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FIG. 6 in Habitat preferences of Papilio alexanor Esper, [1800]: implications for habitat management in the Italian Maritime Alps
FIG. 6.— Comparison of mean values of larval survival rates calculated for the 21 (occupied) plots ranked by increasing total number of P. saxifraga (L.) Loret & Barrandon plants.
FIG. 5 in Habitat preferences of Papilio alexanor Esper, [1800]: implications for habitat management in the Italian Maritime Alps
FIG. 5.— Pre-imaginal development of P. alexanor Esper, [1800] in the field. Mean (± SE) number of eggs and larvae of P. alexanor collected during the four sampling events (2010).
Living organisms and sedimentary remains from high mountain lakes in the Alps collected in Summer 2000
<p>A data set of environmental and biological data collected in 2000 during the ice-free period in high mountain lakes located above the local timberline in the Alps, in Italy, Switzerland and Austria. Environmental data include coordinates, geographical attributes and detailed information on vegetation, bedrock and land use in lake catchments. Chemical analyses of a sample for each lake collected at the lake surface in Summer 2000 are also reported. Biological data include phytoplankton, zooplankton, macroinvertebrates, benthic diatoms. Diatoms, cladoceran and chironomids remains and algal and bacterial pigments were also analysed in lake sediments.</p>
FIG. 2 in Présence du genre Lepidocottus Sauvage, 1875 (Teleostei, Gobioidei) dans l'Oligocène inférieur des environs de Céreste (Alpes-de-Haute-Provence, France)
FIG. 2. — Vue générale de Lepidocottus cf. aries (Agassiz, 1839): A, spécimen PNRL-MER-7, découvert à Viens, conservé dans les collections paléontologiques du Parc naturel régional du Luberon à Apt (Vaucluse); B, spécimen MNHN.F.CRT254, provenant de Pichovet, près de Vachères, conservé à Paris dans les collections paléontologiques du Muséum national d'Histoire naturelle. Échelles: 1 cm.
FIG. 4 in Présence du genre Lepidocottus Sauvage, 1875 (Teleostei, Gobioidei) dans l'Oligocène inférieur des environs de Céreste (Alpes-de-Haute-Provence, France)
FIG. 4. — Lepidocottus cf. aries (Agassiz, 1839). Squelette caudal axial du spécimen PNRL-MER-7, conservé dans les collections paléontologiques du Parc naturel régional du Luberon à Apt (Vaucluse). Abréviations: a.h. PU 2, hémapophyse portée par le premier centrum préural libre; a.h. PU 3, hémapophyse portée par le second centrum préural libre; a.n. PU 2, neurapophyse portée par le premier centrum préural libre; a.n. PU 3, neurapophyse portée par le second centrum préural libre; Ep 1-2, épuraux; Hy 1+2, plaque hypurale inférieure; Hy 3+4, plaque hypurale supérieure fusionnée au complexe uro-terminal; Hy 5, Hypural dorsal; PHy, parhypural; PU 1+U 1, complexe uro-terminal; PU 2, PU 3, centra préuraux libres. Échelle: 5 mm.
FIG. 3 in Présence du genre Lepidocottus Sauvage, 1875 (Teleostei, Gobioidei) dans l'Oligocène inférieur des environs de Céreste (Alpes-de-Haute-Provence, France)
FIG. 3. — Lepidocottus cf. aries (Agassiz, 1839). Tête du spécimen PNRL-MER-7, conservé dans les collections paléontologiques du Parc naturel régional du Luberon à Apt (Vaucluse). Abréviations: Chy 2, cératohyal distal; Dent, dentaire; Fr, frontal; Mx, maxillaire; Pal, palatin; Pmx, prémaxillaire; Pop, préopercule; Psph, parasphénoïde. Échelle: 5 mm.
FIG. 6 in Présence d'un Osmeridae: Enoplophthalmus schlumbergeri Sauvage, 1880 dans l'Oligocène inférieur des environs de Céreste (Alpes-de- Haute-Provence, France)
FIG. 6. — Enoplophthalmus schlumbergeri Sauvage, 1880. Vue latérale d'un opercule isolé. Spécimen MNHN.F.SMC9D.Échelle: 1 mm.
