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FIGURE 3 in Underestimated diversity in one of the world's best studied mountain ranges: The polyploid complex of Senecio carniolicus (Asteraceae) contains four species in the European Alps
FIGURE 3. Representative shapes of rosette leaves (left) and cauline leaves (right) of Senecio insubricus (A) and S. disjunctus (B). Drawings: R. Flatscher.
FIGURE 1 in Underestimated diversity in one of the world's best studied mountain ranges: The polyploid complex of Senecio carniolicus (Asteraceae) contains four species in the European Alps
FIGURE 1. Iconography of Senecio carniolicus (A), S. insubricus (B), S. noricus (C) and S. disjunctus (D). Drawings: R. Flatscher.
FIGURE 4 in Underestimated diversity in one of the world's best studied mountain ranges: The polyploid complex of Senecio carniolicus (Asteraceae) contains four species in the European Alps
FIGURE 4. Representative individuals of Senecio carniolicus (A, Almerhorn, population 58 from Sonnleitner et al. 2010), S. insubricus (B; Plose, population 46), S. noricus (C; Bretthöhe, population 80), and S. disjunctus (D; Bretthöhe, population 80). Note the characteristic differences in indumentum density and leaf dissection as well as in the number of capitula per synflorescence. Photographs: M. Sonnleitner.
FIGURE 5 in Underestimated diversity in one of the world's best studied mountain ranges: The polyploid complex of Senecio carniolicus (Asteraceae) contains four species in the European Alps
FIGURE 5. Distribution of the four species of the Senecio carniolicus agg. in the Eastern Alps based on Sonnleitner et al. (2010); S. carniolicus (A), S. insubricus (B), S. noricus (C) and S. disjunctus (D). Morphometrically evaluated populations are marked with a black dot.
FIGURE 5. Urtica dioica L in Weeding the nettles III: Named nonsense versus named morphotypes in European Urtica dioica L. (Urticaceae)
FIGURE 5. Urtica dioica L. subsp. dioica var. glabrata: (all M. Weigend 7097), A. Habit, B. Node with leaf pair with abaxial (left) and adaxial (right) surface, C. Achene, D. Stem only sparsely pubescent, E. Node with stipules, F. Leaf pair with female inflorescences.
FIGURE 3. Urtica dioica L in Weeding the nettles III: Named nonsense versus named morphotypes in European Urtica dioica L. (Urticaceae)
FIGURE 3. Urtica dioica L. subsp. dioica var. sarmatica: (A: M. Weigend 9328, B, C: M. Weigend 9327), A. Node with leaf pair and female inflorescences, B. Node with leaf pair and male inflorescences, leaf surface is weakly covered with stinging hairs, C. Node with stipules and male inflorescences.
FIGURE 2. Urtica dioica L in Weeding the nettles III: Named nonsense versus named morphotypes in European Urtica dioica L. (Urticaceae)
FIGURE 2. Urtica dioica L. subsp. dioica var. hispida: (A, D–F: M. Weigend 8109, B, C, G: M. Weigend 8108), A. Habit with dense indument appearing nearly white, B. Node with leaf pair and male inflorescences, C. Node with leaf pair and female inflorescences, D. Node with stipules, E. Stem densely covered with stinging hairs and bristles, F. Female inflorescence: perianth with stinging hairs, G. Abaxial leaf surface with stinging hairs, leaf margins coarsely and deeply serrate, H. Typical open habitat on calcareous ground between rocks in the Swiss Alps.
FIGURE 4. Urtica dioica L in Weeding the nettles III: Named nonsense versus named morphotypes in European Urtica dioica L. (Urticaceae)
FIGURE 4. Urtica dioica L. subsp. dioica var. holosericea: (B, E: Opf. 8100, C, D, F: Opf. 8099), A. Habit with typical beaded female inflorescences, B. Node with leaf pair and female inflorescences, C. Node with leaf pair and male inflorescences, D. Stem fine pubescent with only few stinging hairs, E. Leaves of the upper and median portion of the stem narrowly ovate, only marginally cordate, leaf margins shallowly crenate to serrate, F. Node with stipules.
FIGURE 1. Urtica dioica L in Weeding the nettles III: Named nonsense versus named morphotypes in European Urtica dioica L. (Urticaceae)
FIGURE 1. Urtica dioica L. subsp. dioica var. dioica: (A: N. Dostert s.n., B–D: M. Weigend 9388), A. Habit with female inflorescences, B. Node with broadly ovate leaves with a cordate base and female inflorescences, leaf margin coarsely serrate, C. Adaxial leaf surface, D. Abaxial leaf surface; both sides densely covered with stinging hairs.
