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FIG. 6 in Rongeurs de la localité éocène de Cos (Tarn-et-Garonne, Quercy, France). Comparaison avec les rongeurs de localités de la transition Éocène inférieur/Éocène moyen
FIG. 6. — Eogliravus hammeli Hartenberger, 1971, de Bouxwiller (Bas Rhin, MP13), dessins de dents supérieures en vue occlusale: A, BUX 68-48, D4 gauche (considérée comme M3, in Hartenberger 1971: fig. 5); B, BUX 68-44, P4 droite; C, BUX 81-03, P4 droite; D, BUX 81-08, P4 droite; E, BUX 81-02, P4 gauche; F, BUX 81-04, P4 droite; G, BUX 81-07,?P4 droite; H, BUX 81-05,?P4 gauche; I, BUX 81-06,?D4 ou?M1 gauche; J, BUX 81-08, M1 gauche; K, BUX 81-09, M1 gauche; L, BUX 81-10, M1 gauche; M, BUX 81-11, M1 droite; N, BUX 81-12, M1 droite; O, BUX 81-15, M1 droite; P, BUX 81-18, M1 droite; Q, BUX 81-20, M2 gauche; R, BUX 81-21, M2 droite; S, BUX 81-25, M2 droite; T, BUX 81-28, M2 droite; U, BUX 81-29, M2 gauche; V, BUX 81-33, M3 gauche; W, BUX 81- 32, M3 droite, incomplète. Échelle: 1 mm.
FIG. 8C, D in Rongeurs de la localité éocène de Cos (Tarn-et-Garonne, Quercy, France). Comparaison avec les rongeurs de localités de la transition Éocène inférieur/Éocène moyen
FIG. 8C, D. — Masillamys Tobien, 1954, graphes longueur/largeur des dents supérieures (C) et inférieures (D) de Masillamys cosensis n. sp. de Cos (figurés bleus) et Protadelomys lugdunensis de Lissieu, figurés rouges (Pl), qui représentent le plus grand des Protadelomys connus.
FIG. 17. — Masillamys cosensis n in Rongeurs de la localité éocène de Cos (Tarn-et-Garonne, Quercy, France). Comparaison avec les rongeurs de localités de la transition Éocène inférieur/Éocène moyen
FIG. 17. — Masillamys cosensis n. sp. de Cos, rangées dentaires inférieure droites, portant p4, m1, m2: A, UM-Cos 90; A1, vue occlusale; A2, vue buccale; B, UM-Cos 754; B1, vue occlusale; B2, vue buccale; B3, vue linguale. Échelle: 1 mm.
FIG. 8A, B in Rongeurs de la localité éocène de Cos (Tarn-et-Garonne, Quercy, France). Comparaison avec les rongeurs de localités de la transition Éocène inférieur/Éocène moyen
FIG. 8A, B. — Masillamys Tobien, 1954, graphes longueur/largeur des dents supérieures (A) et inférieures (B) de Masillamys cosensis n. sp. de Cos (figurés bleus), Masillamys mattaueri (Hartenberger, 1975) du Mas de Gimel (MG, figurés noirs) et Masillamys aff. cosensis n. sp. de Viélase (VIE, figurés verts). Les lignes brisées joignent les différentes catégories dentaires de quelques spécimens de Cos; B, UM-Cos 847, p4, m1, m2, m3; UM-Cos 90, p4, m1, m2; UM-Cos 154: m1, m2, m3).
Agricultural Parcel_CO2flux_France-Toulouse_0.30_15102018_15102019
<p>Set of agricultural parcels, with their geometry, crop type, value of CO2 flux (due to the crop vegetation cycle during an agricultural campaign year) and a few other attributes (intermediary results, quality information).</p>
FIG. 4 in An updated checklist and a DNA barcode library for the earthworms (Crassiclitellata, Oligochaeta) of Corsica, France
FIG. 4. — Some examples of endemic earthworm species sampled in Corsica and their habitats (to their right): A, Scherotheca portonana L4 Qiu & Bouché, 1998; B, alpine pasture at Col de Vergio (Bouché#466); C, Scherotheca albomaculata Qiu & Bouché, 1998; D, open Mediterranean chaparral at Sainte-Lucie de PortoVecchio (Bouché#414); E, Eumenescolex emiliae L1 Qiu & Bouché, 1998; F, Pinus laricio L. forest at Zonza (Bouché#2932); G, Hormogaster insularis Bouché, 1970; H, Quercus suber L. open wood at Volpajola (Bouché#480). Scale bars: 5 cm.
