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235 results for “Western Europe”
FIGURE 2 in Africorchestia a new genus of sand-hoppers (Crustacea: Amphipoda: Talitridae) from western Africa and south-western Europe
FIGURE 2. Africorchestia quadrispinosa (K.H. Barnard, 1916), habitus, male. Grosse Bucht, Namibia (after Coleman & Leistikow 2001).
FIGURE 1 in Africorchestia a new genus of sand-hoppers (Crustacea: Amphipoda: Talitridae) from western Africa and south-western Europe
FIGURE 1. Map of south-western Europe and western Africa showing the distribution of Africorchestia species (* indicates anomalous record of A. tricornuta).
FIGURE 5 in Africorchestia a new genus of sand-hoppers (Crustacea: Amphipoda: Talitridae) from western Africa and south-western Europe
FIGURE 5. Africorchestia spinifera (Mateus, 1962), habitus, male and female. Oued Ghrifa, Asilah, Morocco.
FIGURE 7 in Africorchestia a new genus of sand-hoppers (Crustacea: Amphipoda: Talitridae) from western Africa and south-western Europe
FIGURE 7. Africorchestia tricornuta (Shoemaker, 1920), habitus, male. Landana, Democratic Republic of the Congo (after Coleman & Leistikow 2001).
FIGURE 4 in Africorchestia a new genus of sand-hoppers (Crustacea: Amphipoda: Talitridae) from western Africa and south-western Europe
FIGURE 4. Africorchestia skoogi (Stebbing, 1922), male. Skeleton Coast, Namibia (after Coleman & Leistikow 2001).
FIGURE 3 in Recent discoveries of alien Watersipora (Bryozoa) in Western Europe, with redescriptions of species
FIGURE 3. Scanning electron micrographs of Watersipora subtorquata from (A–C) St Peter Port, Guernsey and (D–F) St-Jacut-de-la-Mer, France. A, D are general views of zooids; B, E, show orifices; C, F, the left condyle at high magnification.
FIGURE 1. Watersipora subtorquata. A, B in Recent discoveries of alien Watersipora (Bryozoa) in Western Europe, with redescriptions of species
FIGURE 1. Watersipora subtorquata. A, B. Orange colonies from St Peter Port, Guernsey (no scale); C, D. Black colonies from St-Jacut-de-la-Mer, Brittany. Scale-bar marked in cm.
FIGURE 4 in Recent discoveries of alien Watersipora (Bryozoa) in Western Europe, with redescriptions of species
FIGURE 4. Light photomicrographs of orifices and opercula of Watersipora. Scale bar = 100 Μm. A–D, orifices; E–H, opercula. A. W. subtorquata, St-Jacut-de-la-Mer, France; B. W. subtorquata, St Peter Port, Guernsey; C. W. subovoidea, Arrawarra, New South Wales, Australia; D. W. subovoidea, Genoa, Italy; E. W. subtorquata, St-Jacut-de-la-Mer, France; F. W. subtorquata, St Peter Port, Guernsey; G. W. subovoidea, Naples, Italy; H. W. subovoidea, Genoa, Italy. In A–D, note the differences in condyles (the left one in each picture arrowed); in E–H, compare the sides of the central dark band, concave in W. subtorquata, parallel in W. subovoidea.
Map of the Connectivity of Western- and Central Europe based on the marriages between the Nobility, 1350-1550.
<p>Map of the Connectivity of Western- and Central Europe based on the marriages between the Nobility, 1350-1550. ArcGIS (Esri). Lines indicate a marital relationship between two individuals based on their place of birth.</p><p>See: Miara Fraikin and Meike Wiedemann, 'The "Burgundian Model" revisited: Using Digital Approaches to Explore the Reach of Burgundy', in Sanne Maekelberg and Krista De Jonge (eds.), <i>Mapping the Space of the Early Modern Court in Europe. Functionality and Representation, </i>2023, pp.13-34.</p>
Phytoliths in dicotyledons occurring in North-western Europe: Establishing a baseline
<div> <div> <div> <div> </div> </div> </div> </div> <div> <div> <div> <div> <div> <div> <p>This repository contains raw data tables, the R analysis script, plant tissue sample images, and 964 labeled microphotographs as part of the study "Phytoliths in dicotyledons occurring in North-western Europe: Establishing a baseline" published in Annals of Botany. </p> <p>The 964 microphotographs are labeled (metadata) using morphotype codes that can be found in table 2 in the paper (e.g., M-1, AMO_TUB, Tra-1...). </p> </div> </div> </div> </div> </div> </div>
Distribution. Widespread in N and NE Africa, occurring from Senegal on the W coast of Africa to Egypt in the E, in a range that includes Morocco, Algeria, Tunisia, and Libya in the N to Nigeria, Chad, and Tanzania in the S. They have expanded their range from the Arabian Peninsula into Western Europe, to Bulgaria, Austria, and NE Italy and E into Turkey, Syria, Iraq, Iran, Central Asia, the entire Indian subcontinent, then E and S to Sri Lanka, Myanmar, Thailand, and parts of Indochina. in Canidae
Distribution. Widespread in N and NE Africa, occurring from Senegal on the W coast of Africa to Egypt in the E, in a range that includes Morocco, Algeria, Tunisia, and Libya in the N to Nigeria, Chad, and Tanzania in the S. They have expanded their range from the Arabian Peninsula into Western Europe, to Bulgaria, Austria, and NE Italy and E into Turkey, Syria, Iraq, Iran, Central Asia, the entire Indian subcontinent, then E and S to Sri Lanka, Myanmar, Thailand, and parts of Indochina.
