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6,170 results for “european”
FIGURE 25 in New species of Lepidocyrtus (Collembola, Entomobryidae) from Italy with a discussion of characters defining European Lepidocyrtus lignorum-group
FIGURE 25. Lepidocyrtus thoracicus sp. nov.: Pseudopores distribution on dorsal (A) and ventral (B) surfaces.
FIGURES 18–20 in New species of Lepidocyrtus (Collembola, Entomobryidae) from Italy with a discussion of characters defining European Lepidocyrtus lignorum-group
FIGURES 18–20. Lepidocyrtus thoracicus sp. nov.: 18, Abd.IV chaetotaxy (left side), broad black circles––ciliated macrochaetae with large socket, small black circles––ciliated macrochaetae with small socket; 19, Abd.IV trichobothrial complex; 20, Abd.V chaetotaxy (left side), black circles––ciliated chaetae with length proportional to diameter socket.
FIGURES 21–24 in New species of Lepidocyrtus (Collembola, Entomobryidae) from Italy with a discussion of characters defining European Lepidocyrtus lignorum-group
FIGURES 21–24. Lepidocyrtus thoracicus sp. nov.: 21, trochanteral organ; 22, third leg unguis and unguiculus; 23, anterior face of ventral tube (left side); 24, manubrial plate (left side), circles––ciliated chaetae with length proportional to diameter socket, crossed circles––pseudopores.
FIGURES 16–17 in New species of Lepidocyrtus (Collembola, Entomobryidae) from Italy with a discussion of characters defining European Lepidocyrtus lignorum-group
FIGURES 16–17. Lepidocyrtus thoracicus sp. nov.: 16, Abd.IV photograph showing trichobothria (T2 and T4), dorsal macrochaetae (Sm, B4, B5 and B6) and dorsolateral macrochaetae (D3, De3, E2, E3, E4, F1, F2 and F3); 17, broad ciliated macrochaeta (A), long thin ciliated macrochaeta (B) and short thin ciliated macrochaeta (C).
FIGURE 15 in New species of Lepidocyrtus (Collembola, Entomobryidae) from Italy with a discussion of characters defining European Lepidocyrtus lignorum-group
FIGURE 15. Lepidocyrtus thoracicus sp. nov.: Abd.III dorsolateral chaetotaxy photograph (A) and drawing (B). Black circles– –ciliated macrochaetae.
FIGURES 12–14 in New species of Lepidocyrtus (Collembola, Entomobryidae) from Italy with a discussion of characters defining European Lepidocyrtus lignorum-group
FIGURES 12–14. Lepidocyrtus thoracicus sp. nov. dorsal chaetotaxy (left side): 12, Abd.I; 13, Abd.II; 14, Abd.III. Black circles––ciliated macrochaetae, crossed circles––pseudopores.
FIGURES 5–9 in New species of Lepidocyrtus (Collembola, Entomobryidae) from Italy with a discussion of characters defining European Lepidocyrtus lignorum-group
FIGURES 5–9. Lepidocyrtus thoracicus sp. nov.: 5, clypeal and labral chaetotaxy; 6, chaetae morphology of the apical row of the labrum, the two lateral chaetae have pointed apex (A) and the two central chaetae have bifurcate apex with two possible morphologies (B, C); 7, maxillary palp; 8, labial and postlabial chaetotaxy, p.c.—proximal chaetae of labial palp. 9, outer labial papilla.
FIGURES 10–11 in New species of Lepidocyrtus (Collembola, Entomobryidae) from Italy with a discussion of characters defining European Lepidocyrtus lignorum-group
FIGURES 10–11. Lepidocyrtus thoracicus sp. nov. dorsal chaetotaxy (left side): 10, Th.II; 11, Th.III. Empty circles––ciliated chaetae, black circle––ciliated macrochaeta, crossed circles––pseudopores.
FIGURE 2. Phylogenetic tree inferred using the Cox2 in New species of Lepidocyrtus (Collembola, Entomobryidae) from Italy with a discussion of characters defining European Lepidocyrtus lignorum-group
FIGURE 2. Phylogenetic tree inferred using the Cox2 dataset with ML. Numbers at nodes correspond to UFB values, showing only values> 75%. Vertical bars to the right of the phylogeny correspond to the three molecular species delimitation results (ASAP, ABGD and mPTP from left to right). Scale bar shows number of substitutions per site.
FIGURE 4 in New species of Lepidocyrtus (Collembola, Entomobryidae) from Italy with a discussion of characters defining European Lepidocyrtus lignorum-group
FIGURE 4. Lepidocyrtus thoracicus sp. nov.: Dorsal head chaetotaxy (left side). Broad circles––long ciliated macrochaetae, small circles––short ciliated macrochaetae.
FIGURE 1 in New species of Lepidocyrtus (Collembola, Entomobryidae) from Italy with a discussion of characters defining European Lepidocyrtus lignorum-group
FIGURE 1. Phylogenetic tree inferred using the Concatenated dataset with Maximum Likelihood (ML). Stars at nodes correspond to ultrafast bootstrap (UFB) values, and their size is proportional to the value as legend shows. Scale bar represents number of substitutions per site. 1––genus Lepidocyrtus, 2––L. lusitanicus-group, 3—L. lanuginosus-group, 4—L. pallidusserbicus-group, 5—L. lignorum-group, 6—L. curvicollis-group.
