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Figure 1 in The formation of the consortia relations of Molipteryx fuliginosa (Uhler, 1860) (Hemiptera, Coreidae) with Ambrosia artemisiifolia in the Primorskii Krai of Russia
Figure 1. Points in the Molipteryx fuliginosa (Uhler) research sites on Ambrosia artemisiifolia L. (circles indicate the location of the bug on an ambrosia).
Figure 3 in The formation of the consortia relations of Molipteryx fuliginosa (Uhler, 1860) (Hemiptera, Coreidae) with Ambrosia artemisiifolia in the Primorskii Krai of Russia
Figure 3. Larvae of IV – V instar Molipteryx fuliginosa (Uhler, 1860) on the inflorescence of Ambrosia artemisiifolia in natural conditions (env. Kamenushka; road to the nursery)
Fig. 6. Bothriolepis zadonica. A. Left submarginal plate, PIN 3725 in Crested antiarch Bothriolepis zadonica H.D. Obrucheva from the Lower Famennian of Central European Russia
Fig. 6. Bothriolepis zadonica. A. Left submarginal plate, PIN 3725/1185 in external (A1) and internal (A2) views. B. Left inferognathal plate, PIN 3725/1118, labial (B1) and lingual (B2) surfaces. Scale bar 1 cm.
Fig. 9 in Crested antiarch Bothriolepis zadonica H.D. Obrucheva from the Lower Famennian of Central European Russia
Fig. 9. Tentative restoration of Bothriolepis zadonica; caudal fin morphology from Bothriolepis gippslandiensis (based on Long and Werdelin 1986).
Fig. 7 in Crested antiarch Bothriolepis zadonica H.D. Obrucheva from the Lower Famennian of Central European Russia
Fig. 7. Tentative restoration of Bothriolepis zadonica H.Obr. trunk shield; based on the isolated specimens PIN AMD 1660/19, PMD 3725/63, ADL 3725/65, MxL 3725/63, AVL 3725/46, PVL 1660/9. Dorsal (A) and ventral (B) views. C. Head and trunk shields in left lateral view. D. Cross section of the trunk shield at the suture between anterior and posterior median dorsal plates. Scale bar 10 cm.
Fig. 2 in Crested antiarch Bothriolepis zadonica H.D. Obrucheva from the Lower Famennian of Central European Russia
Fig. 2. Tentative restoration of Bothriolepis zadonica head shield; based on the isolated specimens PIN PrM 3725/100, PP 3725/1010, La 3725/1005, Nu 3725/1020PNu3725/87and3725/1094.Dorsal(A)andventral(B)viewsoftheflattenedheadshield. C.Posteriorviewofarchedheadshield.Scalebar5cm.
Fig. 1 in Crested antiarch Bothriolepis zadonica H.D. Obrucheva from the Lower Famennian of Central European Russia
Fig. 1. Zadonskian antiarch localities in the Central European Russia. Orel Region: 1, Lime Factory quarry; 2, Kazatskiy quarry; 3, Livny town; 4, Shilivovillage;5, Russkiy Brod town; 6, Russkiy Brod quarry; 7, Zyabrovo village. Tver Region: 8, Redkino village; 9, Nelidovo village.
