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1,579 results for “Baltics”
Figure 15 from: Schmidt J, Belousov I, Michalik P (2016) X-ray microscopy reveals endophallic structures in a new species of the ground beetle genus Trechus Clairville, 1806 from Baltic amber (Coleoptera, Carabidae, Trechini). ZooKeys 614: 113-127. https://doi.org/10.3897/zookeys.614.9283
Figure 15 - Trechus exhibitorius sp. n., holotype, volume rendering of the aedeagal median lobe with endophallus. a right lateral aspect b dorsal aspect c left lateral aspect d, same as c, but with contours of the two copulatory pieces indicated by coloured lines.
Figures 13-14 from: Schmidt J, Belousov I, Michalik P (2016) X-ray microscopy reveals endophallic structures in a new species of the ground beetle genus Trechus Clairville, 1806 from Baltic amber (Coleoptera, Carabidae, Trechini). ZooKeys 614: 113-127. https://doi.org/10.3897/zookeys.614.9283
Figures 13-14 - Trechus exhibitorius sp. n., holotype, volume rendering of selected body parts. 13 frontal view inside the abdomen showing the aedeagus which is fixed between the last abdominal segments 14 right front leg with protarsi i-v. Abbreviations: B = air bubble; cpa = apex of the longer copulatory piece; mla = median lobe apex; mlb = basal bulb of median lobe; pm = parameres; st = sternites; tg = tergites.
Figures 7-12 from: Schmidt J, Belousov I, Michalik P (2016) X-ray microscopy reveals endophallic structures in a new species of the ground beetle genus Trechus Clairville, 1806 from Baltic amber (Coleoptera, Carabidae, Trechini). ZooKeys 614: 113-127. https://doi.org/10.3897/zookeys.614.9283
Figures 7-12 - Trechus exhibitorius sp. n., holotype, volume rendering of selected body parts. 7 head, ventral aspect 8 head, anterior part, dorsal aspect 9 mandibles, view from dorsal (the dorsal surface of the right mandible is cut together with the labrum in order to show the mandibular dentition; the contour of the apical portion of the right mandible is indicated by a dotted line) 10 elytra, caudal aspect 11 elytral epipleuron and left external part of metathorax 12 elytra and abdomen, right lateral aspect. Abbreviations: aed = aedeagus; cl = clypeus; hs = humeral series; lbr = labrum; M = phoretic mite; meps = metepisternum; ms = medial series; mt = mentum; pas = preapical seta; rst = recurrent stria; sas = subapical series; smt = submentum; ta, tb, tm = apical, basal, medial denticle of the right mandible.
Figures 4-6 from: Schmidt J, Belousov I, Michalik P (2016) X-ray microscopy reveals endophallic structures in a new species of the ground beetle genus Trechus Clairville, 1806 from Baltic amber (Coleoptera, Carabidae, Trechini). ZooKeys 614: 113-127. https://doi.org/10.3897/zookeys.614.9283
Figures 4-6 - Trechus exhibitorius sp. n., volume rendering of the holotype, anterior portion. 4 dorsal aspect 5 ventral aspect 6 right lateral aspect.
Figures 1-3 from: Schmidt J, Belousov I, Michalik P (2016) X-ray microscopy reveals endophallic structures in a new species of the ground beetle genus Trechus Clairville, 1806 from Baltic amber (Coleoptera, Carabidae, Trechini). ZooKeys 614: 113-127. https://doi.org/10.3897/zookeys.614.9283
Figures 1-3 - Trechus exhibitorius sp. n., light microscopic images of the holotype. 1 general view of the fossil with contours of the amber piece 2 left lateral aspect 3 dorsal aspect.
Data on the Nordic-Baltic pine wood nematode surveys
<p>These files contain the data needed for assessing the confidence in pest freedom gained in the Estonian, Finnish, Lithuanian, Norwegian and Swedish pine wood nematode (PWN) surveys using the NoBaSURV-PWN application (https://nobasurv-pwn.rahtiapp.fi/).</p> <p>The data covers PWN surveys from the following years:</p> <ul> <li>Estonia, 2002–2021</li> <li>Finland, 2000–2021</li> <li>Lithuania, 2015–2021</li> <li>Norway, 2000–2019</li> <li>Sweden, 2013–2021</li> </ul> <p>In all the files, the first row has the names of the regions included and the first column has the years considered, and the data in the table is arranged accordingly.</p> <p>Details about the surveys and the data files will be provided in the final report of the project the project <a href="https://www.ruokavirasto.fi/en/organisations/risk-assessment/projects-of-risk-assessment/plant-health/nordic-baltic-alueen-mantyankeroiskartoitusten-tilastollinen-luotettavuus/">“Assessing the confidence in pest freedom gained in the past pine wood nematode surveys”</a> funded by the European Food Safety Authority (GP/EFSA/ENCO/2020/03 - Partnering grants). The aim of the project is to build capacity for assessing the probability of pest freedom gained in past PWN surveys. The project is a co-operation between the Finnish Food Authority, the Estonian Agriculture and Food Board, the Lithuanian State Plant Service under the Ministry of Agriculture, the Norwegian Scientific Committee for Food and Environment and the Swedish University of Agricultural Sciences.</p>
Fossil Cymbiodyta from Baltic amber confirms Euro-American ancient distribution of the genus (Coleoptera: Hydrophilidae)
<p>Original photographs, SEMs and data for the paper.</p>
Fig. 7. Relative ATPase activity treated with 21 in Seasonal variation of phenolic compounds in Zostera marina (Zosteraceae) from the Baltic Sea
Fig. 7. Relative ATPase activity treated with 21 in micromolar range.
