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6,170 results for “european”
Figure 1 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 1 - a–c One of the most parsimonious trees obtained from the parsimony analysis based on ITS, LSU, and Tef-1α sequence data of Tulostoma, with focus on species diversity in Europe. Bootstrap values and Bayesian Posterior Probabilities are indicated on branches. The major clades (1-11) are marked with a scale bar. The clades represent species or species groups that are discussed in more detail in the text.
Figure 17 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 17 - T. punctatum, lectotype (BPI 729033): a basidiocarps b spore ornamentation under SEM. Scale bars: a = 10 mm; b = 1 µm.
Figure 9 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 9 - T. grandisporum, holotype (M. Jeppson 8907, GB): a, e basidiocarps b capillitium c, g–i spores d basidiocarps (M. Jeppson 7735, GB) f detail of spore sac showing the fibrillose-fimbriate mouth; Scale bars: a, d–e = 10 mm; b–c = 10 µm; f = 4 mm; g–i = 1 µm.
Figure 8 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 8 - T. campestre, lectotype (NY): a–b basidiocarps c spore ornamentation under SEM. Scale bars: a, b = 10 mm; c = 1 µm.
Figure 12 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 12 - T. lusitanicum, holotype (LISU-MGA 8): a basidiocarp b spore ornamentation under SEM. Scale bars: a = 10 mm; b = 1 µm.
Figure 23 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 23 - T. rufum, lectotype (herb. Lloyd 25542, BPI): a basidiocarps b spore ornamentation under SEM. Scale bars: a = 10 mm; b = 1 µm.
Figure 20 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 20 - T. fimbriatum var. heterosporum, holotype (L 64172): a basidiocarps b spore ornamentation under SEM; spore size variation. Scale bars: a = 10 mm; b = 1 µm.
Figure 16 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 16 - Spore ornamentation under SEM of European species (cont.): a T. punctatum (M. Jeppson 7472, GB) b T. simulans (M. Jeppson 9302, GB) c T. squamosum (AH 15483) d T. striatum (AH 15543) e T. subsquamosum (M. Jeppson 3475, GB) f T. winterhoffii (M. Jeppson 2379, GB). Scale bars: 1 µm.
Figure 15 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 15 - T. hollosii, paratype (Moravec 132/51, UPS): a–b basidiocarp (single, both sides) c spore ornamentation under SEM. Scale bars: a–b = 10 mm; c = 1 µm.
Figure 24 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 24 - T. xerophilum, holotype (herb. Long 9688, BPI): a–b basidiocarps c spore ornamentation under SEM. Scale bars: a–b = 10 mm; c = 1 µm
Figure 19 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 19 - T. moravecii, isotype (PRM 667204): a basidiocarps b spore ornamentation under SEM. Scale bars: a = 10 mm; b = 1 µm.
Figure 13 from: Jeppson M, Altés A, Moreno G, Nilsson RH, Loarce Y, de Bustos A, Larsson E (2017) Unexpected high species diversity among European stalked puffballs – a contribution to the phylogeny and taxonomy of the genus Tulostoma (Agaricales). MycoKeys 21: 33-88. https://doi.org/10.3897/mycokeys.21.12176
Figure 13 - T. pannonicum, holotype (M. Jeppson 7764, GB): a, d–e basidiocarps b capillitium c, g–i spores f detail of spore sac showing the fibrillose-fimbriate mouth (M. Jeppson 7803, GB). Scale bars: a, d–e = 10 mm; b–c = 10 µm; f = 5 mm; g–i = 1 µm.
Figure 1 from: Katsanevakis S, Mackelworth P, Coll M, Fraschetti S, Mačić V, Giakoumi S, Jones P, Levin N, Albano PG, Badalamenti F, Brennan R, Claudet J, Culibrk D, D'Anna G, Deidun A, Evagelopoulos A, García-Charton J, Goldsborough D, Holcer D, Jimenez C, Kark S, Sørensen T, Lazar B, Martin G, Mazaris A, Micheli F, Milner-Gulland E, Pipitone C, Portman M, Pranovi F, Rilov G, Smith R, Stelzenmüller V, Vogiatzakis I, Winters G (2017) Advancing marine conservation in European and contiguous seas with the MarCons Action. Research Ideas and Outcomes 3: e11884. https://doi.org/10.3897/rio.3.e11884
Figure 1 - European and contiguous seas. The distribution of population in European and adjacent coastal areas is shown as well as the existing Marine Protected Areas (including the Natura-2000 sites; based on the September 2015 version of the World Database on Protected Areas) and the terrestrial and marine borders (not all shown EEZs have been ratified – in the case of non-agreed marine borders the median line is shown in the map).
