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805 results for “Black Sea”
Fig. 1 in Meiofaunal Biodiversity In A Marine Protected Area: A Case Study In The Rocky And Sedimentary Shores Of The Snake Island (North-Western Black Sea)
Fig. 1. The map-scheme of the study area near the Snake Island (north-western Ukrainian shelf of the Black Sea).
Fig. 6 in Meiofaunal Biodiversity In A Marine Protected Area: A Case Study In The Rocky And Sedimentary Shores Of The Snake Island (North-Western Black Sea)
Fig. 6. The contribution (%) of each meiobenthic taxon to the average density and biomass in the different habitats of the Snake Island MPA (Black Sea).
Figure 8 in Taxonomic position of and generic distinction between Parepactophanes Kunz, 1935 and Taurocletodes Kunz, 1975 (Copepoda, Canthocamptidae incertae sedis), with description of a new species from the Black Sea
Figure 8. Taurocletodes tumenae sp. nov. SEM micrographs, male. A, cephalothorax, ventral, showing rostrum, antennule and antenna. B, rostrum and proximal segments of antennules. C, antennule, segments around geniculation (slender arrows: modified elements on segment 7; large arrow: recurved dentate process on segment 8). D, antennule, segments 8– 10 (recurved dentate process on segment 8 arrowed) ae = aesthetasc.
Figure 4 in Taxonomic position of and generic distinction between Parepactophanes Kunz, 1935 and Taurocletodes Kunz, 1975 (Copepoda, Canthocamptidae incertae sedis), with description of a new species from the Black Sea
Figure 4. Taurocletodes tumenae sp. nov. A, rostrum and right antennule ♂, dorsal (for complete armature of segments 3–4 see B). B, antennule ♂, segments 3–10, ventral. C, maxilla (inset showing distal syncoxal endite). D, anal somite and left caudal ramus.
Figure 9 in Taxonomic position of and generic distinction between Parepactophanes Kunz, 1935 and Taurocletodes Kunz, 1975 (Copepoda, Canthocamptidae incertae sedis), with description of a new species from the Black Sea
Figure 9. Taurocletodes tumenae sp. nov. A, P1 endopod ♀, penicillate seta on enp-3 (tubular extension arrowed). B, antennule ♂, segments 5–7, anterior (modified elements arrowed). C, fifth and sixth legs ♂, ventral (functional gonopore arrowed).
Figure 6 in Taxonomic position of and generic distinction between Parepactophanes Kunz, 1935 and Taurocletodes Kunz, 1975 (Copepoda, Canthocamptidae incertae sedis), with description of a new species from the Black Sea
Figure 6. Taurocletodes tumenae sp. nov. A, P3 ♀, anterior. B, P3 ♂ (excluding praecoxa and coxa), anterior. C, P3 exopod ♂, outer lateral. D, P3 endopod ♂, medial. E, P4 ♀, anterior. F, P4 ♂, anterior. G, ♀ genital field.
Figure 2 in Taxonomic position of and generic distinction between Parepactophanes Kunz, 1935 and Taurocletodes Kunz, 1975 (Copepoda, Canthocamptidae incertae sedis), with description of a new species from the Black Sea
Figure 2. Taurocletodes tumenae sp. nov. Female. A, urosome, dorsal. B, urosome (excluding P5-bearing somite), ventral. C, fifth pair of legs, anterior. D, anal somite and left caudal ramus, lateral.
Figure 5 in Taxonomic position of and generic distinction between Parepactophanes Kunz, 1935 and Taurocletodes Kunz, 1975 (Copepoda, Canthocamptidae incertae sedis), with description of a new species from the Black Sea
Figure 5. Taurocletodes tumenae sp. nov. A, P1 ♀, anterior. B, P1 endopod ♀, posterior. C, P2 ♀, anterior. D, P2 ♂, anterior. E, left P5 ♀, anterior.
Fig. 1 in Aleuroclava aucubae (Homoptera: Aleyrodinea), a new adventive species for Russian Black Sea Coast, and its concomitant entomoparasitic fungus Conoideocrella luteorostrata (Ascomycota: Hypocreales: Clavicipitaceae)
Fig. 1. Morphology of the prepared ultimolarva (pseudopupa) of Aleuroclava aucubae, dorsal and ventral surfaces.
