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1,579 results for “Baltics”
Figure 6. A in Genetic characterization of the raccoon dog (Nyctereutes procyonoides), an alien species in the Baltic region
Figure 6. A geographical distribution of the mtDNA control region haplotypes in Europe. Pie charts show the proportions of haplotypes.
Figure 5. A in Genetic characterization of the raccoon dog (Nyctereutes procyonoides), an alien species in the Baltic region
Figure 5. A Bayesian phylogenetic tree constructed from haplotypes of N. procyonoides, based on the complete sequences of the mitochondrial control region. Numbers above the branches show the Bayesian posterior probabilities. Lithuanian haplotypes were marked with solid triangles. I and II indicate the number of the haplogroup.
Figure 4. A in Genetic characterization of the raccoon dog (Nyctereutes procyonoides), an alien species in the Baltic region
Figure 4. A maximum parsimony tree constructed from haplotypes of N. procyonoides, based on the mtDNA control region. Numbers above the branches show the bootstrap values. Lithuanian haplotypes were marked with solid triangles. I and II indicate the number of the haplogroup.
Figure 2. A in Genetic characterization of the raccoon dog (Nyctereutes procyonoides), an alien species in the Baltic region
Figure 2. A maximum likelihood tree constructed from haplotypes of N. procyonoides, based on the mtDNA control region. Numbers above the branches show the bootstrap values. Lithuanian haplotypes were marked with solid triangles. I, II, and III indicate the number of the haplogroup.
Figure 1. A in Genetic characterization of the raccoon dog (Nyctereutes procyonoides), an alien species in the Baltic region
Figure 1. A map showing: (a) the distribution of raccoon dog N. procyonoides in Europe (Kauhala and Kowalczyk, 2011), and (b) the sampling localities of the present study (triangles). (b) Introduction sites are marked by circles (according to Bobrov et al., 2008). The distribution of mtDNA haplotypes belonging to haplogroup II are marked in outlined triangles.
Figure 1 in Thallisellites augustinusii sp. nov. (Coleoptera: Erotylidae: Languriinae) from Priabonian Baltic amber
Figure 1. Thallisellites augustinusii Lyubarsky et Perkovsky sp. nov.: 1A – head, frontal view; 1B – antennae; 1C – general view, dorsally.
Figure 2 in Thallisellites augustinusii sp. nov. (Coleoptera: Erotylidae: Languriinae) from Priabonian Baltic amber
Figure 2. Thallisellites augustinusii Lyubarsky et Perkovsky sp. nov.: 2A – dorsolateral view; 2B – ventral view; 2C – lateral view.
Figure 5 in An annotated checklist of supertribe Bariditae Schoenherr, 1836 (Coleoptera, Curculionidae, Conoderinae) in southeastern Baltic region
Figure 5. Baris species (Lithuania, KZM): A – dorsal habitus of B. artemisiae, B – dorsal habitus of B. nesapia, C, D – aedeagus of B.artemisiae, E, F – aedeagus of B. nesapia. Scale bar - 1 mm.
Figure 1 in An annotated checklist of supertribe Bariditae Schoenherr, 1836 (Coleoptera, Curculionidae, Conoderinae) in southeastern Baltic region
Figure 1. Limnobaris species (Lithuania, KZM): A – dorsal habitus of L. dolorosa, B – dorsal habitus of L. talbum, C – aedeagus of L. dolorosa, D – aedeagus of L. t-album. Scale bar - 1 mm.
Figure 3 in An annotated checklist of supertribe Bariditae Schoenherr, 1836 (Coleoptera, Curculionidae, Conoderinae) in southeastern Baltic region
Figure 3. Bariditae species (Lithuania, KZM): A – dorsal habitus of Aulacobaris lepidii, B – dorsal habitus of Melanobaris laticollis, C, D – aedeagus of A. lepidii, E, F – aedeagus of M. laticollis. Scale bar - 1 mm.