Fig. 3 in Seasonal variation of phenolic compounds in Zostera marina (Zosteraceae) from the Baltic Sea
Fig. 3. Chemical structure and HMBC key correlations of 7′′,8′′ -didehydrosalvianolic acid B.
Figure 3 in Hatching success in brackish water of Perca fluviatilis eggs obtained from the western Baltic Sea
Figure 3. - Distribution of the overall clades of perch Perca fluviatilis in Europe, upper map and western Baltic Sea, lower map; Sweden (SWE), Denmark (DEN) and Germany (GER). The pie charts show the relative distribution within a sampling site, and the size of the pie chart the relative sample size. * = fusion of 2 sample sites, ** = fusion of 3 sample sites, *** = fusion of 5 sample sites, **** = fusion of 6 sample sites. Colours are uniform with colours in figure 2.
Figure 2 in Hatching success in brackish water of Perca fluviatilis eggs obtained from the western Baltic Sea
Figure 2. - Haplotype network of perch Perca fluviatilis in Europe (n = 707). Each line represents one base pair substitution. Two component numbers (x-y) refers to clade number (x) and haplotype (y). Circle sizes are relative to number of individuals (see text for references).
Figure 1 in Hatching success in brackish water of Perca fluviatilis eggs obtained from the western Baltic Sea
Figure 1. - Experimental setup for the egg hatching study of Perca fluviatilis. A, B: Fertilized egg strands curled up among reeds in the brackish water of Ishøj Harbour (ISH), 55°36'32"N, 12°23'10"E; C: Reduced egg strands in one liter aquaria containing water with salinities of 4, 7, 10 or 12‰ (n = 8 for each treatment); D: A total of 32 aquaria (one liter) placed in a 12°C water bath at Den Blå Planet National Aquarium Denmark, in order to stabilize temperature close to the optimal level for incubation of perch eggs.
Fig. 10 in Strophomenide and orthotetide Silurian brachiopods from the Baltic region, with particular reference to Lithuanian boreholes
Fig. 10. Morinorhynchus rubeli sp. nov. A. VU B20499, ventral exterior (A1), and interior (A2), Nova Beds of Dubysa Formation (Gorstian–Ludfordian), Šiupyliai−69, 879.4 m, × 6. B. VU B20498, holotype, ventral exterior (B1), and interior (B2), Mituva Formation (Ludfordian), Virbalis−5, 881.5 m, × 4. C. VU B20501, dorsal interior, Ventspils Formation (Ludfordian), Kurtuvėnai−162, 1097.2 m, × 2. D. VU B20500, dorsal interior, Vievis Formation (Pridoli), Grauţai−105, 580.9 m, × 5. E. VU B10146, dorsal exterior (E1), and interior (E2), Mituva Formation (Ludfordian), Virbalis−5, 887.45 m, × 5.
Fig. 2 in Strophomenide and orthotetide Silurian brachiopods from the Baltic region, with particular reference to Lithuanian boreholes
Fig. 2. Correlation of the Silurian of west, central and east Lithuania with the international Silurian stages, the East Baltic regional stages and the graptolite and conodont zones.
Fig. 3 in Strophomenide and orthotetide Silurian brachiopods from the Baltic region, with particular reference to Lithuanian boreholes
Fig. 3. Ranges of Silurian plectambonitoidean, strophomenoidean, and orthotetoidean brachiopods within the Lithuanian boreholes (see Appendix, Table 1 for details).
The NOrdic-Baltic Randomized Registry Study for Evaluation of PCI in Chronic Total Coronary Occlusion
ClinicalTrials.gov study NCT03392415. IPD Sharing: NO. Countries: 1. Publications: 2.
Data from: Baltic pipefish females need twice as many males as they get
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Data from: Evidence for adaptive phenotypic differentiation in Baltic Sea sticklebacks
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Community weighted mean traits of multi-trophic communities in the Baltic Sea
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Data from: Local adaptation and oceanographic connectivity patterns explain genetic differentiation of a marine diatom across the North Sea-Baltic Sea salinity gradient
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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.