FIG. 5 in Présence d'un Osmeridae: Enoplophthalmus schlumbergeri Sauvage, 1880 dans l'Oligocène inférieur des environs de Céreste (Alpes-de- Haute-Provence, France)
FIG. 5. — Enoplophthalmus schlumbergeri Sauvage, 1880. Reconstitution de la tête. Principalement d'après le spécimen MNHN.F.SMC16. Abréviations: Ang, angulaire; Cl, cleithrum; Dent, dentaire; Fr, frontal; Hmd, hyomandibulaire; Mx, maxillaire; Op, opercule; Pmx, prémaxillaire; Pop, préopercule; Psph, parasphénoïde; PT, posttemporal; Q, carré; SCl, supracleithrum; Smx, supramaxillaire; Sop, sousopercule.
FIG. 8 in Présence d'un Osmeridae: Enoplophthalmus schlumbergeri Sauvage, 1880 dans l'Oligocène inférieur des environs de Céreste (Alpes-de- Haute-Provence, France)
FIG. 8. — Enoplophthalmus schlumbergeri Sauvage, 1880. Nageoire anale de deux spécimens montrant le dimorphisme sexuel affectant cette espèce: A, individu femelle, spécimen MNHN.F.SMC17; B, individu mâle montrant l'épaississement de certains rayons, spécimen MNHN.F.SMC9D. Échelles: 5 mm.
FIG. 7 in Présence d'un Osmeridae: Enoplophthalmus schlumbergeri Sauvage, 1880 dans l'Oligocène inférieur des environs de Céreste (Alpes-de- Haute-Provence, France)
FIG. 7. — Enoplophthalmus schlumbergeri Sauvage,1880. Squelette caudal axial du spécimen MNHN.F.SMC9D. Abréviations: a.h.PU2, a.h.PU3, a.h.PU4, hémapophyses portées par les trois centra préuraux libres postérieurs; a.n.PU2, a.n.PU3, a.n.PU4, neurapophyses portées par les trois centra préuraux libres postérieurs; Ep, épuraux; Hy1 à Hy6, hypuraux; PHy, parhypural; PU1 + U1, centrum uro-terminal; PU2, PU3, PU4, centra préuraux libres; Un, uroneural; Échelle: 1 mm.
FIG. 2 in Présence d'un Osmeridae: Enoplophthalmus schlumbergeri Sauvage, 1880 dans l'Oligocène inférieur des environs de Céreste (Alpes-de- Haute-Provence, France)
FIG. 2. — Enoplophthalmus schlumbergeri Sauvage, 1880, vue générale du spécimen MNHN.F.SMC15 (Don Michel Delamare). Échelle: 5 mm.
FIG. 4 in Présence d'un Osmeridae: Enoplophthalmus schlumbergeri Sauvage, 1880 dans l'Oligocène inférieur des environs de Céreste (Alpes-de- Haute-Provence, France)
FIG. 4. — Enoplophthalmus schlumbergeri Sauvage, 1880, tête du spécimen MNHN.F.SMC16 (Don Michel Delamare). Abréviations: Ang, angulaire; Cl, cleithrum; Dent, dentaire; Ecpt, ectoptérygoïde; Enpt, entoptérygoïde; Fr, frontal; Mx, maxillaire; Op, opercule; Pa, pariétal; Pmx, prémaxillaire, Pop, préopercule; Psph, parasphénoïde; Q, carré; Sop, sousopercule. Échelle: 2 mm.
FIG. 1 in Présence d'un Osmeridae: Enoplophthalmus schlumbergeri Sauvage, 1880 dans l'Oligocène inférieur des environs de Céreste (Alpes-de- Haute-Provence, France)
FIG. 1. — Carte des environs de Céreste (Alpes-de-Haute-Provence, France) montrant la position des principaux gisements oligocènes de poissons fossiles.
FIG. 3 in Présence d'un Osmeridae: Enoplophthalmus schlumbergeri Sauvage, 1880 dans l'Oligocène inférieur des environs de Céreste (Alpes-de- Haute-Provence, France)
FIG. 3. — Enoplophthalmus schlumbergeri Sauvage, 1880, vue générale de l'holotype, spécimen MNHN.F.SMC14 (Don Michel Delamare). Échelle: 5 mm.
