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FIG. 9 in Resampling Bouché's historical localities reveals three new species and helps identifying a new genus of earthworms (Oligochaeta, Hormogastridae and Lumbricidae) in Southeastern France
FIG. 9. — Vignysa callasensis Gérard, Decaëns & Marchán, n. sp.: A, external view of the anterior body; B, lateral view of the anterior body; C, dissection of the anterior body; D, detail of the anterior body dissection showing the spermathecae. Abbreviations: CL, clitellum; GM, genital marks; GZ, gizzard; IN, intestine; MP, male pore; SEP, septa; SV, seminal vesicles; TP, tubercula pubertatis; TY, typhlosole. Scale bars: A-C, 5 mm, D, 1.5 mm. Photos: T. Decaëns.
FIG. 12 in Resampling Bouché's historical localities reveals three new species and helps identifying a new genus of earthworms (Oligochaeta, Hormogastridae and Lumbricidae) in Southeastern France
FIG. 12. — Satellite pictures around type localities of Flabellodrilus luberonensis Gérard, Decaëns & Marchán, n. gen., n. sp., Allolobophora delitescens Gérard, Decaëns & Marchán, n. sp. and Vignysa callasensis Gérard, Decaëns & Marchán, n. sp. in the 1950-1965 period (left) and in 2022 (right). 1950-1965: satellite pictures. Credits: Institut national de l'information géographique et forestière (IGN); Google 2022.
FIG. 2 in Resampling Bouché's historical localities reveals three new species and helps identifying a new genus of earthworms (Oligochaeta, Hormogastridae and Lumbricidae) in Southeastern France
FIG. 2. — DNA barcode tree of the genus Vignysa Bouché, 1970. The tree was obtained from Bayesian inference based on the sequences of COI barcodes. Posterior probability values are shown above branches. Grey bars delimit individuals belonging to each species.
FIG. 11 in Resampling Bouché's historical localities reveals three new species and helps identifying a new genus of earthworms (Oligochaeta, Hormogastridae and Lumbricidae) in Southeastern France
FIG. 11. — Living specimen of Vignysa callasensis Gérard, Decaëns & Marchán, n. sp. Photo: S. Gérard.
FIG. 7 in Resampling Bouché's historical localities reveals three new species and helps identifying a new genus of earthworms (Oligochaeta, Hormogastridae and Lumbricidae) in Southeastern France
FIG. 7. — Pre-clitellar nephridia of Allolobophora delitescens Gérard, Decaëns & Marchán, n. sp. Scale bar: 1 mm. Photo: D. F. Marchán.
FIG. 6 in Resampling Bouché's historical localities reveals three new species and helps identifying a new genus of earthworms (Oligochaeta, Hormogastridae and Lumbricidae) in Southeastern France
FIG. 6. — Allolobophora delitescens Gérard, Decaëns & Marchán, n. sp.: A, external view of the anterior body; B, lateral view of the anterior body; C, dissection of the anterior body. Abbreviations: CL, clitellum, CR, crop, GM, genital marks, GZ, gizzard, IN, intestine, MP, male pore, SEP, septa, SV, seminal vesicles, TP, tubercula pubertatis, TY, typhlosole. Scale bars: 5 mm. Photos: T. Decaëns.
FIG. 11 in A new Cretaceous psocodean family from the Charente-Maritime amber (France) (Insecta, Psocodea, Psocomorpha)
FIG. 11. — Strict consensus cladogram of the Psocomorpha including Arcantipsocus n. gen. and Electrentomum Enderlein, 1911. See Appendix for the matrix of character state used. *, all the genera belonging to the family.
