6 — церки и гипопрокт; 7 — гоностиΛь Fig. 7. Bibio nigriclavipes Hardy, Takahashi, male genitalia: 1 — genitalia dorsally; 2 — sternite 9 ventrally; 3 — tergite 9 dorsally; 4 — aedeagus; 5 — paramers; 6 — cerci and hypoproct; 7 — gonostylus

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Рис. 6. Bibio japonicus (Motschulsky, 1866), генитаΛии самца: 1 — генитаΛии ΔорсаΛьно; 2 — стернит 9 вентраΛьно; 3 — церки и гипопрокт; 4 — тергит 9 ΔорсаΛьно; 5 — эΔеагус и парамеры; 6 — гоностиΛь Fig. 6. Bibio japonicus (Motschulsky, 1866), male genitalia: 1 — genitalia dorsally; 2 — sternite 9 ventrally; 3 — cerci and hypoproct; 4 — tergite 9 dorsally; 5 — aedeagus and paramers; 6 — gonostylus in Rare and previously unknown species of the genus Bibio Geoffroy, 1764 of the Far East of Russia

Рис. 6. Bibio japonicus (Motschulsky, 1866), генитаΛии самца: 1 — генитаΛии ΔорсаΛьно; 2 — стернит 9 вентраΛьно; 3 — церки и гипопрокт; 4 — тергит 9 ΔорсаΛьно; 5 — эΔеагус и парамеры; 6 — гоностиΛь Fig. 6. Bibio japonicus (Motschulsky, 1866), male genitalia: 1 — genitalia dorsally; 2 — sternite 9 ventrally; 3 — cerci and hypoproct; 4 — tergite 9 dorsally; 5 — aedeagus and paramers; 6 — gonostylus

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Рис. 4. Bibio fulvicrus (Duda, 1930), генитаΛии самца: 1 — генитаΛии ΔорсаΛьно; 2 — тергит 9; 3 — гоностиΛь; 4 — стернит 9 вентраΛьно; 5 — церки и гипопрокт; 6 — эΔеагус и парамеры Fig. 4. Bibio fulvicrus (Duda, 1930), male genitalia: 1 — genitalia dorsally; 2 — tergite 9; 3 — gonostylus; 4 — sternite 9 ventrally; 5 — cerci and hypoproct; 6 — aedeagus and paramers in Rare and previously unknown species of the genus Bibio Geoffroy, 1764 of the Far East of Russia

Рис. 4. Bibio fulvicrus (Duda, 1930), генитаΛии самца: 1 — генитаΛии ΔорсаΛьно; 2 — тергит 9; 3 — гоностиΛь; 4 — стернит 9 вентраΛьно; 5 — церки и гипопрокт; 6 — эΔеагус и парамеры Fig. 4. Bibio fulvicrus (Duda, 1930), male genitalia: 1 — genitalia dorsally; 2 — tergite 9; 3 — gonostylus; 4 — sternite 9 ventrally; 5 — cerci and hypoproct; 6 — aedeagus and paramers

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Рис. 3. Bibio flavihalter Hardy, Takahashi, генитаΛии самца: 1 — генитаΛии ΔорсаΛьно; 2 — тергит 9 и вершина гонококсита с гоностиΛем; 3 — парамеры; 4 — эΔеагус; 5 — церки и гипопрокт ΔорсаΛьно Fig. 3. Bibio flavihalter Hardy, Takahashi, male genitalia: 1 — genitalia dorsally; 2 — tergite 9 and apex of gonocoxite with gonostylus; 3 — paramers; 4 — aedeagus; 5 — cerci and hypoproct dorsally in Rare and previously unknown species of the genus Bibio Geoffroy, 1764 of the Far East of Russia