FIGURE 3 in New species of Lepidocyrtus (Collembola, Entomobryidae) from Italy with a discussion of characters defining European Lepidocyrtus lignorum-group
FIGURE 3. Lepidocyrtus thoracicus sp. nov.: Habitus lateral (A) and dorsal (B). Specimen in alcohol.
FIGURE 3. Rubus lentianus. A, B in Rubus lentianus, a new species from Austria and Germany-another piece of the puzzle from a European hotspot of Rubus series Radula
FIGURE 3. Rubus lentianus. A, B: middle section of first-year stem with leaves; C: leaf of first-year stem (upper side); D: leaf of first-year stem (lower side); E: section of first-year stem; F: inflorescence; G: part of inflorescence with a close-up of a flower; H: young collective fruit. Austria, Upper Austria, A–G: Tarsdorf, 7 July 2021, H: Aschach a. d. Donau, 7 July 2020, phot. G. Király.
FIGURE 2 in Rubus lentianus, a new species from Austria and Germany-another piece of the puzzle from a European hotspot of Rubus series Radula
FIGURE 2. Rubus lentianus: A: section of leafed first-year stem; B: detail of first-year stem; C: margin of terminal leaflet; D: infructescence; E: inflorescence axis; F: peduncle; G: flower; H: petal; I: young carpel. Del. J. Táborská.
Widespread pesticide distribution in European atmosphere questions their degradability in air - Pan-European Study of Pesticides long-range Atmospheric Transport - Full Dataset
<p>Here are the dataset, used and presented in the 2024 article entitled "Widespread pesticide distribution in European atmosphere questions their degradability in air" in Environmental Science and Technology</p> <p>For related questions:</p> <p>please contact authors Ludovic Mayer (ludovic.mayer@recetox.muni.cz)</p> <p>or corresponding authors: Gerhard Lammel (gerhard.lammel@recetox.muni.cz) or Céline Degrendele (celine.degrendele@recetox.muni.cz)</p>
Ensemble Ecological Niche Models, in 2019 and across RCP 2.6, 4.5, and 8.5 scenarios in 2050 and 2100, of 1508 European Marine Species based on Ecological Niche Models developed with Artificial Neural Networks, Maximum Entropy, Support Vector Machines, and AquaMaps at 0.5° Resolution
<p>Ensemble Ecological Niche Models, in 2019 and across RCP 2.6, 4.5, and 8.5 scenarios in 2050 and 2100, of 1508 European marine species based on Ecological Niche Models developed with (i) Artificial Neural Networks, (ii) Maximum Entropy, (iii) Support Vector Machines, and (iv) AquaMaps at 0.5° Resolution. The data report, for each 0.5° cell, how many models (from 0 to 4) overcome a model-specific decision threshold to assess species presence in the cell.</p>
FIGURE 3. Trichacis tristis. A–B in Illuminating a Dark Taxon: Revision of European Trichacis Förster (Hymenoptera Platygastridae) reveals a glut of synonyms
FIGURE 3. Trichacis tristis. A–B. Female, SMNS_Hym_Pla_000804; A. Lateral habitus; B. Dorsal habitus; C. Female, ventral habitus, SMNS_Hym_Pla_000720; D–E. Male, OSUC 45132; D. Dorsal head and mesosoma; E. Lateral habitus.
FIGURE 4 in Illuminating a Dark Taxon: Revision of European Trichacis Förster (Hymenoptera Platygastridae) reveals a glut of synonyms
FIGURE 4. Selected type specimens of Trichacis; A. T. tristis, neotype female, anterior head; B. T. tristis, neotype female, lateral habitus; C. Platygaster didas, lectotype male, dorsal habitus; D. P. pisis, lectotype male, dorsal habitus; E. P. remulus, lectotype male, dorsal habitus; F. T. vitreus, holotype female, dorsal habitus; G. T. nosferatus, holotype female, lateral habitus; H. T. weiperti, holotype female, anterior head and antenna; I. T. striata Masner, holotype female, lateral habitus image by J. Mackey, CNCI.
FIGURE 2 in Illuminating a Dark Taxon: Revision of European Trichacis Förster (Hymenoptera Platygastridae) reveals a glut of synonyms
FIGURE 2. Antennae of Trichacis and Isocybus. A. T. tristis female, SMNS_Hym_Pla_000217; B. T. tristis male, SMNS_ Hym_Pla_000220; C. Isocybus female (apical antennomere missing), SMNS_Hym_Pla_000870.
FIGURE 1 in Illuminating a Dark Taxon: Revision of European Trichacis Förster (Hymenoptera Platygastridae) reveals a glut of synonyms
FIGURE 1. Genus-level characters of Trichacis and Isocybus. A–B. Trichacis tristis female, SMNS_Hym_Pla_000797; A. Dorsal head and mesosoma, showing broad aspect of clava; B. Dorsal head showing narrow aspect of clava; C. Isocybus female, dorsal habitus, SMNS_Hym_Pla_000880; D. Isocybus female, anterior head, SMNS_Hym_Pla_000851; E. Trichacis tristis female, anterior head, SMNS_Hym_Pla_000805.
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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.