FIG. 2. — Holotype MNHN.F.B16583 in A new species of mecochirid lobster from the Late Cretaceous of France, preserved with its eggs
FIG. 2. — Holotype MNHN.F.B16583 (Triger coll.) of Mecochirus cenomanicus n. sp. from the Cenomanian of La Butte quarry, Le Mans, France: part and counterpart (A, C) and interpretative live drawing (B); white frame corresponds to SEM images and EDS analysis. Abbreviations: a, branchiocardiac groove; a2, antenna; b, antennal groove; ba, basipodite; b1, hepatic groove; c, postcervical groove; cd, cardiac groove; d, gastro-orbital groove; di, diaeresis; e, eye; en, uropodal endopod; ex, uropodal exopod; e1e, cervical groove; gc, gastro-orbital carina; oc, orbital carina; P1-P5, pereiopods 1 to 5; r, rostrum; sc, scaphocerite; s1–s6, pleonal somites 1 to 6; t, telson. Photographs: P. Loubry. Line drawing: R. Gilardet. Scale bars: 5 mm.
FIG. 1 in A new species of mecochirid lobster from the Late Cretaceous of France, preserved with its eggs
FIG. 1. — Cenomanian stratotype in France: A, location of Le Mans, Sarthe Department; B, synthetic stratigraphy of the Cenomanian stratotype with the Sables et Grès du Mans Formation (in green), where the mecochirid lobster was probably collected (modified after Morel 2015); C, map of the historical site of La Butte quarries (after Lombard 1839).
FIG. 3 in A new species of mecochirid lobster from the Late Cretaceous of France, preserved with its eggs
FIG. 3. — Pictures and elemental maps of preserved muscle fibers observed on holotype MNHN.F.B16583, located on pleonal somites 2 and 3: A-D, SEM images showing details of the bundles probably corresponding to anterior oblique and lateral muscles (highlighted in blue in B); E, EDS maps of main chemical elements corresponding to area pictured in D. Abbreviations: Al, aluminum; Ca, calcium; Fe, iron; O, oxygen; P, phosphorus; Si, silicon; s2-s3, pleonal somites 2 and 3. Photographs: G. P. Odin. Scale bars: A-B: 1 mm; C: 500 µm, D: 200 µm, E: 100 µm.
FIG. 5 in Resampling Bouché's historical localities reveals three new species and helps identifying a new genus of earthworms (Oligochaeta, Hormogastridae and Lumbricidae) in Southeastern France
FIG. 5. — Distribution of newly described Lumbricidae species, Flabellodrilus luberonensis Gérard, Decaëns & Marchán, n. gen., n. sp. and Allolobophora delitescens Gérard, Decaëns & Marchán, n. sp. (stars), and their closest relatives (circles) in Southern France. All species within the genus Flabellodrilus Gérard, Decaëns & Marchán, n. gen. are represented. Credits: Google 2022.
APPENDIX 1 in Resampling Bouché's historical localities reveals three new species and helps identifying a new genus of earthworms (Oligochaeta, Hormogastridae and Lumbricidae) in Southeastern France
APPENDIX 1. — Full multilocus phylogenetic tree focused on Allolobophora-related Lumbricidae genera. The tree was obtained from Bayesian inference based on the concatenated sequences of the COI-16S-ND1-12S- 28S molecular markers. Posterior probability values are shown beside nodes.
FIG. 8 in Resampling Bouché's historical localities reveals three new species and helps identifying a new genus of earthworms (Oligochaeta, Hormogastridae and Lumbricidae) in Southeastern France
FIG. 8. — Distribution of Vignysa callasensis Gérard, Decaëns & Marchán, n. sp. (star) and its closest relatives (circles) in Southern France. All species of the genus Vignysa Bouché, 1970 are represented. Credits: Google 2022.
Figure 1 in First record of Phoxinus csikii Hankó, 1922 (Actinopterygii, Cypriniformes) in France
Figure 1. – Distribution of Phoxinus csikii Hankó, 1922 (red squares) in Europe with its first occurrence in France at Essey-et-Maizerais (top left box); modified and adapted from Palandačić et al. (2017a).
