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Text-fig. 1. a: Simplified geological map of the Permo-Carboniferous Brive Basin (after Feys 1989) with marked localities L 1 (Brive, road D1089), L 2 (Lanteuil). b: Profile of the Brive Basin (modified from Feys 1989). c: Profile recorded by Guy and Maryse Chantepie in 2007 on the type locality Brive, road D1089. in New Actinopterygians From The Permian Of The Brive Basin, And The Ichthyofaunas Of The French Massif Central
Text-fig. 1. a: Simplified geological map of the Permo-Carboniferous Brive Basin (after Feys 1989) with marked localities L 1 (Brive, road D1089), L 2 (Lanteuil). b: Profile of the Brive Basin (modified from Feys 1989). c: Profile recorded by Guy and Maryse Chantepie in 2007 on the type locality Brive, road D1089.
Text-fig. 4. Original floral picture of locality Líšeň-Neklež drawn by Zlatko Kvaček, scale bars 10 mm. a: Alnus cf. julianiformis (STERNB.) KVAČEK et HOLÝ, MB102; b: Osmunda parschlugiana (UNGER) ANDR., MB81; c: Salvinia reussii ETTINGS., MB86; d: cf. Engelhardia orsbergensis (P.WESSEL et C.O.WEBER) JÄHNICHEN, MAI et H.WALTHER, MB104; e: Laurophyllum sp., MB89a; f:?Polypodiaceae gen. et sp. indet., MB84; g: Ulmus sp., MB105a; h: Ulmus sp., MB106; i: Schoenoplectiella cf. ragozinii (P.I.DOROF.) DOWELD, MB88a; j: Leguminophyllum sp. 1, MB96; k: Salix variansG ÖPP., MB107; l:?Carya sp., MB89b; m: Leguminophyllum sp. 1, MB97; n: Leguminophyllum sp. 1, MB87; o: Podocarpium podocarpum (A.BRAUN) HEREND., MB100; p: "Parrotia" pristina (ETTINGSH.) STUR, MB92. in A New Early Miocene (Ottnangian) Flora Of The "Rzehakia Beds" From Brno-Líšeň
Text-fig. 4. Original floral picture of locality Líšeň-Neklež drawn by Zlatko Kvaček, scale bars 10 mm. a: Alnus cf. julianiformis (STERNB.) KVAČEK et HOLÝ, MB102; b: Osmunda parschlugiana (UNGER) ANDR., MB81; c: Salvinia reussii ETTINGS., MB86; d: cf. Engelhardia orsbergensis (P.WESSEL et C.O.WEBER) JÄHNICHEN, MAI et H.WALTHER, MB104; e: Laurophyllum sp., MB89a; f:?Polypodiaceae gen. et sp. indet., MB84; g: Ulmus sp., MB105a; h: Ulmus sp., MB106; i: Schoenoplectiella cf. ragozinii (P.I.DOROF.) DOWELD, MB88a; j: Leguminophyllum sp. 1, MB96; k: Salix variansG ÖPP., MB107; l:?Carya sp., MB89b; m: Leguminophyllum sp. 1, MB97; n: Leguminophyllum sp. 1, MB87; o: Podocarpium podocarpum (A.BRAUN) HEREND., MB100; p: "Parrotia" pristina (ETTINGSH.) STUR, MB92.
Text-fig. 4. Type specimens of Magnolia allasoniae MARTINETTO sp. nov. from the Pliocene locality Ca' Viettone. a1–a4: Holotype (MGPT-PU141081) in different views, i.e., as originally figured in Martinetto (1995: pl. 1, fig. 5) in a black and white print (a1), in a new digital photograph in basal view (a2), ventral view (a3) and dorsal view (a4); b1–b4: Paratype MGPT-PU141082 in different views, i.e., as originally figured in Martinetto (1995: pl. 1, fig. 4) in a black and white print (b1), in a new digital photograph in basal view (b2), ventral view (b3) and dorsal view (b4); c1–c4: Paratype MGPT-PU141083 in different views, i.e., as originally figured in Martinetto (1995: pl. 1, fig. 6) in a black and white print (c1), in a new digital photograph in basal view (c2), ventral view (c3) and dorsal view (c4); d1–d4: Paratype MGPT-PU141084 in different views, i.e., as originally figured in Martinetto (1995: pl. 1, fig. 7) in a black and white print (d1), in a new digital photograph in basal view (d2), ventral view (d3) and internal view (d4). Scale bars 1 mm. in Late Messinian Flora From The Post-Evaporitic Deposits Of The Piedmont Basin (Northwest Italy)
Text-fig. 4. Type specimens of Magnolia allasoniae MARTINETTO sp. nov. from the Pliocene locality Ca' Viettone. a1–a4: Holotype (MGPT-PU141081) in different views, i.e., as originally figured in Martinetto (1995: pl. 1, fig. 5) in a black and white print (a1), in a new digital photograph in basal view (a2), ventral view (a3) and dorsal view (a4); b1–b4: Paratype MGPT-PU141082 in different views, i.e., as originally figured in Martinetto (1995: pl. 1, fig. 4) in a black and white print (b1), in a new digital photograph in basal view (b2), ventral view (b3) and dorsal view (b4); c1–c4: Paratype MGPT-PU141083 in different views, i.e., as originally figured in Martinetto (1995: pl. 1, fig. 6) in a black and white print (c1), in a new digital photograph in basal view (c2), ventral view (c3) and dorsal view (c4); d1–d4: Paratype MGPT-PU141084 in different views, i.e., as originally figured in Martinetto (1995: pl. 1, fig. 7) in a black and white print (d1), in a new digital photograph in basal view (d2), ventral view (d3) and internal view (d4). Scale bars 1 mm.