Fig. 4 in Crested antiarch Bothriolepis zadonica H.D. Obrucheva from the Lower Famennian of Central European Russia
Fig. 4. Head shield plates of Bothriolepis zadonica. A. Left lateral, PIN 3725/1005 in dorsal (A1) and ventral (A2) views, × 1.15. B. Premedian, PIN 3725/100, dorsal view, × 1.1. C. Postpineal, PIN 3725/1010 in dorsal (C1) and ventral (C2) views, × 1.3. D. Left lateral, paranuchal and postmarginal in articulation, PIN 3725/1094, dorsal view, × 1.5. E. Nuchal, PIN 3725/1020, dorsal (E1) and ventral (E2) views, × 1. F. Premedian, PIN 3725/1132, ventral view, × 1.1. G. Right paranuchal, PIN 3725/87, dorsal view, × 1. Abbreviations: a1SM and a2SM, anterior and posterior attachment on lateral plate for submarginal plate; ap, poriferous area of premedian plate; aPrL, attachment on lateral plate for prelateral plate; cir, semicircular pit−line groove; cr.o, median occipital crest; cr.o2, additional occipital crest; cr.pm, paramarginal crest; cr.pto, postorbital crest; cr.tv, transverse nuchal crest of the head shield; csl, central sensory pit−line groove; flm, facial lamina; g, pair pits on postpineal plate; ifc1, upper infraorbital groove; La, lateral plate; mpg, middle pit−line groove; mppr, median process on the nuchal plate; mrc, median rostral corner of the premedian plate; nlm, nasal lamina; nm, obtected nuchal area; npp, postpineal notch of the nuchal plate; PMg, postmarginal plate; pnt, paranuchal articular trochlea; PNu, paranuchal plate; prh, preorbital recess of head shield; pr.po, anterolateral corners of otico−occipital depression; rd, median internal ridge on the premedian plate; ri, oblique premedian ridge; soc, anterior median pit−line groove; sot, rough supraotic thickening of nuchal plate; spg, spiracular groove; vcp, vertical pit−line groove.
Fig. 5 in Crested antiarch Bothriolepis zadonica H.D. Obrucheva from the Lower Famennian of Central European Russia
Fig. 5. Three nuchal plates of Bothriolepis zadonica. A. Juvenile, PIN 3725/23. B. Subadult, PIN 3725/24. C. Adult, PIN 3725/1020. Scale bars 1 cm.
Fig. 8 in Crested antiarch Bothriolepis zadonica H.D. Obrucheva from the Lower Famennian of Central European Russia
Fig. 8. Trunk shield plates of Bothriolepis zadonica. A. Anterior median dorsal, PIN 1660/18 in dorsal (A1) and ventral (A2) views, × 0.65. B. Posterior median dorsal, PIN 3725/63 in ventral (B1) and dorsal (B2) views, × 0.6. C. Posterior median dorsal, PIN 1660/10 in dorsal view, × 0.75. D. Posterior median dorsal,PIN3725/1115inleftlateralview, ×0.4. E. Rightanteriordorsolateral,PIN3725/65inexternalview, ×0.8. F. Rightmixilateral,PIN3725/68inexternal view, × 0.4. G. First mesial marginal plate of the right pectoral appendage, PIN 3725/1072 in external view, × 0.6. H. Second lateral marginal plate of the right pectoral appendage, PIN 3725/1016, × 1. I. First ventral central of the right pectoral appendage, PIN 3725/1011 in external view, × 0.65. J. Right posterior ventrolateral, PIN 1660/9 in external view, × 0.4. K. Distal segment of pectoral appendage, PIN 3725/1016, × 1.5
Fig. 3 in Crested antiarch Bothriolepis zadonica H.D. Obrucheva from the Lower Famennian of Central European Russia
Fig. 3. Five types of preorbital recess in bothriolepidids (A, B, D, and E from Young 1988). A. Simple, Bothriolepis askini Young. B. Pentagonal, B. portalensis Young. C. Trapezoid B. zadonica. D. Trilobite, B. barretti Young. E. Trifid, "B. nitida" (Leidy). Not to scale.
Fig. 7. A in Campanian (Late Cretaceous) nautiloids from Sakhalin, Far East Russia
Fig. 7. A. Cymatoceras cf. honmai Matsumotoand Miyauchi, 1983 (specimenPIW2002IV−5 fromtheLower CampanianBykov Formation,Member10, locality35attheManujRiversection,Sakhalin)inlateral(A1),ventral(A2),andseptal(A3)views. B.Reconstructionofwhorlsection. C.Sutureline(not to scale) (all figures natural size except C).
Fig. 6. A in Campanian (Late Cretaceous) nautiloids from Sakhalin, Far East Russia
Fig. 6. A. Cymatoceras pseudoatlas (Yabe and Shimizu, 1924b). PIW2002IV−2 from the Krasnoyarka Formation, Member 2, locality 12 (Canadoceras multicostatum Zone, Upper Campanian), Naiba River valley, Sakhalin; apertural view [see also Fig. 5B]. B. Cymatoceras cf. bifidum Shimansky, 1975. PIW2002IV−4 from the Krasnoyarka Formation, Member 1 (Pachydiscus (P.) aff. egertoni Zone, Upper Campanian), locality 0.6, Naiba River valley, Sakhalin; in lateral (B1, B3) and ventral (B2) views. Scale bar in the middle is for A, B1, and B3. Scale bars 2 cm.
