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767 results for “switzerland”
Figure 1 from: Klopfstein S, Riedel M, Schwarz M (2019) Checklist of ichneumonid parasitoid wasps in Switzerland (Hymenoptera, Ichneumonidae): 470 species new for the country and an appraisal of the alpine diversity. Alpine Entomology 3: 51-81. https://doi.org/10.3897/alpento.3.31613
Figure 1 Occurrence data of the family Ichneumonidae (1,878 species recorded from Switzerland) and butterflies and zygaenid moths (226 species). The better-covered areas on the left map mostly reflect the main excursion areas of different hymenopterists, which might or might not correspond to centres of ichneumonid diversity. Note that the scale of the colour code is exponential.
Figure 4 from: Knoblauch A, Gander A (2019) Distribution of a residual population of the Dytiscid Graphoderus bilineatus (de Geer, 1774) in the Grande Cariçaie nature reserves, Switzerland. Alpine Entomology 3: 83-91. https://doi.org/10.3897/alpento.3.30417
Figure 4 Stations in which Graphoderusbilineatus (yellow), G.cinereus (red) and G.zonatus (blue) were captured: A) in the Motte reserve and B) in the Ostende reserve in 2018. The dotted lines represent the reserve boundaries and the grey points the sampled stations in which no Graphoderus were captured. Background picture obtained from the Swiss Federal Office of Topography swisstopo.
Figure 3 from: Knoblauch A, Gander A (2019) Distribution of a residual population of the Dytiscid Graphoderus bilineatus (de Geer, 1774) in the Grande Cariçaie nature reserves, Switzerland. Alpine Entomology 3: 83-91. https://doi.org/10.3897/alpento.3.30417
Figure 3 Stations in which Graphoderusbilineatus was captured in the Motte reserve in 2014 (green) and in 2018 (yellow). The dotted lines represent the reserve boundaries and the grey points the sampled stations (2018) in which no Graphoderusbilineatus were captured. Background picture obtained from the Swiss Federal Office of Topography swisstopo.
Figure 1 from: Knoblauch A, Gander A (2019) Distribution of a residual population of the Dytiscid Graphoderus bilineatus (de Geer, 1774) in the Grande Cariçaie nature reserves, Switzerland. Alpine Entomology 3: 83-91. https://doi.org/10.3897/alpento.3.30417
Figure 1 Graphoderusbilineatus. Copyright: Yerpo [CC BY-SA 4.0 (https://creativecommons.org/licenses/by-sa/4.0)], from Wikimedia Commons.
Figure 5 from: Knoblauch A, Gander A (2019) Distribution of a residual population of the Dytiscid Graphoderus bilineatus (de Geer, 1774) in the Grande Cariçaie nature reserves, Switzerland. Alpine Entomology 3: 83-91. https://doi.org/10.3897/alpento.3.30417
Figure 5 Principal component (PC) for habitat depth, helophyte cover and hydrophyte cover for G.bilineatus (green) and G.cinereus (blue). The first principal component (PC1) explains 59% of the variance. The first two components (PC1 and PC2) explain 81% of the total variance. While factor loads of habitat depth, helophyte cover and hydrophyte cover for PC1 are similar, helophyte cover and depth strongly negatively influence PC2. Circles represent 95% probability ellipses.
Figure 2 from: Knoblauch A, Gander A (2019) Distribution of a residual population of the Dytiscid Graphoderus bilineatus (de Geer, 1774) in the Grande Cariçaie nature reserves, Switzerland. Alpine Entomology 3: 83-91. https://doi.org/10.3897/alpento.3.30417
Figure 2 Location of the sampling stations in the Grande Cariçaie nature reserves, on the south eastern shore of Lake Neuchâtel. We sampled seven reserves in 2018 (delimited in brown polygons): 1) Grèves de Cheseaux, 2) Baie d'Yvonand, 3) Cheyres, 4) Grèves de la Corbière et de Chevroux, 5) Grèves d'Ostende et de Chevroux, 6) Grèves de la Motte and 7) Cudrefin. The orange points represent the sampled stations (N = 101 stations). Background picture obtained from the Swiss Federal Office of Topography swisstopo.