Distribution. Widespread in N and NE Africa, occurring from Senegal on the W coast of Africa to Egypt in the E, in a range that includes Morocco, Algeria, Tunisia, and Libya in the N to Nigeria, Chad, and Tanzania in the S. They have expanded their range from the Arabian Peninsula into Western Europe, to Bulgaria, Austria, and NE Italy and E into Turkey, Syria, Iraq, Iran, Central Asia, the entire Indian subcontinent, then E and S to Sri Lanka, Myanmar, Thailand, and parts of Indochina. in Canidae
Distribution. Widespread in N and NE Africa, occurring from Senegal on the W coast of Africa to Egypt in the E, in a range that includes Morocco, Algeria, Tunisia, and Libya in the N to Nigeria, Chad, and Tanzania in the S. They have expanded their range from the Arabian Peninsula into Western Europe, to Bulgaria, Austria, and NE Italy and E into Turkey, Syria, Iraq, Iran, Central Asia, the entire Indian subcontinent, then E and S to Sri Lanka, Myanmar, Thailand, and parts of Indochina.
Subspecies and Distribution. C.n.nipponTemminck,1838—SJapan(SHonshu,Shikoku,Kiushu,NRyukyu,andseveralsmallerassociatedIs). C.n.centralisKishida,1936—CJapan(N&CHonshu). C.n.grassianusHeude,1884—NChina(Shanxi);possiblyextinctinthewild. C.n.kopschiSwinhoe,1873—SEChina. C.n.mandarinusMilne-Edwards,1871—NChina(Hebei&Shandong);possiblyextinctinthewild. C.n.mantschuricusSwinhoe,1864—Ussuriland(RussianFarEast),NEChina(Heilongjiang),andpossiblyNorthKorea. C.n.pseudaxisGervais,1841—NVietnam;probablyextinctinthewild. C.n.sichuanicusGuo,Cheng&Wang,1978—SWChina(Sichuan&Gansu). C.n.taiouanusBlyth,1860—Taiwan. C. n. yesoensis Heude, 1884 — N Japan (Hokkaido). It was anciently introduced to Solo I (Philippines) and in 17" century to Kerama Is (Ryukyu Is, Japan). Also introduced in 19" and 20" centuries into British Is, mainland Europe (Austria, Czech Republic, Denmark, Finland, France, Germany, Poland, western Russia, and Ukraine), Armenia, Azerbaijan, Madagascar, New Zealand, and USA. in Cervidae
Subspecies and Distribution. C.n.nipponTemminck,1838—SJapan(SHonshu,Shikoku,Kiushu,NRyukyu,andseveralsmallerassociatedIs). C.n.centralisKishida,1936—CJapan(N&CHonshu). C.n.grassianusHeude,1884—NChina(Shanxi);possiblyextinctinthewild. C.n.kopschiSwinhoe,1873—SEChina. C.n.mandarinusMilne-Edwards,1871—NChina(Hebei&Shandong);possiblyextinctinthewild. C.n.mantschuricusSwinhoe,1864—Ussuriland(RussianFarEast),NEChina(Heilongjiang),andpossiblyNorthKorea. C.n.pseudaxisGervais,1841—NVietnam;probablyextinctinthewild. C.n.sichuanicusGuo,Cheng&Wang,1978—SWChina(Sichuan&Gansu). C.n.taiouanusBlyth,1860—Taiwan. C. n. yesoensis Heude, 1884 — N Japan (Hokkaido). It was anciently introduced to Solo I (Philippines) and in 17" century to Kerama Is (Ryukyu Is, Japan). Also introduced in 19" and 20" centuries into British Is, mainland Europe (Austria, Czech Republic, Denmark, Finland, France, Germany, Poland, western Russia, and Ukraine), Armenia, Azerbaijan, Madagascar, New Zealand, and USA.