Fig. 3. A in Aleuroclava aucubae (Homoptera: Aleyrodinea), a new adventive species for Russian Black Sea Coast, and its concomitant entomoparasitic fungus Conoideocrella luteorostrata (Ascomycota: Hypocreales: Clavicipitaceae)
Fig. 3. A colony of ultimolarvae (pseudopupae) of Aleuroclava aucubae on leaves of Ficus carica, and a separate ultimolarva enlarged.
Figure 16 in Deep - water hypoxic meiobenthic Protozoa and Metazoa taxa of the Istanbul Strait's (Bosporus) outlet area of the Black Sea
Figure 16. Proportion of the harpacticoids inhabiting different sediment layers along the depth gradient.
Figure 10 in Deep - water hypoxic meiobenthic Protozoa and Metazoa taxa of the Istanbul Strait's (Bosporus) outlet area of the Black Sea
Figure 10. Proportion of the main Metazoa taxa inhabiting along depth gradient at the Bosporus outlet area of the Black Sea.
Figure 9 in Deep - water hypoxic meiobenthic Protozoa and Metazoa taxa of the Istanbul Strait's (Bosporus) outlet area of the Black Sea
Figure 9. Proportion of soft-shelled foraminifera inhabiting different sediment layers along the depth gradient.
Figure 8 in Deep - water hypoxic meiobenthic Protozoa and Metazoa taxa of the Istanbul Strait's (Bosporus) outlet area of the Black Sea
Figure 8. Proportion of hard-shelled foraminifera inhabiting different sediment layers along the depth gradient.
Figure 7 in Deep - water hypoxic meiobenthic Protozoa and Metazoa taxa of the Istanbul Strait's (Bosporus) outlet area of the Black Sea
Figure 7. Distribution of the Foraminifera (hard-shelled and soft-shelled) abundance (N) along depth gradient at the Bosporus outlet area of the Black Sea.
Figure 6 in Deep - water hypoxic meiobenthic Protozoa and Metazoa taxa of the Istanbul Strait's (Bosporus) outlet area of the Black Sea
Figure 6. Proportion of the Ciliophora inhabiting different sediment layers along the depth gradient at the Bosporus outlet area of the Black Sea.
Figure 1 in Deep - water hypoxic meiobenthic Protozoa and Metazoa taxa of the Istanbul Strait's (Bosporus) outlet area of the Black Sea
Figure 1. Oxygen concentrations in the sediment and the overlying water at Stations 4 –6 (by Sergeeva et al 2013).
Fig.ç1.M aps and photograph showing the sampling locality for Echinoderes ohtsukai sp. nov. A, Map of eastern Asia; B, enlargement of the rectangle in A; C, enlargement of the area indicated by the black circle in B; D, photograph of the sampling locality; white arrow indicates the Kamogawa River and dotted circle indicates the sampling site. in A New Brackish-water Species of Echinoderes (Kinorhyncha: Cyclorhagida) from the Seto Inland Sea, Japan
Fig.ç1.M aps and photograph showing the sampling locality for Echinoderes ohtsukai sp. nov. A, Map of eastern Asia; B, enlargement of the rectangle in A; C, enlargement of the area indicated by the black circle in B; D, photograph of the sampling locality; white arrow indicates the Kamogawa River and dotted circle indicates the sampling site.
Figure 8 in Distribution and molecular differentiation of Culex pipiens complex species in the Middle and Eastern Black Sea Regions of Turkey
Figure 8. Unrooted haplotype network for CQ11. Each circle represents a haplotype, and lines above each link indicate mutations.
Figure 7 in Distribution and molecular differentiation of Culex pipiens complex species in the Middle and Eastern Black Sea Regions of Turkey
Figure 7. Phylogenetic tree based on a 151-bp region within the CQ11 microsatellite region of Culex pipiens. The tree was constructed using the maximum likelihood method, and bootstrap values are shown as numbers on the tree.
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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)
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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.