Supplementary material 1 from: Knüsel S, Conedera M, Bugmann H, Wunder J (2019) Low litter cover, high light availability and rock cover favour the establishment of Ailanthus altissima in forests in southern Switzerland. NeoBiota 46: 91-116. https://doi.org/10.3897/neobiota.46.35722
: Data type: (models)
3D model of the stone surface with texture - Application of Forensic Photogrammetry and 3D Modelling to Improve Epigraphic Reading: Study of the Roman Altar of Gravesano (Ticino, Switzerland)
<p>Video of the 3D model of the stone surface with textures.</p>
Fig. 4 a in Latest Jurassic - Early Cretaceous Dasycladalean Algae (Chlorophyta) From The Morand Drilling At Montricher (Canton Of Vaud, Switzerland)
Fig. 4 a to n (scale bar: 500 µm): a random sections of laterals of Rajkaella bartheli, transition Pierre Châtel - Goldberg formations, Lower-Middle Berriasian, sample 320; b section of a lateral of Rajkaella bartheli, transition Pierre Châtel - Goldberg formations, Lower-Middle Berriasian, sample 320; c transverse section of a charophyte stalk, Charaxis sp., Goldberg Fm, Lower Berriasian, sample 324; d axial sections of charophyte stalks, Charaxis sp., Goldberg Fm, Lower Berriasian, sample 325; e transverse section of a charophyte stalk, Goldberg Fm, Lower Berriasian, sample 325; f axial section of a charophyte oogonium, Goldberg Fm, Lower Berriasian, sample 321; g tufts of secondary laterals of Rajkaella bartheli, Pierre Châtel Formation, Middle Berriasian, sample 303; h tufts of secondary laterals of Rajkaella bartheli, Pierre Châtel Formation, Middle Berriasian, sample 316; i section of a lateral of Rajkaella bartheli, Pierre Châtel Formation, Middle Berriasian, sample 319; j tufts of secondary laterals of Rajkaella bartheli, Pierre Châtel Formation, Middle Berriasian, sample 303; k section of a lateral of Rajkaella bartheli, Pierre Châtel Formation, Middle Berriasian, sample 319; l deep tangential section of a verticil of Actinoporella sp. (note: the corona structure is visible), "Urgonien jaune", Upper Hauterivian, sample 114; m oblique section of a verticil of Actinoporella sp., Pierre Châtel Formation, Middle Berriasian, sample 319; n
Fig. 2 in Latest Jurassic - Early Cretaceous Dasycladalean Algae (Chlorophyta) From The Morand Drilling At Montricher (Canton Of Vaud, Switzerland)
Fig. 2 The occurrences of the Dasycladales, few other algae and foraminifers are plotted on the lithostratigraphic log of the Morand drilling (redrawn and modified from Wilhelm et al., 2003, p. 130). Caption: *: "Marnes d'Uttins", **: "Calcaires roux", ***: Chambotte Fm
Maisernte am Wangemer Wald, Mitte des Kantons Zürich, Schweiz (harvesting mais corn on a small plot in Switzerland)
<p>Watch the fox minute 02:21 escaping from the remainder of the small field ...</p>
On the road from Switzerland to Italy over mountain pass with hydrogen fuel cell car Hyundai ix35
Open the record for dataset details and reuse information.
Linked collectors and determiners for: Oribatids from Switzerland IX (Acari: Oribatidae, Mycobatidae 2) (Acarologica Genavensia CI).
Natural history specimen data linked to collectors and determiners held within, "Oribatids from Switzerland IX (Acari: Oribatidae, Mycobatidae 2) (Acarologica Genavensia CI)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/89a89ca0-1499-4e8a-9783-166e278172a7">https://bionomia.net/dataset/89a89ca0-1499-4e8a-9783-166e278172a7</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/89a89ca0-1499-4e8a-9783-166e278172a7">https://gbif.org/dataset/89a89ca0-1499-4e8a-9783-166e278172a7</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Oribatids from Switzerland I. (Acari: Oribatida). (Acarologica Genavensia LXXXI).
Natural history specimen data linked to collectors and determiners held within, "Oribatids from Switzerland I. (Acari: Oribatida). (Acarologica Genavensia LXXXI)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/054b1fb0-3ffd-47ef-8659-d5fc6704b174">https://bionomia.net/dataset/054b1fb0-3ffd-47ef-8659-d5fc6704b174</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/054b1fb0-3ffd-47ef-8659-d5fc6704b174">https://gbif.org/dataset/054b1fb0-3ffd-47ef-8659-d5fc6704b174</a>. Formatted as a Frictionless Data package.
