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1,579 results for “Baltics”
FIGURE 10 in Description of a new species of Cottus Linnaeus (Cottidae) from the Western Dvina / Daugava River system, Baltic Sea basin, based on integrative taxonomy
FIGURE 10. The skeleton of Cottus dorofeevi, ZIN 56917, Ovsyanka River, tributary of the Western Dvina / Daugava.
FIGURE 9 in Description of a new species of Cottus Linnaeus (Cottidae) from the Western Dvina / Daugava River system, Baltic Sea basin, based on integrative taxonomy
FIGURE 9. Illustration of the holotype of C. dorofeevi (ZIN 56916): (a) lateral view; (b) dorsal view of the head.
FIGURE 8 in Description of a new species of Cottus Linnaeus (Cottidae) from the Western Dvina / Daugava River system, Baltic Sea basin, based on integrative taxonomy
FIGURE 8. Bayesian inference for European representatives of genus Cottus (including closely related C. sibiricus) reconstructed using COI sequences. The values of the posterior probability (left) and the bootstrap support (right) are indicated for nodes. The results of species delimitation analyses (ASAP and bPTP) are presented as vertical bars.
FIGURE 6 in Description of a new species of Cottus Linnaeus (Cottidae) from the Western Dvina / Daugava River system, Baltic Sea basin, based on integrative taxonomy
FIGURE 6. The Bayesian tree of freshwater Cottoidei reconstructed using COI sequences. The topologies of the BI and ML trees were generally concordant. For each node, the values of the posterior probability (left) and the bootstrap support (right) are indicated.
FIGURE 5 in Description of a new species of Cottus Linnaeus (Cottidae) from the Western Dvina / Daugava River system, Baltic Sea basin, based on integrative taxonomy
FIGURE 5. The TCS haplotype networks (COI) for Cottus sp. "dorofeevi" and closely related sculpins C. koshewnikowi, C. gobio, C. microstomus, and C. sibiricus: (a) completely connected haplotype network generated with the PopART 1.7 software; (b) subnetworks obtained from statistical parsimony analysis in TCS 1.21. The circle (oval, rectangle) size corresponds to haplotype frequency; dashes on the lines indicate the number of nucleotide substitutions; small circles denote extinct or unsampled haplotypes.
FIGURE 4 in Description of a new species of Cottus Linnaeus (Cottidae) from the Western Dvina / Daugava River system, Baltic Sea basin, based on integrative taxonomy
FIGURE 4. The TCS haplotype networks (mt CR) for Cottus sp. "dorofeevi" and closely related sculpins C. koshewnikowi, C. gobio, C. cyclophthalmus, and C. sibiricus: (a) completely connected haplotype network generated with the PopART 1.7 software; (b) subnetworks obtained from statistical parsimony analysis in TCS 1.21. The circle (oval, rectangle) size corresponds to haplotype frequency; dashes on the lines indicate the number of nucleotide substitutions; small circles denote extinct or unsampled haplotypes.
FIGURE 11 in Description of a new species of Cottus Linnaeus (Cottidae) from the Western Dvina / Daugava River system, Baltic Sea basin, based on integrative taxonomy
FIGURE 11. Lateral line system on the head of Cottus dorofeevi (ZIN 56916). CSO, supraorabital sensory canal; CIO, infraorbital canal, CT, temporal canal; CPM, praeoperculo-mandibular canal; CLL, trunk (lateral) canal; CMT, temporal (postorbital) commissure.
FIGURE 3 in Description of a new species of Cottus Linnaeus (Cottidae) from the Western Dvina / Daugava River system, Baltic Sea basin, based on integrative taxonomy
FIGURE 3. Result of the DFA carried out on relative morphometric characters to discriminate Cottus sp. "dorofeevi", C. koshewnikowi, C. gobio, and C. microstomus.
FIGURE 2 in Description of a new species of Cottus Linnaeus (Cottidae) from the Western Dvina / Daugava River system, Baltic Sea basin, based on integrative taxonomy
FIGURE 2. Cottus sp. from the Western Dvina / Daugava River system, ♁, ZIN 56916, SL 68 mm, TL 79 mm; the Ovsyanka River, tributary of the Western Dvina / Daugava, Belarus, 55.5907° N, 30.4080° E; August 24, 2022; collectors Z.V. Zhidkov and S.A. Dorofeev. (a) lateral view; (b) dorsal view; (c) ventral view.
FIGURE 1 in Description of a new species of Cottus Linnaeus (Cottidae) from the Western Dvina / Daugava River system, Baltic Sea basin, based on integrative taxonomy
FIGURE 1. The map showing the distribution of Cottus sp. from the Western Dvina / Daugava River system. The numbers indicate sampling sites: 1, Ovsyanka River; 2, Luzhesnyanka River; 3, Lake Ostrovito near Vitebsk (Western Dvina / Daugava River system, Belarus).
