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Text-fig. 2. Dichotomising terminal shoots of Lepidodendron ophiurus BRONGN. from Brymbo (bed C4). No 2013.43G.147 (National Museum of Wales) (from Thomas et al. 2019). in Why Lycospora Dominated Many Pennsylvanian Spore Assemblages
Text-fig. 2. Dichotomising terminal shoots of Lepidodendron ophiurus BRONGN. from Brymbo (bed C4). No 2013.43G.147 (National Museum of Wales) (from Thomas et al. 2019).
Text-fig. 3. Terminal cone attached to Lepidodendron ophiurus BRONGN., leafy shoot. No. 2013.43G.120 (National Museum of Wales). in Why Lycospora Dominated Many Pennsylvanian Spore Assemblages
Text-fig. 3. Terminal cone attached to Lepidodendron ophiurus BRONGN., leafy shoot. No. 2013.43G.120 (National Museum of Wales).
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. 5. Fossil remains of a leafy Lepidodendron ophiurus BRONGN. shoot bearing a Flemingites strobilus produced by a tree similar to that shown in Text-fig. 2a; Middle Coal Measures Formation (Duckmantian – upper Bashkirian), Brymbo, near Wrexham, UK (see Thomas et al. 2020: fig. 16b); National Museum Wales specimen 2013.43G.120. in Naming Of Parts: The Use Of Fossil-Taxa In Palaeobotany
Text-fig. 5. Fossil remains of a leafy Lepidodendron ophiurus BRONGN. shoot bearing a Flemingites strobilus produced by a tree similar to that shown in Text-fig. 2a; Middle Coal Measures Formation (Duckmantian – upper Bashkirian), Brymbo, near Wrexham, UK (see Thomas et al. 2020: fig. 16b); National Museum Wales specimen 2013.43G.120.
Text-fig. 2. The distinction between fossil plants (a) and plant fossils (b). a: Reconstruction of a late Carboniferous arborescent lycopsid, often referred to as the Lepidodendron-tree; artwork by A. Townsend (formerly of National Museum Wales, Cardiff, UK; see Townsend et al. 1998); b: Lepidodendron aculeatum STERNB.; Middle Coal Measures Formation (Duckmantian – upper Bashkirian), Brymbo, near Wrexham, UK (see Thomas et al. 2020: fig. 16b); National Museum Wales specimen 2013.43G.88. in Naming Of Parts: The Use Of Fossil-Taxa In Palaeobotany
Text-fig. 2. The distinction between fossil plants (a) and plant fossils (b). a: Reconstruction of a late Carboniferous arborescent lycopsid, often referred to as the Lepidodendron-tree; artwork by A. Townsend (formerly of National Museum Wales, Cardiff, UK; see Townsend et al. 1998); b: Lepidodendron aculeatum STERNB.; Middle Coal Measures Formation (Duckmantian – upper Bashkirian), Brymbo, near Wrexham, UK (see Thomas et al. 2020: fig. 16b); National Museum Wales specimen 2013.43G.88.
Text-fig. 1. The pioneers of scientific palaeobotany whose ideas laid the foundations of how we now name plant fossil-taxa. a: Ernst von Schlotheim (1764 – 1821); b: Kaspar Maria von Sternberg (1761 – 1837), reproduced by permission from J. Kvaček (National Museum, Prague); c: Adolphe Brongniart (1801 – 1876). Adapted from Cleal and Thomas (2019: fig. 2.1). in Naming Of Parts: The Use Of Fossil-Taxa In Palaeobotany
Text-fig. 1. The pioneers of scientific palaeobotany whose ideas laid the foundations of how we now name plant fossil-taxa. a: Ernst von Schlotheim (1764 – 1821); b: Kaspar Maria von Sternberg (1761 – 1837), reproduced by permission from J. Kvaček (National Museum, Prague); c: Adolphe Brongniart (1801 – 1876). Adapted from Cleal and Thomas (2019: fig. 2.1).