Figure 4 from: Vuataz L, Stucki P, Fauquet L, Bernard R (2021) Rediscovery of Stactobia eatoniella McLachlan, 1880 (Trichoptera, Hydroptilidae) in Switzerland after more than seventy years. Alpine Entomology 5: 55-60. https://doi.org/10.3897/alpento.5.67985
Figure 4 Discovered specimen (last instar larva) of Stactobia eatoniella. The larva and its case are shown in lateral (top), dorsal (bottom left), and ventral (bottom right) view. Figure adapted in Photoshop CS5 from photographs taken with a Canon 65 mm MP-E lens mounted on a Canon EOS 6D camera integrated in an LK lab imaging system (Dun, Inc., Virginia).
Figure 1 from: Vuataz L, Stucki P, Fauquet L, Bernard R (2021) Rediscovery of Stactobia eatoniella McLachlan, 1880 (Trichoptera, Hydroptilidae) in Switzerland after more than seventy years. Alpine Entomology 5: 55-60. https://doi.org/10.3897/alpento.5.67985
Figure 1 Location of the sampling site MOR 10.2 in the Morge (red symbol). Map generated in map.geo.admin.ch, scale 1: 2'500 (swisstopo, public.geo.admin.ch) and adapted in Photoshop CS5 (Adobe Systems, San Jose, CA).
Text-fig. 5. Eomys schluneggeri n. sp. from Rigi 2. a) P4 – M3; P4 sin.: Rgi 31, M1/2 sin.: DKRgi1, M1/2 dext. (reversed): DKRgi2, M3 dext. (reversed): DKRgi3. b) P – M sin.; P sin.: DKRgi4, M sin.: DKRgi5, M sin. Rgi 23, M sin.: DKRgi6. All figures at 4 3 4 1 2 3 magnification 35×. in Eomys Helveticus N. Sp. And Eomys Schluneggeri N. Sp., Two New Small Eomyids Of The Chattian (Mp 25/Mp 26) Subalpine Lower Freshwater Molasse Of Switzerland
Text-fig. 5. Eomys schluneggeri n. sp. from Rigi 2. a) P4 – M3; P4 sin.: Rgi 31, M1/2 sin.: DKRgi1, M1/2 dext. (reversed): DKRgi2, M3 dext. (reversed): DKRgi3. b) P – M sin.; P sin.: DKRgi4, M sin.: DKRgi5, M sin. Rgi 23, M sin.: DKRgi6. All figures at 4 3 4 1 2 3 magnification 35×.
Supplementary material 1 from: Chittaro Y, Sanchez A, Geiser M (2021) An updated checklist of the Cantharidae and Lycidae of Switzerland (Coleoptera, Elateroidea). Alpine Entomology 5: 77-94. https://doi.org/10.3897/alpento.5.67808
File S1
Figure 1 from: Chittaro Y, Sanchez A, Geiser M (2021) An updated checklist of the Cantharidae and Lycidae of Switzerland (Coleoptera, Elateroidea). Alpine Entomology 5: 77-94. https://doi.org/10.3897/alpento.5.67808
Figure 1 A) Habitus, B) aedeagus in ventral view, C) Swiss distribution of Cantharis quadripunctata (illustrated individual from Valsot GR); D) habitus, E) aedeagus in ventral view, F) Swiss distribution of Cantharis montana (illustrated individual from Russin GE). Only verified records based on male specimens were included in the distribution maps. Scale bar: 1 mm. (Photos by L. Magnin).
Figure 2 from: Chittaro Y, Sanchez A, Geiser M (2021) An updated checklist of the Cantharidae and Lycidae of Switzerland (Coleoptera, Elateroidea). Alpine Entomology 5: 77-94. https://doi.org/10.3897/alpento.5.67808
Figure 2 A) Habitus, B) aedeagus (dorsal view) and C) last abdominal segments (lateral view) of Malthodes crassicornis (Tannino, Chiasso); D) habitus and E) aedeagus (dorsal view) of Malthodes kahleni (Hasle, Entlebuch) (last abdominal segments damaged); F) habitus, G) aedeagus (dorsal view) and H) last abdominal segments (lateral view) of Malthodes stolzi (Bruzella); I) habitus, J) aedeagus (dorsal view) and K) last abdominal segments (lateral view) of Malthodes umbrosus (Riva S. Vitale). Scale bar: 0.5 mm. (Photos by Y. Chittaro).
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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
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.