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3,126 results for “france”

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FIG. 5 in The Palaeotheriidae (Equoidea, Perissodactyla, Mammalia) from the Eocene fauna of Aumelas (Hérault department, France)

FIG. 5. — Propalaeotherium sudrei Remy, Krasovec & Marandat, 2016:A, AUM 205, right mandible with M/3; A1, occlusal view; A2, labial view;B, AUM 179, left mandible with P/4-M/3 (reversed);B1, occlusal view; B2, labial view;C, AUM 166, right mandible with P/3-M/1-(M/2); C1, occlusal view; C2, labial view; D, AUM 182, left mandibular fragment with (D/3)-D/4-M/1, (reversed), occlusal view; E, AUM 208, left mandible with (alv.P/2-P/3)-P/4-M/1-(M/2)-M/3 (reversed), occlusal view. Scale bars: 2 cm. (Note that the mandible AUM 206 [Remy et al. 2016: fig.3E-F] is now recorded as Propalaeotherium cf. gaudryi (Lemoine, 1878)).

opencc-zeroJul 2019View details →
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FIG. 2 in Anatomy, affinities, and evolutionary implications of new silicified stems of Sphenophyllum Brongniart, 1828 from the early Carboniferous (Mississippian) of France and Germany

FIG. 2. — General aspect of the specimens in transverse section at the same scale. The primary xylem is in dark grey, the secondary xylem – when present – is in black. A, MN201(slide MN201-E2); B, same specimen as A at a level of branching (slide MN201-F1); C, largest axis resulting from the branching of MN911 with two leaf bases (slide MN911-A1); D, same axis as in C at another level with one leaf base and the production of two traces from one arm of the stele (slide MN911-A2); E, smallest axis resulting from the branching of MN911 (slide MN911-A2); F, MN864 showing secondary xylem all around the stele (slide MN864-C1); G, KLC3 showing a small amount of secondary xylem (slide KLC3-C); H, KLC4 showing a small amount of secondary xylem like KLC3 but a much smaller cortex (slide KLC4-B2). Scale bar: 2 mm.

opencc-zeroAug 2019View details →
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FIG. 1 in Anatomy, affinities, and evolutionary implications of new silicified stems of Sphenophyllum Brongniart, 1828 from the early Carboniferous (Mississippian) of France and Germany

FIG. 1. — Maps showing the location of the localities in Southern France (A) and Thuringia, Germany (B). Detailed maps modified from Galtier et al. 1988 and Meyer-Berthaud & Rowe 1997.

opencc-zeroAug 2019View details →
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FIG. 12 in The Palaeotheriidae (Equoidea, Perissodactyla, Mammalia) from the Eocene fauna of Aumelas (Hérault department, France)

FIG. 12. — Strict consensus of the two trees of the cladistic analysis. "Hyracotheres" are included in the Palaeotheriidae according to Remy, 2017. The taxa recognized at Aumelas are mentioned in red.

opencc-zeroJul 2019View details →
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FIG. 11 in The Palaeotheriidae (Equoidea, Perissodactyla, Mammalia) from the Eocene fauna of Aumelas (Hérault department, France)

FIG. 11. — Lophiotherium sp. from Aumelas: A, AUM 1633, right M3/; A1, occlusal view; A2, labial view; B, AUM 1547, left M2 (reversed), occlusal view; C, AUM 1626, left M2/ (reversed), occlusal view; D, AUM 234, right M1/, occlusal view (cast); E, AUM 232, left M1/ (reversed), occlusal view (cast); F, AUM 172, left M1/ (reversed), occlusal view; G, AUM 1550, right M/2, occlusal view (cast); H, AUM 1622, left M/1 (reversed), occlusal view; I, AUM 1624, right M/1, occlusal view; J, AUM 1551, right P/3, occlusal view (cast); K, AUM 1548, left mandible with (P/4)-M/1-M/3 (reversed); K1, occlusal view; K2, labial view; L, AUM 170, left mandible fragment with (alv. DP/1)-DP/2-DP/4 (reversed); L1, occlusal view; L2, labial view. Scale bars: 2 cm.

opencc-zeroJul 2019View details →
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FIG. 16 in An inventory of the spider species of Barcelonnette (France), with taxonomic notes on Piniphantes agnellus n. comb. (Araneae, Linyphiidae)

FIG. 16. –– Number of species (black) and corresponding number of specimens (grey) for each macrohabitat.

opencc-zeroFeb 2019View details →
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FIG. 5 in A new stenochirid lobster (Crustacea, Decapoda, Stenochiridae) from the Early Jurassic of France