Figure 2 in An annotated checklist of supertribe Bariditae Schoenherr, 1836 (Coleoptera, Curculionidae, Conoderinae) in southeastern Baltic region
Figure 2. Maps of southeastern Baltic region with a grid of administrative units and shaded units with available records of Limnobaris species. A – L. dolorosa, B – L. t-album.
Figure 6 in An annotated checklist of supertribe Bariditae Schoenherr, 1836 (Coleoptera, Curculionidae, Conoderinae) in southeastern Baltic region
Figure 6. Maps of southeastern Baltic region with a grid of administrative units and shaded units area with available records of Baris species. A – B. artemisiae, B – B. nesapia.
Figure 1 in A new fossil Malthodes (Coleoptera: Cantharidae) from the Baltic amber Lagerstätte
Figure 1. Malthodes (s. str.) vallombrosa sp. nov. in Baltic amber, holotype: (A) habitus, lateral view; (B) details of forebody, lateral view. Scale bars = 0.5 mm.
Figure 2 in A new fossil Malthodes (Coleoptera: Cantharidae) from the Baltic amber Lagerstätte
Figure 2. Malthodes (s. str.) vallombrosa sp. nov. in Baltic amber, holotype: (A) detail of last tergite; (B) detail of last sternite; (C) reconstruction of last abdominal segments, lateral view. Scale bars = 0.2 mm (for A and B), 0.1 mm (for C).
Figure 9. Dipole eddy evolution from August 7 in Influence of circulation processes on cyanobacteria bloom and phytoplankton succession in the Baltic Sea coastal area
Figure 9. Dipole eddy evolution from August 7 to August 9, 2018 in the suspended matter field from OLCI Sentinel-3A data for August 7 (a) and August 8, 2018 (b) and MSI Sentinel-2B data for August 9, 2008 (c) according Krayushkin et al. (2018).
Figure 5 in Influence of circulation processes on cyanobacteria bloom and phytoplankton succession in the Baltic Sea coastal area
Figure 5. Spatial variations of optical, physical, chemical, and biological parameters along the coast of the Sambia Peninsula and the Curonian Spit. The yellow background corresponds to warm waters in eddies, the blue background corresponds to cold waters, and the grey background corresponds to waters outside eddies.
Figure 4 in Influence of circulation processes on cyanobacteria bloom and phytoplankton succession in the Baltic Sea coastal area
Figure 4. Photosynthetic active radiation attenuation coefficient (Kd) and inverse Secchi depth (D, circles) vs. turbidity and inverse Secchi depth (squares) at stations with cyanobacteria blooms (green symbols), under the influenced of cold water stations (blue symbols) and under the influenced of warm water stations (black symbols), respectively. Turbidity is given in units according to the turbidity standard for Formazine (Formazin Turbidity Unit, ftu).
Figure 3 in Influence of circulation processes on cyanobacteria bloom and phytoplankton succession in the Baltic Sea coastal area
Figure 3. Sea surface temperature (a) and chlorophyll a concentration (b) on August 22 (11:30 UTC), and sea surface temperature (c) on August 23, 2018 (12:10 UTC), all from MODIS-Aqua satellite data; (d) fragment of optical satellite image (red, green, blue composite) derived from the Ocean and Land Color Instrument (OLCI) on Sentinel-3A satellite from August 23, 2018 (9:25 UTС); (e) temperature (˚C) and salinity (f) transects along the northern coast of the Sambia Peninsula and Curonian Spit on August 23, 2018.
Figure 7 in Influence of circulation processes on cyanobacteria bloom and phytoplankton succession in the Baltic Sea coastal area
Figure 7. Vertical distribution of chlorophyll a concentration along the coastal area of the Sambia Peninsula on August 22, 2018.
Figure 8 in Influence of circulation processes on cyanobacteria bloom and phytoplankton succession in the Baltic Sea coastal area
Figure 8. Fragments of optical satellite images derived from OLCI Sentinel-2 on May 3, 2019 (a) and August 28, 2022 (b).
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.