France Treasury Nominal Par Yield Curves
<p>French Treasury Nominal Par Yield Curves from October 22, 1987, through October 20, 2023. The file contains the French par-yield curves we can construct using a Svensson methodology and <em>all</em> available public data of French nominal government debt securities<em> </em>called OATs (<em>Obligations Assimilables du Trésor</em>) from October 22, 1987, throughOctober 20, 2023. Please consult Grishchenko, Moraux and Pakulyak (2020) for extended details on the methodology, model fit, etc.</p>
Estimation of forest height and biomass from open-access multi-sensor satellite imagery and GEDI Lidar data: high-resolution maps of metropolitan France
<p>Maps of forest height, aboveground biomass (AGB)* and volume (VOL)* at 10 m spatial resolution for the year 2020 on France. </p> <p>* AGB and Volume maps are available on request.</p> <p>The methodology and validation of the maps are presented here: https://hal.science/hal-04249151</p> <p>Please cite :</p> <p>David Morin, Milena Planells, Stéphane Mermoz, Florian Mouret. Estimation of forest height and biomass from open-access multi-sensor satellite imagery and GEDI Lidar data: high-resolution maps of metropolitan France. 2023. hal-04249151</p>
Fig. 5 in Parasitic gastropod bioerosion trace fossil on Cenomanian oysters from Le Mans, France and its ichnologic and taphonomic context
Fig. 5. Parasitic gastropod bioerosion and perforation trace Loxolenichnus stellatocinctus igen. et isp. nov., MHNLM 2015.2.244, holotype, Marnes à Pycnodonte biauriculata Formation, Upper Cenomanian, Lycée Bellevue earthmoving works, Le Mans, Sarthe Department, France; on LV of Rhynchostreon suborbiculatum (Lamarck, 1801). A. Entire LV shell with the arrow showing the perforation. B. LV (viewed from inside), the arrow shows the opening of the perforation on the inner side of the shell, diascopic illumination. Outer (C) and inner (D) sides of the shell, close-ups of the perforation, the dashed line delimitates approximately the course of the perforation through the shell, diascopic illumination. E. Positive X-ray print of the perforation.
Fig. 6 in Parasitic gastropod bioerosion trace fossil on Cenomanian oysters from Le Mans, France and its ichnologic and taphonomic context
Fig. 6. Parasitic gastropod bioerosion trace Loxolenichnus stellatocinctus igen. et isp. nov., MHNLM 2015.2.346 and MHNLM 2015.2.347, paratypes; lower Campanian Inoceramus lingua–Goniotheuthis quadrata Zone, quarry near Höver, Germany. A. Outer side of an oyster valve, accommodating two specimens of L. stellatocinctus (arrows). B. Close-up of the two specimens and the multiple perforations. C. Inner side of the oyster valve showing two of the perforations reaching the adductor muscle pad. Outer (D) and inner (E) sides of an oyster valve with a marginal L. stellatocinctus. F. Close-up of D, note the two concentric stellate rims and the marginal notch.