Figure 5 from: Wetzel F, Despot Belmonte K, Bingham H, Underwood E, Hoffmann A, Häuser C, Mikolajczyk P, Vohland K (2017) 4th European Biodiversity Observation Network (EU BON) Stakeholder Roundtable: Pathways to sustainability for EU BONs network of collaborators and technical infrastructure. Research Ideas and Outcomes 3: e11875. https://doi.org/10.3897/rio.3.e11875
Figure 5 - Group 2 discussion: Strategies, Business Plan and EU BON sustainability (Credits: F. Wetzel)
Figure 4 from: Wetzel F, Despot Belmonte K, Bingham H, Underwood E, Hoffmann A, Häuser C, Mikolajczyk P, Vohland K (2017) 4th European Biodiversity Observation Network (EU BON) Stakeholder Roundtable: Pathways to sustainability for EU BONs network of collaborators and technical infrastructure. Research Ideas and Outcomes 3: e11875. https://doi.org/10.3897/rio.3.e11875
Figure 4 - Visualisation of Lepidoptera density occurences: World Map (darker colors indicate a higher number of occurrences) and Lepidoptera occurences chart bar per year, exemplified with the country data of Germany (EU BON European Biodiversity Portal, beta version 11/2016).
Figure 2 from: Wetzel F, Despot Belmonte K, Bingham H, Underwood E, Hoffmann A, Häuser C, Mikolajczyk P, Vohland K (2017) 4th European Biodiversity Observation Network (EU BON) Stakeholder Roundtable: Pathways to sustainability for EU BONs network of collaborators and technical infrastructure. Research Ideas and Outcomes 3: e11875. https://doi.org/10.3897/rio.3.e11875
Figure 2 - Potential organizational structure of a future EU BON, e.g. with a 'core EU BON' (blue rectangle). Presentation Dirk Schmeller (UFZ) in collaboration with Katherine Despot-Belmonte (UNEP-WCMC). (Credits: Pan X., 2015, CC BY 4.0)
Figure 1 from: Wetzel F, Despot Belmonte K, Bingham H, Underwood E, Hoffmann A, Häuser C, Mikolajczyk P, Vohland K (2017) 4th European Biodiversity Observation Network (EU BON) Stakeholder Roundtable: Pathways to sustainability for EU BONs network of collaborators and technical infrastructure. Research Ideas and Outcomes 3: e11875. https://doi.org/10.3897/rio.3.e11875
Figure 1 - How do we get from data to decisions? Extract from a presentation by Lauren Weatherdon (UNEP-WCMC). Credit: Scriberia, CC BY 4.0
Figure 3 from: Wetzel F, Despot Belmonte K, Bingham H, Underwood E, Hoffmann A, Häuser C, Mikolajczyk P, Vohland K (2017) 4th European Biodiversity Observation Network (EU BON) Stakeholder Roundtable: Pathways to sustainability for EU BONs network of collaborators and technical infrastructure. Research Ideas and Outcomes 3: e11875. https://doi.org/10.3897/rio.3.e11875
Figure 3 - Screenshot of the beta version of the EU BON European Biodiversity Portal (biodiversity.eubon.eu).
Figures 29-33 from: Gosik R, Sprick P, Czerewko K (2017) Morphology of the larvae of three Central European Strophosoma Billberg, 1820 (Coleoptera, Curculionidae, Entiminae) species. Deutsche Entomologische Zeitschrift 64(1): 27-42. https://doi.org/10.3897/dez.64.11446
Figures 29-33 - Strophosoma sus, larva of high instar, chaetotaxy. 29 - thoracic segments and first abdominal segment, 30 - third abdominal segment, 31 - the 7th – 10th abdominal segments, 32 - ventral view of abdominal segments 7th – 10th, 33 - dorsal view of abdominal segments 7th – 10th. Abbreviations: Th. I-III – thoracic segments, Abd. I-X – abdominal segments. Setae: as – alar, ps – pleural, eps – epipleural, ds – dorsal, lsts – laterosternal, eus – eusternal, pda – pedal, pds – postdorsal, prns – pronotal, prs – prodorsal, sps – spiracular sts – sternal.
Figure 34 from: Gosik R, Sprick P, Czerewko K (2017) Morphology of the larvae of three Central European Strophosoma Billberg, 1820 (Coleoptera, Curculionidae, Entiminae) species. Deutsche Entomologische Zeitschrift 64(1): 27-42. https://doi.org/10.3897/dez.64.11446
Figure 34 - Strophosoma sus, larva of high instar, head. Abbreviations: at – antenna st – stemmata. Setae: des – dorsal epicranial, fs – frontal, les - lateral epicranial, pes – postepicranial, ves – ventral.
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.