FIG. 2 in An updated checklist and a DNA barcode library for the earthworms (Crassiclitellata, Oligochaeta) of Corsica, France
FIG. 2. — Bayesian inference of the phylogenetic relationships of earthworms from Corsica based on their COI sequences. Species-level genetic lineages (as delimited by ASAP, barcode gap analysis and morphological data) are shown as black triangles in order to facilitate visualization and to display the amount of intra-lineage genetic divergence (indicated by the height of the triangle). Green circles: posterior probability values over 90; all the species-level clades showed values close to 100.
FIG. 1 in An updated checklist and a DNA barcode library for the earthworms (Crassiclitellata, Oligochaeta) of Corsica, France
FIG. 1. — Distribution map of the sampling localities in Corsica Island. Locality codes refer to Table 1. Map base: Qgis.
FIG. 5 in An updated checklist and a DNA barcode library for the earthworms (Crassiclitellata, Oligochaeta) of Corsica, France
FIG. 5. — Observed and estimated species diversity of earthworms in the island of Corsica: A, incidence-based rarefaction and extrapolation curves of species numbers;B, Chao asymptotic estimator of species numbers. The figure compares the results obtained when considering all species-level lineages obtained with DNA barcodes (All), when considering non-cryptic lineages only (NC) and when considering all endemic lineages (End). Solid lines represent rarefaction curves, whereas dashed lines represent extrapolation curves; shaded areas are 95% and error bars confidence intervals based on a bootstrap with 200 replications.
FIG. 3 in An updated checklist and a DNA barcode library for the earthworms (Crassiclitellata, Oligochaeta) of Corsica, France
FIG. 3. — Graphical representation of the number of earthworm species known from Corsica. Rectangle surfaces are proportional to species numbers.
Figure 4 in A new water mite species of the genus Teutonia Koenike, 1889 from Corsica, France, based on morphological data and DNA barcodes (Acari, Hydrachnidia, Teutoniidae)
Figure 4 Teutonia corsicanasp. nov., ♂ [CCDB 38559 F09], Ruisseau de Battesta, France: A – coxal and genital field, partial view; B – photograph of ejaculatory complex; C – palp, medial view; D – gnathosoma. Scale bars = 100 μm.
Figure 2 in A new water mite species of the genus Teutonia Koenike, 1889 from Corsica, France, based on morphological data and DNA barcodes (Acari, Hydrachnidia, Teutoniidae)
Figure 2 Results of ASAP analysis for COI sequences. (A) Distribution of pairwise differences, (B) Ranked pairwise differences.
Figure 1 in A new water mite species of the genus Teutonia Koenike, 1889 from Corsica, France, based on morphological data and DNA barcodes (Acari, Hydrachnidia, Teutoniidae)
Figure 1 Neighbour-Joining tree of the genusTeutonia, obtained from 17 nucleotide COI sequences.and the results of species delimitation analyses. Values near branches show bootstrap support (BS). The results of species delimitation by ASAP procedure are indicated by vertical bars. Country codes (alpha-2 code): DE – Germany, FR – France, MN – Montenegro, NO – Norway, TR – Turkey.
Figure 3 in A new water mite species of the genus Teutonia Koenike, 1889 from Corsica, France, based on morphological data and DNA barcodes (Acari, Hydrachnidia, Teutoniidae)
Figure 3 Teutonia corsicanasp. nov. (A-B, D-G – holotype ♀, Ruisseau de Tuara, France; C – ♀ [CCDB 38559 D12], preserved specimen, Riviere La Solenzara, France): A – coxal and genital field; B, C – genital field; D – palp, medial view (P-1 lacking); E – palp, lateral view; F – I-L-5 and -6; G – IV-L-5 and -6. Scale bars = 100 μm.
Figure 5 in A new water mite species of the genus Teutonia Koenike, 1889 from Corsica, France, based on morphological data and DNA barcodes (Acari, Hydrachnidia, Teutoniidae)
Figure 5 Teutonia cometes(Koch, 1837), ♀, Danilovgrad, spring under the bridge over the Zeta river, Montenegro: A – genital field; B – palp, medial view. Scale bar = 100 μm.