Southern Alps, New Zealand microseismicity earthquake catalog
<p>Earthquake catalog of the microseismicity in the central Alpine Fault, New Zealand (2008 - 2017) in QuakeML format. The information included for each event contains location, phase pick, local magnitude information. For more details refer to the Gcubed publication in the related <a href="http://doi.org/10.1029/2018GC007743">link</a>.</p> <p> </p>
Optically measured mean leaf traits from a large set of taxa growing in two botanical gardens: in the French Alps and southern Finland
<p>This dataset contains records of the optically measured mean leaf traits (adaxial flavonol & anthocyanin index and chlorophyll index, units are an optical index of leaf/epidermal relative absorbance) from a large set of plant taxa growing at alpine botanical garden at the Joseph Fourier Field Station (Université Grenoble Alps, France; 2100 m a.s.l.; 45°2' 9" N, 6°23' 59" E) and at Kumpula Botanical Garden (LUOMUS, University of Helsinki, Finland; 14 m a.s.l.; 60° 12' 7" N, 24° 57' 26" E;). Optical measurements were made during the summers of 2014 and 2015 with a leaf-clip Dualex Scientific + (Force-A, Paris-Orsay, France) and all detailed information about the methods are published in Hartikainen and Robson, doi: 10.3389/fpls.2022.1058162. This dataset also includes spectrophotometer measurements of absorbance by phenolic compounds in leaf extracts in acidified methanol (abs range 290-400 nm) and mini-PAM measurements of chlorophyll fluorescence from different subsets of taxa at alpine botanical garden. All details concerning these data are given in Hartikainen and Robson (doi: 10.3389/fpls.2022.1058162) and its Supplementary Materials. Sheet with explanation of the different variables is also included.</p>
European Alps Receiver Function Database
<p>This dataset contains the receiver function traces calculated using seismic waveform data from the <a href="http://www.alparray.ethz.ch/en/home/">AlpArray Seismic Network</a>, three other temporary seismic networks, and permanent stations in the broader European Alpine region. We use this dataset to compile a new Moho depth map for the broader European Alps.</p> <p>In particular, we include:</p> <ol> <li>all the downloaded seismic waveform data (ZNE components; 120s before and after the theoretical P-wave arrival) prior to RF calculation apart from those from the PACASE seismic network that are under embargo.</li> <li>the radial receiver function traces in .SAC format (RRF.zip). One SAC trace per station and teleseismic earthquake.</li> <li>the transverse (TRF.zip) traces in .SAC format. </li> <li>the receiver function stacks from all the seismic stations plotted versus back-azimuth in .png format (RRF_plots.zip and TRF_plots.zip)</li> <li>moho_depth_picks.csv that contains the moho depth picks information shown in the main article Figure 8a. </li> <li>a CSV file with details of the teleseismic earthquakes.</li> <li>a list of all the seismic stations used here. </li> </ol> <p>For details on how to read and process the receiver function traces have a look at the README file of the repository.</p> <p>For more details on this dataset, have a look at our <a href="https://essd.copernicus.org/preprints/essd-2022-397/">manuscript</a> entitled “Moho depths beneath the European Alps: a homogeneously processed map and receiver functions database” in Earth System Science Data (ESSD) journal and our <a href="https://github.com/kemichai/rfmpy">GitHub repository</a>. </p> <p> </p> <p> </p> <p> </p>
Figure 50 in CRICOTOPUS (S. STR.) LATELLAI SP. N., A NEW RHEOPHILIC SPECIES OF THE TREMULUS-GROUP FROM THE ITALIAN AND FRENCH MARITIME ALPS (DIPTERA: CHIRONOMIDAE) Abstract
Figure 50. Riffles and waterfalls (altitude 1700-1800 m) delimited by the upper basin of the River Po at 'Pian del Re', Alpi Marittime, north-western Italy. Photo J. Moubayed-Breil, 09.07.2017.
Figures 45-49 in CRICOTOPUS (S. STR.) LATELLAI SP. N., A NEW RHEOPHILIC SPECIES OF THE TREMULUS-GROUP FROM THE ITALIAN AND FRENCH MARITIME ALPS (DIPTERA: CHIRONOMIDAE) Abstract
Figures 45-49. Larva of Cricotopus latellai sp. n. 45, head, right side, lateral view; 46, head capsule, dorsal; 47, antenna; 48, mentum, half part; 49, procercus with dorsal and anal setae, lateral view.
Figure 51 in CRICOTOPUS (S. STR.) LATELLAI SP. N., A NEW RHEOPHILIC SPECIES OF THE TREMULUS-GROUP FROM THE ITALIAN AND FRENCH MARITIME ALPS (DIPTERA: CHIRONOMIDAE) Abstract
Figure 51. Geographical distribution of the five currently known Cricotopus species (tremulus-group) in the Tyrrhenian Region delimited by continental France, Italy, Spain and Corsica: C. latellai sp. n. ⦿, C. mantetanus ✻, C. nevadensis ✪, C. royanus ✩, C. tremulus ✭.
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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.