FIG. 5. — Paratype CN-NMP-130-4 of Pseudastacus lemovices n. sp. from the Sinemurian of Chauffour-sur-Vell, France: A, specimen in left lateral view, cross-polarized light; B, interpretative line drawing. Abbreviations: a, branchiocardiac groove; as, antennal spine; a1, antennula; a2, antenna; b, antennal groove; b1, hepatic groove; e1e, cervical groove; o, eye; r, rostrum; sc, scaphocerite; s1-s6, pleonal somites 1 to 6; t, telson. Photograph: D. Audo. Scale bars: 5 mm.

opencc-zeroMar 2020View details →
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FIG. 2 in A new stenochirid lobster (Crustacea, Decapoda, Stenochiridae) from the Early Jurassic of France

FIG. 2. — Holotype CN-NMP-130-1 of Pseudastacus lemovices n. sp. from the Sinemurian of Chauffour-sur-Vell, France: A, specimen in right lateral view, cross-polarized light; B, interpretative line drawing. Abbreviations: a, branchiocardiac groove; b, antennal groove; b1, hepatic groove; ca, carpus; di, diaeresis; en, uropodal endopod; ex, uropodal exopod; e1e, cervical groove; pr, propodus; P1-P4, pereiopods 1 to 4; me, merus; r, rostrum; sc, scaphocerite; se, setae; s1-s6, pleonal somites 1 to 6. Photograph: D. Audo. Scale bars: 5 mm.

opencc-zeroMar 2020View details →
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FIG. 6 in A new stenochirid lobster (Crustacea, Decapoda, Stenochiridae) from the Early Jurassic of France

FIG. 6. — Paratype CN-NMP-130-5 of Pseudastacus lemovices n. sp. from the Sinemurian of Chauffour-sur-Vell, France: A, specimen in ventral view, cross-polarized light; B, interpretative line drawing. Abbreviations: e1e, cervical groove; md, dorsal midline; P2-P4, pereiopods 2 to 4; r, rostrum; sc, scaphocerite; s1-s2, pleonal somites 1 to 2. Photograph: D. Audo. Scale bars: 5 mm.

opencc-zeroMar 2020View details →
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FIG. 5 in Cicadetta sibillae Hertach & Trilar, 2015, nouvelle espèce de cigale pour la France (Hemiptera, Cicadidae) et premières analyses des sons complexes émis durant la cymbalisation d'appel nuptial

FIG. 5. — Édéages mâles: A, vue dorsale de l'apex du phallus et de ses deux pseudoparamères élargies chez C. cerdaniensis Puissant & Boulard, 2000; B, vue dorsale de l'apex du phallus et de ses deux pseudoparamères effilés et oblongs chez Cicadetta sibillae Hertach & Trilar, 2015; C, vue latérale du phallus et de ses deux pseudoparamères chez C. sibillae. Voir « Matériel et méthodes » pour la définition des abréviations. Échelles: A, B, 0,5 mm; C, 1 mm.

opencc-zeroApr 2018View details →
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FIG. 2 in Cicadetta sibillae Hertach & Trilar, 2015, nouvelle espèce de cigale pour la France (Hemiptera, Cicadidae) et premières analyses des sons complexes émis durant la cymbalisation d'appel nuptial

FIG. 2. — Cicadetta sibillae Hertach & Trilar, 2015, cymbalisation d'appel nuptial d'un mâle avec mouvements des cymbales asynchrone: A, spectres fréquentiels, spectrogramme et oscillogramme (du haut vers le bas) visualisant la fin d'une phrase de type 2, l'intégralité d'une phrase de type 3 et le début d'une phrase de type 2; B, oscillogramme détaillé de 4 modules pris dans la phrase de type 3; C, spectrogramme détaillé et oscillogramme (du haut vers le bas) d'un module composé de huit syllabes (chiffres romains), chacune de ces syllabes étant composée de quatre pulsations (chiffres arabes) émises par les mouvements asynchrones de chacune des cymbales (1-3, aller-retour de la première cymbale et 2-4, aller-retour de la seconde cymbale). Vallon du Réfréi, commune de Tende, Alpes- Maritimes, France, 27-28°C. Voir « Matériel et méthodes » pour la définition des abréviations et des spectres fréquentiels de couleur gris foncé, noir et gris clair.

opencc-zeroApr 2018View details →
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FIG. 3 in Cicadetta sibillae Hertach & Trilar, 2015, nouvelle espèce de cigale pour la France (Hemiptera, Cicadidae) et premières analyses des sons complexes émis durant la cymbalisation d'appel nuptial