Simulated trajectories of nocturnally migrating birds over western Europe
<p>This dataset contains simulated trajectories of 100 000 nocturnally migrating birds over western Europe, generated with an individual-based model.</p> <p>Simulations were run for fall migrations in 2015, 2016 and 2017.</p>
Supplementary material 1 from: Kadej M, Zając K, Smolis A, Tarnawski D, Tyszecka K, Malkiewicz A, Pietraszko M, Warchałowski M, Gil R (2017) The great capricorn beetle Cerambyx cerdo L. in south-western Poland – the current state and perspectives of conservation in one of the recent distribution centres in Central Europe. In: Campanaro A, Hardersen S, Sabbatini Peverieri G, Carpaneto GM (Eds) Monitoring of saproxylic beetles and other insects protected in the European Union. Nature Conservation 19: 111-134. https://doi.org/10.3897/natureconservation.19.11838
Table S1. Correlation matrix of all initial environmental layers selected for modelling in MaxEnt : Data type: statistical data
Database for the Final Palaeolithic archaeological record in western, southern and central Europe
<p>The database contains information on georeferenced archaeological sites of the Final Palaeolithic (Greenland Interstadial 1d-a and Greenland Stadial 1) from western, southern and central Europe. Additional chronocultural information (presence/absence of dated or typologically assigned assemblages) is given for each site. Sites with little chronocultural resolution are recorded, but attributed to larger timebins. The data have been compiled by the authors. The management of the data compilation and further research on the palaeodemographic implications (Schmidt et al. 2024) was conducted in the framework of the Collaborative Research Centre 806 “Our Way to Europe” (funded by the Deutsche Forschungsgemeinschaft - Project ID 57444011).</p>
FIGURE 14 in The Rhyacophila fasciata Group in Western Europe: Confirmation of Rhyacophila denticulata McLachlan 1879 (stat. prom.) and Rhyacophila sociata Navás 1916 (stat. res.), based on morphological and molecular genetic evidence (Trichoptera: Rhyacophilidae)
FIGURE 14. Spatial distribution of Rhyacophila denticulata McLachlan 1879 (14a), and R. sociata Navás 1916 in France (14b), and Spain (14c).
FIGURE 13 in The Rhyacophila fasciata Group in Western Europe: Confirmation of Rhyacophila denticulata McLachlan 1879 (stat. prom.) and Rhyacophila sociata Navás 1916 (stat. res.), based on morphological and molecular genetic evidence (Trichoptera: Rhyacophilidae)
FIGURE 13. Neighbor-joining tree of R. sociata (RSoc) (13a), R. denticulata (RDen) (13b) and R. fasciata (RFas) (13c), together with R. relicta (RRel) (13d) as outgroup, based on mitochondrial COI sequence data. Values of main branches are shown, data of specimens summarized in Table 1. RSoc1esp: Rhyacophila sociata specimens from Spain, RSoc1fra: Rhyacophila sociata specimens from France.
FIGURE 12. Segments VIII–XI in The Rhyacophila fasciata Group in Western Europe: Confirmation of Rhyacophila denticulata McLachlan 1879 (stat. prom.) and Rhyacophila sociata Navás 1916 (stat. res.), based on morphological and molecular genetic evidence (Trichoptera: Rhyacophilidae)
FIGURE 12. Segments VIII–XI of females of Rhyacophila sociata Navás 1916, R. denticulata McLachlan 1879 and R. fasciata Hagen 1859. 12L left lateral; 12D dorsal; 12V ventral. Scale bar: 1 mm.
FIGURE 10 in The Rhyacophila fasciata Group in Western Europe: Confirmation of Rhyacophila denticulata McLachlan 1879 (stat. prom.) and Rhyacophila sociata Navás 1916 (stat. res.), based on morphological and molecular genetic evidence (Trichoptera: Rhyacophilidae)
FIGURE 10. Comparison among the male genitalia of the three species: Rhyacophila sociata Navás 1916, R. denticulata McLachlan 1879, and R. fasciata Hagen 1859. 10A, 2nd segments of right inferior appendages, left lateral; 10BL–10BD, parameres: 10BL, left parameres, left lateral; 10BV, pairs of parameres, ventral; 10BD, left parameres, dorsal. 10CL–10CV, aedeagi (phallicatae) and their ventral lobes: 10CL aedeagi only, lateral; 10CV, aedeagi and their ventral lobes, ventral. 10DD–10DV, apicodorsal lobes of segment IX, preanal appendages, and bodies of segment X: 10DD, apicodorsal lobes and preanal appendages, dorsal; 10DV, bodies of segment X, ventral.
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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.