High resolution land cover 2017 Ile-de-France
<p><strong>High resoultion land cover for the Ile-de-France, 2017.</strong></p> <p>The rasters are mostly based on vector files, which were rasterised, merged and resampled to 5m. The encoded values represent the different thematic classes in the dataset. </p> <p>For ease of processing and computation, all datasets were tiled and are provided as a single continuous raster. This map shows the extents of the datasets “Hauteur vegetation” and “cadastre vert”, which were only available for a limited region within the Ile- de- France region. </p> <p></p> <p>The datasets used in the production of this map were MosPlus 2017-81, Cadastre Verte, Copernicus Small and Woody features, Copernicus Street tree layer, Hauteur vegetation and the densibati dataset. </p> <p> </p> <p>Class Codec </p> <table> <tbody> <tr> <td> <p><strong>Class</strong><strong> </strong></p> </td> <td> <p><strong>NumCodec</strong><strong> </strong></p> <p><strong>8bit compatible</strong><strong> </strong></p> </td> </tr> <tr> <td> <p>Building<strong> </strong></p> </td> <td> <p>10 </p> </td> </tr> <tr> <td> <p>Built parcel<strong> </strong></p> </td> <td> <p>19 </p> </td> </tr> <tr> <td> <p>Mineral surface<strong> </strong></p> </td> <td> <p>21 </p> </td> </tr> <tr> <td> <p>Bare soil<strong> </strong></p> </td> <td> <p>22 </p> </td> </tr> <tr> <td> <p>Grass<strong> </strong></p> </td> <td> <p>31 </p> </td> </tr> <tr> <td> <p>Shrub<strong> </strong></p> </td> <td> <p>40 </p> </td> </tr> <tr> <td> <p>Shrub round<strong> </strong></p> </td> <td> <p>41 </p> </td> </tr> <tr> <td> <p>Shrub linear<strong> </strong></p> </td> <td> <p>42 </p> </td> </tr> <tr> <td> <p>Tree<strong> </strong></p> </td> <td> <p>50 </p> </td> </tr> <tr> <td> <p>Water<strong> </strong></p> </td> <td> <p>60 </p> </td> </tr> <tr> <td> <p>Lake<strong> </strong></p> </td> <td> <p>61 </p> </td> </tr> <tr> <td> <p>River<strong> </strong></p> </td> <td> <p>62 </p> </td> </tr> <tr> <td> <p>Agriculture<strong> </strong></p> </td> <td> <p>80/81</p> </td> </tr> <tr> <td> <p>NonAOI/ unclassified<strong> </strong></p> </td> <td> <p>99 /0 </p> </td> </tr> </tbody> </table> <p>Data sources </p> <p>European Union's Copernicus Land Monitoring Service information (2018), Small Woody Features 2018,<a href="https://doi.org/10.2909/7fd9d32e-8c2f-42b2-b959-c8e12b843821" target="_blank" rel="noopener">https://doi.org/10.2909/7fd9d32e-8c2f-42b2-b959-c8e12b843821</a> </p> <p>European Union's Copernicus Land Monitoring Service information (2018), Urban Atlas Street Tree Layer 2018, <a href="https://doi.org/10.2909/205691b3-7ae9-41dd-abf1-1fbf60d72c8c" target="_blank" rel="noopener">https://doi.org/10.2909/205691b3-7ae9-41dd-abf1-1fbf60d72c8c</a> </p> <p>Atelier Parisien d'Urbanisme 2017 HAUTEUR VEGETATION 2015 </p> <p><a href="https://opendata.apur.org/datasets/Apur::hauteur-vegetation-2015/about" target="_blank" rel="noopener">https://opendata.apur.org/datasets/Apur::hauteur-vegetation-2015/about</a> </p> <p>Département des Hauts-de-Seine (2012) Cadastre vert - Masses vertes. https://opendata.hauts-de-seine.fr/explore/dataset/cadastre-vert-masses-vertes/information/?disjunctive.commune&basemap=mapbox.streets-satellite&location=11,48.83991,2.24091 </p> <p>L'Institut Paris Region (2017) Mode d'occupation du sol (MOS) 2017 a 81 postes. <a href="https://www.institutparisregion.fr/vente-de-donnees/" target="_blank" rel="noopener">https://www.institutparisregion.fr/vente-de-donnees/</a> </p> <p>L'Institut Paris Region (2018) Densibati 2018. <a href="https://www.institutparisregion.fr/vente-de-donnees/" target="_blank" rel="noopener">https://www.institutparisregion.fr/vente-de-donnees/</a> </p>
Oilseed rape plant phytometers in an agricultural landscape in France - LTSER Zone Atelier Plaine & Val de Sèvre
<p>Fruit set as a proxy of pollination efficiency measured using oilseed rape plant phytometers placed in grasslands, cereals and oilseed rape fields in the LTSER Zone Atelier Plaine & Val de Sèvre. The individual contributions of different processes to pollination were determined using a bagging experiment (large-, small- and osmolux) on plant phytometers.</p> <p>Landscape metrics are available upon reasonable request</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)
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.