Text-fig. 17. White Patch fossil sites (18°56′10.9″S: 34°38′41.0″E) Gorongosa National Park, south of the 4×4 vehicle track from Urema to Muanza. 1 – Marine molluscs, 2 – Bones, 3 – Bones, 4 – Marine snails (these sites were subsequently named GPL 12 and GPL 12b by d'Oliveira Coelho et al. 2021). Image modified from Google Earth. in Stratigraphy, Chronology And Palaeontology Of The Tertiary Rocks Of The Cheringoma Plateau, Mozambique
Text-fig. 17. White Patch fossil sites (18°56′10.9″S: 34°38′41.0″E) Gorongosa National Park, south of the 4×4 vehicle track from Urema to Muanza. 1 – Marine molluscs, 2 – Bones, 3 – Bones, 4 – Marine snails (these sites were subsequently named GPL 12 and GPL 12b by d'Oliveira Coelho et al. 2021). Image modified from Google Earth.
Figures 17–21 in Three new species of eriophyoid mites from Maixiu National Forest Park, Qinghai Province, China (Acari: Eriophyoidea)
Figures 17–21. Diptacus acutifolius sp. nov., female. 17. Lateral mite. 18. Dorsal mite. 19. Lateral opisthosoma (enlarged). 20. Empodium (enlarged). 21. Coxal-genital region. Scale bars: 17–18, 21 = 20 μm.
Figures 9–16 in Three new species of eriophyoid mites from Maixiu National Forest Park, Qinghai Province, China (Acari: Eriophyoidea)
Figures 9–16. Aculops brevifolis sp. nov., female. 9. Antero-dorsal mite. 10. Coxal-genital region (Note: the coverflap of female flipped up). 11. Antero-lateral view. 12. Empodium (enlarged). 13. Lateral opisthosoma (enlarged). 14. Postero-dorsal mite. 15. Genital region of male. 16. Leg I (enlarged). Scale bars: 9–11, 15–16 = 10 μm.
Figures 1–8 in Three new species of eriophyoid mites from Maixiu National Forest Park, Qinghai Province, China (Acari: Eriophyoidea)
Figures 1–8. Phyllocoptes angustais sp. nov., female. 1. Antero-dorsal mite. 2. Coxal-genital region (the coverflap of female flipped up). 3. Empodium (enlarged). 4. Antero-lateral view. 5. Lateral opisthosoma (enlarged). 6. Postero-lateral mite. 7. Leg I (enlarged). 8. Genital region of male. Scale bars: 1–2, 4, 7–8 = 10 μm.
Supplementary material 1 from: Schmeller D, Maier A, Evans D, Henle K (2012) National responsibilities for conserving habitats – a freely scalable method. Nature Conservation 3: 21-44. https://doi.org/10.3897/natureconservation.3.3710
The annex does provide a more detailed comparison of the different biogeographic maps. It further gives a list of all forest habitats given in the EU Habitats Direction
CATCH-EyoU: Processes in Youth's Construction of Active EU Citizenship: Cross-national Wave 1 Questionnaires: Italy, Sweden, Germany, Greece, Portugal, Czech Republic, UK, and Estonia: EXTRACT: Identification with Europe and Home Country
<p>It is a well-established fact that forming a mature and coherent political identity is one developmental task in adolescence and young adulthood. However, given different degrees of commitment on the regional, national, and European level, the question remains whether young people’s identification varies among those spheres? Drawing on data from the European Catch-EyoU-project, it was the goal of this study to examine whether young people can be classified according to their identification toward their home country and Europe and how these types are associated with age, gender, country as well as political interest, tolerance, and political participation. The study is based on adolescents and young adults from the Czech Republic, Germany, Great Britain, Greece, Estonia, Italy, Portugal, and Sweden (<em>N </em>= 9,339; <em>M</em>age=19.62; 59.1% female). Cluster analysis revealed five types of young people’s identification with country and Europe which showed significant associations between group membership and tolerance, political interest, and participation. The implications of distinguishing types of identification and their associations with political outcomes are discussed.</p>
Input data for: Combining global tree cover loss data with historical national forest-cover maps to look at six decades of deforestation and forest fragmentation in Madagascar.