Text-fig. 3. "Rzehakia beds" at Líšeň-Neklež locality. 1 – topsoil, 2 – greenish-gray clay, locally yellow-brown, 3 – ochre-brown coarse sand, 4 – conglomerate with clasts of granodiorite, 5 – grey-brown medium-grained sand, 6 – light yellowish fine sand, 7 – re-sedimented red-brown eluvium of granodiorite, 8 – re-sedimented red-brown granodiorite debris, 9 – granodiorite, 10 – fossil macroflora. in A New Early Miocene (Ottnangian) Flora Of The "Rzehakia Beds" From Brno-Líšeň
Text-fig. 3. "Rzehakia beds" at Líšeň-Neklež locality. 1 – topsoil, 2 – greenish-gray clay, locally yellow-brown, 3 – ochre-brown coarse sand, 4 – conglomerate with clasts of granodiorite, 5 – grey-brown medium-grained sand, 6 – light yellowish fine sand, 7 – re-sedimented red-brown eluvium of granodiorite, 8 – re-sedimented red-brown granodiorite debris, 9 – granodiorite, 10 – fossil macroflora.
→ 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.
FIGURE 1 in Pinniped (Mammalia: Carnivora) fossils from Black Rock, a new late Neogene vertebrate locality in Victoria, Australia
FIGURE 1. The locality of the fossil site at Black Rock. Panels show A) Australasia, B) the Australian state, Victoria, C) Port Phillip Bay, D) Bayside, including Beaumaris and Black Rock.
FIGURE 3 in Pinniped (Mammalia: Carnivora) fossils from Black Rock, a new late Neogene vertebrate locality in Victoria, Australia
FIGURE 3. The pinniped fossil record in A) Australasia. Site locations in B) Australia and C) New Zealand. D) The stratigraphic record of pinniped fossils, with potential pinniped turnover events. Dark grey shading indicated the timing of the Late Pliocene marine megafauna extinction (Pimiento et al., 2017).
FIGURE 2. The Black Rock phocid specimens. NMV P254995 in Pinniped (Mammalia: Carnivora) fossils from Black Rock, a new late Neogene vertebrate locality in Victoria, Australia
FIGURE 2. The Black Rock phocid specimens. NMV P254995, right mandible in A) lateral, B) medial, C) dorsal, D) ventral, E) annotated lateral, and F) annotated dorsal views. NMV P254178, phalanx in, G) side, H) ventral, I) opposing side, and J) dorsal views. Scale bar equals 20 mm.
FIGURE 4 in New fossil representative of the genus Helius (Diptera, Limoniidae) from the little known and newly discovered locality Caergen Village of northeastern Tibetan Plateau (China)
FIGURE 4. Helius (Helius) qinghai n. sp., drawings of the holotype No. CNU-DIP-QZ2017001; 1 – head, 2 – male genitalia, 3 – relation between the length of palpi (p), antenna (a) and rostrum, 4 – wing (a – antenna, fl – flagellomeres, g – gonocoxite, ing – inner gonostylus, oug – outer gonostylus, p – pedicel, pl – palpi, r – rostrum, scp – scapus, t – tergite) (drawings by W. Krzemiński).
FIGURE 3 in New fossil representative of the genus Helius (Diptera, Limoniidae) from the little known and newly discovered locality Caergen Village of northeastern Tibetan Plateau (China)
FIGURE 3. Helius (Helius) qinghai n. sp., photography of the holotype No. CNU-DIP-QZ2017001; 1 – body, 2 – male genitalia, 3 – head, 4 – left wing (photo by Siyuan Wu).