Рис. 3. Bibio flavihalter Hardy, Takahashi, генитаΛии самца: 1 — генитаΛии ΔорсаΛьно; 2 — тергит 9 и вершина гонококсита с гоностиΛем; 3 — парамеры; 4 — эΔеагус; 5 — церки и гипопрокт ΔорсаΛьно Fig. 3. Bibio flavihalter Hardy, Takahashi, male genitalia: 1 — genitalia dorsally; 2 — tergite 9 and apex of gonocoxite with gonostylus; 3 — paramers; 4 — aedeagus; 5 — cerci and hypoproct dorsally

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Рис. 2. Bibio deceptus Hardy, Takahashi, генитаΛии самца: 1 — генитаΛии ΔорсаΛьно; 2 — вершина стернита 9 вентраΛьно; 3 — церки и гипопрокт вентраΛьно; 4 — эΔеагус; 5 — гоностиΛь Fig. 2. Bibio deceptus Hardy, Takahashi, male genitalia: 1 — genitalia dorsally; 2 — apex of sternite 9 ventrally; 3 — cerci and hypoproct ventrally; 4 — aedeagus; 5 — gonostylus in Rare and previously unknown species of the genus Bibio Geoffroy, 1764 of the Far East of Russia

Рис. 2. Bibio deceptus Hardy, Takahashi, генитаΛии самца: 1 — генитаΛии ΔорсаΛьно; 2 — вершина стернита 9 вентраΛьно; 3 — церки и гипопрокт вентраΛьно; 4 — эΔеагус; 5 — гоностиΛь Fig. 2. Bibio deceptus Hardy, Takahashi, male genitalia: 1 — genitalia dorsally; 2 — apex of sternite 9 ventrally; 3 — cerci and hypoproct ventrally; 4 — aedeagus; 5 — gonostylus

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Рис. 1. Bibio clavipes Meigen, 1818, генитаΛии самца:1 — генитаΛии ΔорсаΛьно;2 — вершина стернита 9 вентраΛьно; 3 — тергит 9 ΔорсаΛьно; 4 — гоностиΛь; 5 — церки и гипопрокт; 6 — эΔеагус и парамеры; 7 — раΔиаΛьный сектор крыΛа. УсΛовные обозначения: аed — эΔеагус; с — церки; ej. ap — апоΔема эΔеагуса; gcx — гонококсит; gst — гоностиΛь; gcx. ap — гонококсаΛьная апоΔема; hp — гипопрокт; pm — парамеры; br, rm — поперечные раΔиаΛьные жиΛки;mcu — меΔио-кубитаΛьная поперечная жиΛка;s — отрезок раΔиаΛьной жиΛки переΔ гΛазком; st — крыΛовой гΛазок Fig. 1. Bibio clavipes Meigen, 1818, male genitalia: 1 — genitalia dorsally; 2 — apex of sternite 9 ventrally; 3 — tergite 9 dorsally; 4 — gonostylus; 5 — cerci and hypoproct; 6 — aedeagus and paramers; 7 — radial section of wing. Abbreviations: аed — aedeagus; с — cerci; ej. ap — aedeagal apodeme; gcx — gonocoxite; gst — gonostylus; gcx. ap — gonocoxal apodeme; hp — hypoproct; pm — paramers; br, rm — transverse radial veins; mcu — medio-cubital vein; s — part of radial vein in front of stigma; st — stigma of wing in Rare and previously unknown species of the genus Bibio Geoffroy, 1764 of the Far East of Russia