FIGURE 6 in Allium urusakiorum (Amaryllidaceae), a new member of the Balkan clade of the section Oreiprason from European Turkey
FIGURE 6. Allium urusakiorum: fruiting umbel (A), flowering umbel (B), bulb-like bases of stems (C).
FIGURE 2 in Allium urusakiorum (Amaryllidaceae), a new member of the Balkan clade of the section Oreiprason from European Turkey
FIGURE 2. Plastid DNA Bayesian consensus tree of the European species of Allium sect. Oreiprason from trnL–trnF and rpl32–trnL (UAG). Numbers by nodes represent bootstrap support (100 replicates) and Bayesian probabilities. Bayesian probabilities over 0.98 and bootstrap support over 95% are indicated with a black dot.
FIGURE 1 in Allium urusakiorum (Amaryllidaceae), a new member of the Balkan clade of the section Oreiprason from European Turkey
FIGURE 1. ITS Bayesian consensus tree of the European species of Allium sect. Oreiprason. Numbers by nodes represent bootstrap support (100 replicates) and Bayesian probabilities. Bayesian probabilities over 0.98 and bootstrap support over 95% are indicated with a black dot.
Supplement videos for manuscript Impacts of storm "Zyprian" on middle and upper atmosphere observed from Central European stations
<p>Supplement video material for the manuscript Impacts of storm “Zyprian” on middle and upper atmosphere observed from Central European stations. It contains loop of MSG satellite observation and infrasound animations.</p>
FIGURE 1 in New combinations in Struthiopteris spicant for the European flora
FIGURE 1. Two homophyllous varieties of Struthiopteris spicant. a. var. fallax (MACB 109359), with detail of sori; bar = 1.0 cm (general view), 0.6 cm (detail). b. var. homophyllum (MACB 109358), with detail of sori; bar = 3.2 cm (general view), 1.3 cm (detail).
FIGURE 3 in Onobrychis mehmetchiquii (Fabaceae) sp. nov, a new species from European Turkey
FIGURE 3. Fruits of Onobrychis mehmetchiquii Aybeke & Dane sp. nov. (holotype EDTU 15050). A: infrutisence bearing immature fruits. B–E: fruits at different stages of maturity. F–G: Mature infrutisence and fruits.
FIGURE 2 in Onobrychis mehmetchiquii (Fabaceae) sp. nov, a new species from European Turkey
FIGURE 2: Floral morphology of Onobrychis mehmetchiquii Aybeke & Dane sp. nov. (holotype EDTU 15050). A: Calyx. B: Standard. C: Keel. D: Wings. E: Androecium. F: Pistil.
FIGURE 1 in Onobrychis mehmetchiquii (Fabaceae) sp. nov, a new species from European Turkey
FIGURE 1. Morphology of Onobrychis mehmetchiquii Aybeke & Dane sp. nov. (holotype EDTU 15050). A: General view of the specimen. B–C: Bottom and cauline leaflets, respectively. D: Inflorescence and some opened flowers.
FIGURE 2 in Validation of Cathaya vanderburghii (Pinaceae) from European Neogene
FIGURE 2. Cathaya vanderburghii Winterscheid & Gossmann, Lower Rhine Basin (North Rhine-Westphalia, Germany), early Pliocene. A–E. Ovuliferous scale from adaxal (left) and abaxial (right) view, in C–E with seeds in situ in adaxal view [UTR12003–7, 8, 9, 10, 11]. F–I. Ovuliferous and bract scales. G. Abaxal view on ovoliferous scale from F [UTR12003–6, 45]. K–L. Two seeds from abaxial (left) and adaxial (right) view [UTR12003–12]. Scale bars. A–F, H–I = 4 mm; G, K–L = 2 mm.
FIGURE 1 in Validation of Cathaya vanderburghii (Pinaceae) from European Neogene
FIGURE 1. Cathaya vanderburghii Winterscheid & Gossmann, Lower Rhine Basin (North Rhine-Westphalia, Germany), early Pliocene. A–D. Seed cones as seen from both sides. A. Holotype [UTR12003–1], B–D. Paratypes. B. [UTR12003–2], C. [UTR12003–3], D. [UTR12003–4]. Scale bars. A–D = 5 mm.
FIGURE 2 in Taxonomy and evolutionary diversification of the Central European endemic Spergularia echinosperma (Caryophyllaceae)
FIGURE 2. PCA analysis: (A) distribution of individuals in the ordination space (circles ‒ black-seeded plants, X-marks ‒ brown-seeded plants), (B) fit of the 21 morphological characters to the ordination axes. The first and the second ordination axes explain 24.3% and 16.4% of the total variation, respectively.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.