Text-fig. 7. Fossil and living examples of leaves of Acer. a: Acer sp. (fossil), Pleistocene diatomaceous deposits near Faufouille, France (scale bar = 10 mm); National Museum Wales specimen 86.54G.1a; b: Leaf from living Acer growing near Machynlleth, mid-Wales, UK; photo by B. A. Thomas. in Naming Of Parts: The Use Of Fossil-Taxa In Palaeobotany
Text-fig. 7. Fossil and living examples of leaves of Acer. a: Acer sp. (fossil), Pleistocene diatomaceous deposits near Faufouille, France (scale bar = 10 mm); National Museum Wales specimen 86.54G.1a; b: Leaf from living Acer growing near Machynlleth, mid-Wales, UK; photo by B. A. Thomas.
Text-fig. 4. Charred grass from diatomite of Saint-Bauzile. a: Overview of diatomite slab with one larger specimen of charred grass (left) and several smaller, lath-shaped charcoal fragments; SM.B 22260; scale bar = 1 cm. b: Detail of vein exhibited on split grass blade, with stomata oriented parallel to vein. c: Stomata oriented in rows and bands parallel to veins exposed on split grass blade. d: Surface of grass leaf with rectangular, elongated cells with strongly undulating margins in an intercostal area. in Evidence For Wildfires During Deposition Of The Late Miocene Diatomites Of The Konservat-Lagerstätte Lake Saint-Bauzile (Ardèche, France) - Preliminary Results
Text-fig. 4. Charred grass from diatomite of Saint-Bauzile. a: Overview of diatomite slab with one larger specimen of charred grass (left) and several smaller, lath-shaped charcoal fragments; SM.B 22260; scale bar = 1 cm. b: Detail of vein exhibited on split grass blade, with stomata oriented parallel to vein. c: Stomata oriented in rows and bands parallel to veins exposed on split grass blade. d: Surface of grass leaf with rectangular, elongated cells with strongly undulating margins in an intercostal area.
Text-fig. 2. Charred fern from diatomite of Saint-Bauzile. a: Overview of diatomite slab with large fragment of charred fern; SM.B 22258; scale bar = 1 cm. b: SEM overview image of charred fern pinnule. c: Enlargement of (b) showing details of undulating anticlinal walls of the epidermis. in Evidence For Wildfires During Deposition Of The Late Miocene Diatomites Of The Konservat-Lagerstätte Lake Saint-Bauzile (Ardèche, France) - Preliminary Results
Text-fig. 2. Charred fern from diatomite of Saint-Bauzile. a: Overview of diatomite slab with large fragment of charred fern; SM.B 22258; scale bar = 1 cm. b: SEM overview image of charred fern pinnule. c: Enlargement of (b) showing details of undulating anticlinal walls of the epidermis.
Text-fig. 1. a: Map of France showing geographic position of Saint-Bauzile (source: http://d-maps.com/m/europa/france/france/ france09.gif). b: Overview of the active diatomite quarry at the Montagne d'Andance, photograph taken in 2017. c: SEM image of a frustule of pennate diatom (cf. Navicula sp.) from Saint-Bauzile. d) SEM image of frustules forming a colony of centric diatoms (cf. Diatoma sp.) from Saint-Bauzile. in Evidence For Wildfires During Deposition Of The Late Miocene Diatomites Of The Konservat-Lagerstätte Lake Saint-Bauzile (Ardèche, France) - Preliminary Results
Text-fig. 1. a: Map of France showing geographic position of Saint-Bauzile (source: http://d-maps.com/m/europa/france/france/ france09.gif). b: Overview of the active diatomite quarry at the Montagne d'Andance, photograph taken in 2017. c: SEM image of a frustule of pennate diatom (cf. Navicula sp.) from Saint-Bauzile. d) SEM image of frustules forming a colony of centric diatoms (cf. Diatoma sp.) from Saint-Bauzile.
Probability maps of exceeding six soil thickness in mainland France
<p>This is the dataset of probability maps of exceeding six soil thickness (i.e. 5, 15, 30, 60, 100, 200 cm) in mainland France produced in the paper "Probability mapping of soil thickness by random survival forest at a national<br> scale" by Chen et al. (2019).</p> <p>Manuscript citation: Chen, S., Mulder, V.L., Martin, M.P., Walter, C., Lacoste, M., Richer-de-Forges, A.C., Saby, N.P., Loiseau, T., Hu, B. and Arrouays, D., 2019. Probability mapping of soil thickness by random survival forest at a national<br> scale. Geoderma, 344, 184-194.</p> <p>When using the data, please cite repositories as well as the original manuscript.</p> <p>For any questions on the data, please contact Dr. Songchao Chen (chensongchao@zju.edu.cn).</p>
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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.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.
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.