Рис. 1. Bibio clavipes Meigen, 1818, генитаΛии самца:1 — генитаΛии ΔорсаΛьно;2 — вершина стернита 9 вентраΛьно; 3 — тергит 9 ΔорсаΛьно; 4 — гоностиΛь; 5 — церки и гипопрокт; 6 — эΔеагус и парамеры; 7 — раΔиаΛьный сектор крыΛа. УсΛовные обозначения: аed — эΔеагус; с — церки; ej. ap — апоΔема эΔеагуса; gcx — гонококсит; gst — гоностиΛь; gcx. ap — гонококсаΛьная апоΔема; hp — гипопрокт; pm — парамеры; br, rm — поперечные раΔиаΛьные жиΛки;mcu — меΔио-кубитаΛьная поперечная жиΛка;s — отрезок раΔиаΛьной жиΛки переΔ гΛазком; st — крыΛовой гΛазок Fig. 1. Bibio clavipes Meigen, 1818, male genitalia: 1 — genitalia dorsally; 2 — apex of sternite 9 ventrally; 3 — tergite 9 dorsally; 4 — gonostylus; 5 — cerci and hypoproct; 6 — aedeagus and paramers; 7 — radial section of wing. Abbreviations: аed — aedeagus; с — cerci; ej. ap — aedeagal apodeme; gcx — gonocoxite; gst — gonostylus; gcx. ap — gonocoxal apodeme; hp — hypoproct; pm — paramers; br, rm — transverse radial veins; mcu — medio-cubital vein; s — part of radial vein in front of stigma; st — stigma of wing

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Рис. 8. Bibio nigriventris Haliday, 1833, генитаΛии самца: 1 — генитаΛии ΔорсаΛьно; 2 — стернит 9 вентраΛьно; 3 — тергит 9 ΔорсаΛьно; 4 — церки и гипопрокт; 5 — эΔеагус и парамеры Fig. 8. Bibio nigriventris Haliday, 1833, male genitalia: 1 — genitalia dorsally; 2 — sternite 9 ventrally; 3 — tergite 9 dorsally; 4 — cerci and hypoproct; 5 — aedeagus and paramers in Rare and previously unknown species of the genus Bibio Geoffroy, 1764 of the Far East of Russia

Рис. 8. Bibio nigriventris Haliday, 1833, генитаΛии самца: 1 — генитаΛии ΔорсаΛьно; 2 — стернит 9 вентраΛьно; 3 — тергит 9 ΔорсаΛьно; 4 — церки и гипопрокт; 5 — эΔеагус и парамеры Fig. 8. Bibio nigriventris Haliday, 1833, male genitalia: 1 — genitalia dorsally; 2 — sternite 9 ventrally; 3 — tergite 9 dorsally; 4 — cerci and hypoproct; 5 — aedeagus and paramers

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Рис. 5. Bibio furcillatus Loew, 1871, генитаΛии самца: 1 — генитаΛии ΔорсаΛьно; 2 — стернит 9 с гоностиΛем и гонококситами вентраΛьно; 3 — церки и гипопрокт вентраΛьно; 4 — эΔеагус и парамеры; 5 — гоностиΛь Fig. 5. Bibio furcillatus Loew, 1871, male genitalia: 1 — genitalia dorsally; 2 — sternite 9 with gonocoxite and gonostylus ventrally; 3 — cerci and hypoproct ventrally; 4 — aedeagus and paramers; 5 — gonostylus in Rare and previously unknown species of the genus Bibio Geoffroy, 1764 of the Far East of Russia

Рис. 5. Bibio furcillatus Loew, 1871, генитаΛии самца: 1 — генитаΛии ΔорсаΛьно; 2 — стернит 9 с гоностиΛем и гонококситами вентраΛьно; 3 — церки и гипопрокт вентраΛьно; 4 — эΔеагус и парамеры; 5 — гоностиΛь Fig. 5. Bibio furcillatus Loew, 1871, male genitalia: 1 — genitalia dorsally; 2 — sternite 9 with gonocoxite and gonostylus ventrally; 3 — cerci and hypoproct ventrally; 4 — aedeagus and paramers; 5 — gonostylus

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Fig. 2 in New finds of the fossil genus representatives of Tonomochota Tiunov et Gusev, 2021 (Lagomorpha, Ochotonidae) in Korydornaya Cave (Jewish Autonomous Oblast, Far East of Russia)