<p>This repository includes input data used in the following article:</p> <p><strong>Vieilledent G., C. Grinand, F. A. Rakotomalala, R. Ranaivosoa, J.-R. Rakotoarijaona, T. F. Allnutt, and F. Achard.</strong> Combining global tree cover loss data with historical national forest-cover maps to look at six decades of deforestation and forest fragmentation in Madagascar.</p> <p>For this article, data have been processed with a R/GRASS script. The development version of this script is available on GitHub at https://github.com/ghislainv/deforestation-maps-Mada. The last release of this script is archived on Zenodo: [DOI: 10.5281/zenodo.1118484].</p>
Output data from: Combining global tree cover loss data with historical national forest-cover maps to look at six decades of deforestation and forest fragmentation in Madagascar.
<p>This repository includes output data from the following article:</p> <p><strong>Vieilledent G., C. Grinand, F. A. Rakotomalala, R. Ranaivosoa, J.-R. Rakotoarijaona, T. F. Allnutt, and F. Achard</strong>. Combining global tree cover loss data with historical national forest-cover maps to look at six decades of deforestation and forest fragmentation in Madagascar.</p> <p>This repository includes Madagascar forest cover (forXXXX.tif), forest density (fordensXXXX.tif), distance to forest edge (dist_edge_XXXX.tif) and forest fragmentation index (fragXXXX.tif) for the years 1953, 1973, 1990, 2000, 2005, 2010 and 2014. Data are available as GeoTIFF raster files at 30m resolution in the UTM 38S projection (EPSG:32738).</p>
FIGURE 16 in Herpetological Survey of Iona National Park and Namibe Regional Natural Park, with a Synoptic List of the Amphibians and Reptiles of Namibe Province, Southwestern Angola
FIGURE 16. Adult Dwarf Plated Lizard, Cordylosaurus subtessellatus (Smith, 1844), from near Espinheira. Photo by Edward Stanley.
FIGURE 19 in Herpetological Survey of Iona National Park and Namibe Regional Natural Park, with a Synoptic List of the Amphibians and Reptiles of Namibe Province, Southwestern Angola
FIGURE 19 – Adult Karoo Sand Snake, Psammophis notostictus Peters, 1867, from Espinheira. Photo by Luis Ceríaco.
FIGURE 8 in Herpetological Survey of Iona National Park and Namibe Regional Natural Park, with a Synoptic List of the Amphibians and Reptiles of Namibe Province, Southwestern Angola
FIGURE 8. Adult Barnard's Namib Day Gecko, Rhoptropus barnardi Hewitt, 1926, from Kamanjab, Kunene Region, Namibia. Photo courtesy of Johan Marais.
FIGURE 3 in Herpetological Survey of Iona National Park and Namibe Regional Natural Park, with a Synoptic List of the Amphibians and Reptiles of Namibe Province, Southwestern Angola
FIGURE 3. Anchieta's Ground Agama, Agama anchietae Bocage, 1866, from Sesfontein, Kunene Region, Namibia. Photo courtesy of Johan Marais.
FIGURE 2 in Herpetological Survey of Iona National Park and Namibe Regional Natural Park, with a Synoptic List of the Amphibians and Reptiles of Namibe Province, Southwestern Angola
FIGURE 2. Marbled Rubber Frog, Phrynomantis annectens Werner, 1910, from Palmwag, Kunene Region, Namibia. Photo courtesy of Randall Babb.
FIGURE 7 in Herpetological Survey of Iona National Park and Namibe Regional Natural Park, with a Synoptic List of the Amphibians and Reptiles of Namibe Province, Southwestern Angola
FIGURE 7. Juvenile Angolan Thick-toed Gecko, Pachydactylus angolensis (Loveridge, 1944), from Chimalavera, Benguela Province, Angola. Photo by Luis Ceríaco.
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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.