FIGURE 2 in New fossil representative of the genus Helius (Diptera, Limoniidae) from the little known and newly discovered locality Caergen Village of northeastern Tibetan Plateau (China)
FIGURE 2. Vegetation surrounding Caergen Village and outcrops of the fossiliferous strata. Red mark is the fossil collection location, photo 24 Jul 2015.
Рис. 4. ГеографическаЯ локалиЗациЯ современных (●) и фоссильных (○) находок Laternula elliptica в Антарктике; (■) – локалиЗациЯ находки фоссильной раковины Laternula synthetica в Новой Зеландии. Fig. 4. Geographical localization of the Recent (●) and fossil (○) records of Laternula elliptica in Antarctica; (■) – record of a fossil shell of Laternula synthetica in New Zealand. in Species of warm-water origin Laternula elliptica (King, 1832) (Mollusca: Bivalvia: Laternulidae), a widespread mollusk in recent Antarctica
Рис. 4. ГеографическаЯ локалиЗациЯ современных (●) и фоссильных (○) находок Laternula elliptica в Антарктике; (■) – локалиЗациЯ находки фоссильной раковины Laternula synthetica в Новой Зеландии. Fig. 4. Geographical localization of the Recent (●) and fossil (○) records of Laternula elliptica in Antarctica; (■) – record of a fossil shell of Laternula synthetica in New Zealand.
Figure 4 in A new Eocene genus of the subtribe Tylodina (Coleoptera: Curculionidae) and notes concerning local differences of Baltic amber in the Kaliningrad Region
Figure 4. The main local sources of amber in the Kaliningrad Region: (a–c) the industrial open pit mining "Primorskoje" in Yantarny ("Palmnicken"), the Blaue Erde deposits (photographed 20 May 2019); (d–f) the Baltic Sea coasts southwards of the Yantarny settlement ("Nodems"), supralittoral zone after west wind (photographed 27 February 2019).
Figure 2 in A new Eocene genus of the subtribe Tylodina (Coleoptera: Curculionidae) and notes concerning local differences of Baltic amber in the Kaliningrad Region
Figure 2. Baltacalles triumurbium gen. et sp. nov., holotype, 6274 (MAIG): (a) forebody, lateral view; (b) details of left elytron, dorsal view. The arrows indicate long setae. Scale bars = 0.5 mm.
Figure 5 in A new Eocene genus of the subtribe Tylodina (Coleoptera: Curculionidae) and notes concerning local differences of Baltic amber in the Kaliningrad Region
Figure 5. The main local sources of amber in the Kaliningrad Region: (a–b) the illegal dig holes westwards of the Sosnovka settlement ("Steinitten") (photographed 15 February 2020); (c– d) the coast of the Vistula Lagoon ("Korschenruh") (photographed 17 February 2020).
Figure 3 in A new Eocene genus of the subtribe Tylodina (Coleoptera: Curculionidae) and notes concerning local differences of Baltic amber in the Kaliningrad Region
Figure 3. Map of the administrative subdivision of the Kaliningrad Region showing the main regional Baltic amber localities.
Figure 1 in A new Eocene genus of the subtribe Tylodina (Coleoptera: Curculionidae) and notes concerning local differences of Baltic amber in the Kaliningrad Region
Figure 1. Baltacalles triumurbium gen. et sp. nov., holotype, 6274 (MAIG): (a) habitus, dorsal view; (b) habitus, ventrolateral view; (c) habitus, left lateral view. Scale bars = 1 mm.
Fig. 3 in Distribution range expansion of Salamandra infraimmaculata Martens, 1885 (Caudata: Salamandridae) in Anatolia, Turkey, with a new locality record
Fig. 3. Predicted distribution of Salamandra infraimmaculata under current climatic conditions. Warm colors (red and yellow) show suitable habitats, whereas the blue color represents unsuitable habitats for S. infraimmaculata.
Fig. 2 in Distribution range expansion of Salamandra infraimmaculata Martens, 1885 (Caudata: Salamandridae) in Anatolia, Turkey, with a new locality record
Fig. 2. Distribution patterns of Salamandra infraimmaculata throughout southern Anatolia together with the new locality record.
Fig. 1 in Distribution range expansion of Salamandra infraimmaculata Martens, 1885 (Caudata: Salamandridae) in Anatolia, Turkey, with a new locality record
Fig. 1. Samples of Salamandra infraimmaculata captured from the new locality: (A) male and (B) female.
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.