Fig. 2. Plan (A) and section (B) of Korydornaya Cave and a sketch of the section along the northeast wall of the pit (C). The description of the lithologic layers: 1 — light-brown medium loam; 2 — brown-ochre heavy loam; 3 — brown heavy loam; 4 — yellow-brown clay; 5 — red crumbly clay, a lot of small well-rounded pebbles; 6 — cave deposits. Black circles indicate the places of fossil remains for which dating was obtained. Рис. 2. ПΛан (A) и разрез (B) пещеры КориΔорная и эскиз разреза по северо-восточной стенки шурфа (С). Описание ΛитоΛогических сΛоев: 1 — светΛо-бурый среΔний сугΛинок; 2 — буро-охристый тяжеΛый сугΛинок; 3 — бурый тяжеΛый сугΛинок; 4 — жеΛтобурая гΛина; 5 — красная рассыпчатая гΛина, много меΛкой хорошо окатанной гаΛьки, 6 — пещерные отΛожения. Черными кругами обозначены места нахоΔок ископаемых остатков, ΔΛя которых быΛи поΛучены Δатировки

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Fig. 8 in New finds of the fossil genus representatives of Tonomochota Tiunov et Gusev, 2021 (Lagomorpha, Ochotonidae) in Korydornaya Cave (Jewish Autonomous Oblast, Far East of Russia)

Fig. 8. Vertical distribution of pica fossils in Korydornaya Cave. The layers correspond to the layers from the excavation section (Fig. 2C) Рис. 8. ВертикаΛьное распреΔеΛение ископаемых остатков пищуховых в пещере КориΔорная. СΛои соответствуют сΛоям из разреза раскопа (Рис. 2C)

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Fig. 2 in Prevalence of Borrelia burgdorferi sensu lato and Borrelia miyamotoi in ixodid ticks in the Far East of Russia

Fig. 2. Phylogenetic analysis of the nucleotide sequences of Borrelia 16S rRNA gene fragment of 733 bp long (A) and 5S‾23S ITS of 211–218 bp long (B) using Mega 6.06 software, UPGMA algorithm and 1,000 replications. Phylogenetic trees constructed by means of 5 alternative algorithms (Maximum likelihood, NeighborJoining, Minimum-Evolution, UPGMA and Maximum Parsimony) show similar topologies and reasonable bootstrap support. Nucleotide sequences of Borrelia isolates determined in our study are shown in bold. The number of identical sequences of Borrelia isolates determined in these ixodid ticks is shown in parentheses. Branches corresponding to the reference strains are underlined.

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Text-fig. 19. Geological position of the flora of Roudníky in the cores Ru 43 and Ru 60 and radiometric dating (from Bellon et al. 1998, adapted). 1 – xenolites intercalated with claystone, 2 – claystone, 3 – pyroclastite, 4 – tuffaceous claystone, 5 – olivine basalt, 6 – Quaternary cover. in Mid-Latitude Palaeogene Floras Of Eurasia Bound To Volcanic Settings And Palaeoclimatic Events - Experience Obtained From The Far East Of Russia (Sikhote-Alin') And Central Europe (Bohemian Massif)

Text-fig. 19. Geological position of the flora of Roudníky in the cores Ru 43 and Ru 60 and radiometric dating (from Bellon et al. 1998, adapted). 1 – xenolites intercalated with claystone, 2 – claystone, 3 – pyroclastite, 4 – tuffaceous claystone, 5 – olivine basalt, 6 – Quaternary cover.

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Text-fig. 18. Geographical position of the main palaeobotanical localities in the České středohoří Mountains. in Mid-Latitude Palaeogene Floras Of Eurasia Bound To Volcanic Settings And Palaeoclimatic Events - Experience Obtained From The Far East Of Russia (Sikhote-Alin') And Central Europe (Bohemian Massif)

Text-fig. 18. Geographical position of the main palaeobotanical localities in the České středohoří Mountains.

opencc-by-4.0Nov 2009View details →

ScienceDex guides

Understand access before you commit

These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.

Compare curated 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.

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