FIGURE 7 in Description of a new species of Cottus Linnaeus (Cottidae) from the Western Dvina / Daugava River system, Baltic Sea basin, based on integrative taxonomy
FIGURE 7. Bayesian inference for European representatives of genus Cottus (including closely related C. sibiricus) reconstructed using mt CR sequences. The values of the posterior probability (left) and the bootstrap support (right) are indicated for nodes. The results of species delimitation analyses (ASAP and bPTP) are presented as vertical bars.
FIGURE 1 in First reliable fossil record of the subfamily Rhysipolinae (Hymenoptera: Braconidae): a new subgenus and species of the genus Rhysipolis Foerster, 1863 from Baltic amber
FIGURE 1. Rhysipolis (Granulopolis) simutniki subgen. et sp. nov. (holotype, female, Baltic amber, # 9/24.1). (A) Habitus, lateral view. (B) Head and anterior half of mesosoma, ventro-lateral view. (C) Basal antennomeres of antenna, front view. (D) Apical flagellomeres of antenna (E) Head and mesosoma, ventro-lateral view. (F) Head and mesosoma, dorsal view. (G) Head, front view. (H) Hind leg, lateral view. (I) Ovipositor and sheaths, lateral view.
FIGURE 2 in First reliable fossil record of the subfamily Rhysipolinae (Hymenoptera: Braconidae): a new subgenus and species of the genus Rhysipolis Foerster, 1863 from Baltic amber
FIGURE 2. Rhysipolis (Granulopolis) simutniki subgen. et sp. nov. (holotype, female, Baltic amber, # 9/24.1). (A) Habitus, dorsal view. (B) Wings. (C) Metasoma and ovipositor, lateral view.
Figure 3 in Phylogeographic patterns in attached and free-living marine macroalga Fucus vesiculosus (Fucaceae, Phaeophyceae) in the Baltic Sea
Figure 3: Distribution of concatenated-barcode mtDNA intergenic spacer (IGS) and 23S haplotypes found within the Baltic sea Fucus vesiculosus population. Circle size is proportional to sample size (n) and form is indicated as A (attached) or F (free-living). Site abbreviations: As, AskÖ; HS, Hiddensee; OL, Olkiluoto; SA, Saaremaa; SE, Seili; TZ, Tvärminne. Scale: 200 km.
Figure 2 in Phylogeographic patterns in attached and free-living marine macroalga Fucus vesiculosus (Fucaceae, Phaeophyceae) in the Baltic Sea
Figure 2: Haplotype network analysis of Fucus vesiculosus using (A) concatenated-barcode mtDNA intergenic spacer (IGS) and 23S, and (B) mtDNA polymorphic region-intergenic spacer (pr-IGS). Circle size is proportional to the haplotype frequency. A branch represents a genetic distance and hash marks represent a single mutation. Branches drawn in broken grey lines represent genetic distances between non-linked haplotypes [not shown in (B)]. All undrawn branches between non-linked haplotypes within B equal <2 mutations. Segment colouration indicates the geographic origin of each haplotype whilst ellipses represent the coverage of each geographic region within the network. Site abbreviations: As, AskÖ; HS, Hiddensee; OL, Olkiluoto; SA, Saaremaa; SE, Seili; TZ, Tvärminne.
Figure 1 in Phylogeographic patterns in attached and free-living marine macroalga Fucus vesiculosus (Fucaceae, Phaeophyceae) in the Baltic Sea
Figure 1: Factorial analysis using mtDNA intergenic spacer (IGS) sequences for several Fucus species. Black, red and grey points represent Fucus vesiculosus, Baltic sea F. vesiculosus, and all other Fucus species, respectively. Species within cluster A: F. vesiculosus, F. spiralis, F. vesiculosus var. spiralis, F. cottonii, F. virsoides, F. guiryi; cluster B: F. ceranoides; cluster C: F. gardneri, F. distichus, F. evanescens.
Dormant phytoplankton "back to life" after 7000 years in Baltic Sea sediments
<p>Trait data conducted with strains of the Baltic Sea diatom <em>Skeletonema marinoi, </em>with strains from different temporal cohorts.<em> </em></p> <p><em>Publication not published!</em></p>
FIGURE 2 in A new Malthinus (Coleoptera: Cantharidae: Malthininae) adds to the unrivaled diversity of arthropods found in Eocene Baltic amber
FIGURE 2. Malthinus fabriziofantii sp. nov. in Baltic amber. Holotype, dorso-lateral view, macro shot, scale bar = 0.5 mm.
FIGURE 1 in A new Malthinus (Coleoptera: Cantharidae: Malthininae) adds to the unrivaled diversity of arthropods found in Eocene Baltic amber
FIGURE 1. Malthinus fabriziofantii sp. nov. in Baltic amber. A: amber piece with inclusions, scale bar = 5 mm; B: Holotype, dorso-lateral view, scale bar = 0.5 mm.
Fig. 7 in Spaniophagus, first new Eocene genus of silken fungus beetle from Baltic amber (Coleoptera: Clavicornia: Cryptophagidae)
Fig. 7. Drawing of ventral view, Spaniophagus hoffeinsae gen. et sp.n. Рис. 7. Рисунок вентральной стороны Spaniophagus hoffeinsae gen. et sp.n.
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
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.