Fig. 5 in Campanian (Late Cretaceous) nautiloids from Sakhalin, Far East Russia
Fig. 5. Cymatoceras pseudoatlas (Yabe and Shimizu, 1924b). A. PIW2002IV−3 from the Krasnoyarka Formation, Member 2, locality 431 (Canadoceras multicostatum Zone,UpperCampanian),ManujRivervalley,Sakhalin,inlateral(A1)andventral(A2)views. B.PIW2002IV−2fromtheKrasnoyarkaFormation,Member2,locality12(Canadoceras multicostatum Zone,UpperCampanian),NaibaRivervalley,Sakhalin,inlateral(B1)andventral(B2)views. Scale bar 2 cm.
Fig. 3 in Campanian (Late Cretaceous) nautiloids from Sakhalin, Far East Russia
Fig. 3. Synoptic ammonite and inoceramid bivalve biostratigraphy of the areas discussed in the text (compiled after Zonova et al. 1993; Toshimitsu et al. 1995; Shigeta et al. 1999; Yazykova 2002; Yazykova et al. 2002). Abbreviation: Sant., Santorians.
Fig. 2 in Campanian (Late Cretaceous) nautiloids from Sakhalin, Far East Russia
Fig. 2. Stratigraphic log of the Upper Santonian to Lower Maastrichtian of Sakhalin; numbers of lithostratigraphic members, nautiloid occurrences and biostratigraphic events (first and last appearance data, FAD/LAD) are indicated (modified after Yazykova 2002: fig. 2).
Fig. 6 in Late Eocene scyliorhinid sharks from the Trans-Urals, Russia
Fig. 6. Foumtizia aff. pattersoni (Cappetta, 1976), Kurgan, Russia; Tavda Formation, Priabonian. A. 8CΠ/Ku−87/02, lateral tooth; in labial (A1), lingual (A2), and occlusal (A3) views. B. 8CΠ/Ku−87/03, anterior tooth; in labial (B1), lingual (B2), and occlusal (B3) views. Digital photo.
Fig. 5 in Late Eocene scyliorhinid sharks from the Trans-Urals, Russia
Fig. 5. Scyliorhinus zhelezkoi sp. nov., Derney, Russia; Tavda Formation, Priabonian. IGG 8CΠ/D−03/01, lower lateral tooth; in labially−occlusal (A), lingual (B), occlusal (C), and lingually−occlusal (G) views; ribs on the labial side of the crown (D), lateral cusplet in the lingual view (E), ribs on the lingual side of the crown (F, H). SEM microphotographs.
Fig. 4 in Late Eocene scyliorhinid sharks from the Trans-Urals, Russia
Fig. 4. Scyliorhinus zhelezkoi sp. nov., Kurgan, Russia; Tavda Formation, Priabonian. A. Holotype. PIN 5088/03, lateral tooth; in labial (A1), lingual (A2), medial (A3), basal (A4), and lingually−occlusal (A5) views. B. Paratype. PIN 5088/04, anterior tooth; in labial (B1), labially−occlusal (B2), and lingually−mesial (B3) views; distal cusplets, enlargement (B4). SEM microphotographs.
Fig. 2 in Late Eocene scyliorhinid sharks from the Trans-Urals, Russia
Fig. 2. Premontreia uralica sp. nov., Kurgan, Russia; Tavda Formation, Priabonian. A. Holotype. PIN 5088/01, anterior tooth; in labial (A1), lingual (A2), labially−occlusal (A3), distally−basal (A4), lingually−occlusal (A5), and basal (A6) views. B. Paratype. PIN 5088/02, anterior tooth; in labial (B1), distally−basal (B2), lingual (B3), labially−occlusal (B4), lingually−occlusal (B5), and basal (B6) views. SEM microphotographs.
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.