FIG. 3. — Caractéristiques fréquentielles et temporelles des modules émis par Cicadetta sibillae Hertach & Trilar, 2015: A, spectres fréquentiels et oscillogramme (du haut vers le bas) d'un module d'une phrase de type 2; B, spectres fréquentiels et oscillogramme (du haut vers le bas) d'un module d'une phrase de type 3. Voir « Matériel et méthodes » pour la définition des abréviations et des spectres fréquentiels de couleur gris foncé, noir et gris clair.

opencc-zeroApr 2018View details →
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Appendix List of samples of deep frozen frog legs with purchase date, collection number, haplotype number, taxonomic identification, tibia length (TL) and estimated snout vent length (SVL). in Which frog's legs do froggies eat? The use of DNA barcoding for identification of deep frozen frog legs (Dicroglossidae, Amphibia) commercialized in France

Appendix List of samples of deep frozen frog legs with purchase date, collection number, haplotype number, taxonomic identification, tibia length (TL) and estimated snout vent length (SVL).

opencc-by-3.0Feb 2017View details →
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Fig. 2. Minimum spanning network depicting relationships among 16S in Which frog's legs do froggies eat? The use of DNA barcoding for identification of deep frozen frog legs (Dicroglossidae, Amphibia) commercialized in France

Fig. 2. Minimum spanning network depicting relationships among 16S haplotypes of Fejervarya cancrivora (Gravenhorst, 1829). The size of each circle is proportional to the haplotype frequency and the lengths of the connecting lines are proportional to the number of mutations. Colors refer to distinct regions (Indonesia: Java, Sumatra, Bali, Kalimantan, Bangka; Malaysia; Taiwan) and commercialized frogs of unknown origin are in black.

opencc-by-3.0Feb 2017View details →
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Fig. 3. Histograms. A in Which frog's legs do froggies eat? The use of DNA barcoding for identification of deep frozen frog legs (Dicroglossidae, Amphibia) commercialized in France

Fig. 3. Histograms. A. Snout vent length (in mm) in adult Fejervarya cancrivora (Gravenhorst, 1829) from samples collected for scientific purposes (Boulenger 1920) and collection specimens as mentioned in Material and methods. B. Snout vent length estimated from tibia length of genetically identified frog legs from French supermarkets (specimen list, see Appendix).

opencc-by-3.0Feb 2017View details →
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Fig. 1 in Which frog's legs do froggies eat? The use of DNA barcoding for identification of deep frozen frog legs (Dicroglossidae, Amphibia) commercialized in France

Fig. 1. Phylogeny of Indonesian species of Fejervarya and Limnonectes recovered by the Bayesian analysis (GTR + I + G model). Hoplobatrachus rugulosus (Wiegmann, 1834) and Occidozyga laevis (Günther, 1858) were used as outgroups. Numbers on nodes represent Bayesian posterior probabilities, * indicates a value higher than 0.98. Only values higher than 0.75 are represented. h01 to h18 indicate the 18 haplotypes from frozen frog legs recovered in this study.

opencc-by-3.0Feb 2017View details →
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Fig. 1 in The first Cenozoic roproniid wasp from the Paleocene of Menat, France (Hymenoptera: Proctotrupoidea)

Fig. 1. Paleoropronia salamonei gen. et sp. nov., holotype (MNHN.F.A57266), right fore wing. A. Photograph. B. Photograph under alcohol. C. Reconstruction. Scale bars: A–B = 1 mm; C = 0.5 mm.

opencc-by-3.0Oct 2016View details →
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Fig. 4 in The first Cenozoic roproniid wasp from the Paleocene of Menat, France (Hymenoptera: Proctotrupoidea)

Fig. 4. Paleoropronia salamonei gen. et sp. nov., holotype (MNHN.F.A57266). A. Pterostigma. B. Detail of cuticle of the pterostigma. Scale bars: A = 200 µm; B = 20 µm.

opencc-by-3.0Oct 2016View details →
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Fig. 3 in The first Cenozoic roproniid wasp from the Paleocene of Menat, France (Hymenoptera: Proctotrupoidea)

Fig. 3. Paleoropronia salamonei gen. et sp. nov., holotype (MNHN.F.A57266). A. Right fore wing base. B. Head and thorax. Scale bars: 1 mm.

opencc-by-3.0Oct 2016View details →
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Fig. 2 in The first Cenozoic roproniid wasp from the Paleocene of Menat, France (Hymenoptera: Proctotrupoidea)

Fig. 2. Paleoropronia salamonei gen. et sp. nov., holotype (MNHN.F.A57266), SEM photograph of habitus (arrow = first metasomal segment). Scale bar: 2 mm.

opencc-by-3.0Oct 2016View details →

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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.

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OpenNeuro

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Last verified 2026-04-29Open record