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FIGURE 5 in Freshwater and brackish water fishes of Sakhalin Island (Russia) in inland and coastal waters: an annotated checklist with taxonomic comments
FIGURE 5. Typical freshwater lake in the south of Sakhalin Island (photo by Yu. V. Dyldin)
FIGURE 4 in Freshwater and brackish water fishes of Sakhalin Island (Russia) in inland and coastal waters: an annotated checklist with taxonomic comments
FIGURE 4. Poronai River, Sakhalin Island (photo by S.S. Makeev)
FIGURE 3 in Freshwater and brackish water fishes of Sakhalin Island (Russia) in inland and coastal waters: an annotated checklist with taxonomic comments
FIGURE 3. Tym' River, Sakhalin Island (photo by S.S. Makeev)
FIGURE 2 in Freshwater and brackish water fishes of Sakhalin Island (Russia) in inland and coastal waters: an annotated checklist with taxonomic comments
FIGURE 2. Amur estuary, Sakhalin coast (photo by V.N. Koshelev)
FIGURE 1 in Freshwater and brackish water fishes of Sakhalin Island (Russia) in inland and coastal waters: an annotated checklist with taxonomic comments
FIGURE 1. Map of Sakhalin Island and the adjacent areas
FIGURE 11 in Review of amphipods of the family Pleustidae Buchholz, 1874 (Amphipoda) from the coastal waters of Sakhalin Island (Far East of Russia). II. Subfamily Eosymtinae Bousfield & Hendrycks, 1994
FIGURE 11. Distribution of Eosymtinae species in Far Eastern Region
Distribution. Coastal tropical to subtropical waters of the Indian Ocean and W Pacific, Ocean. in Delphinidae
Distribution. Coastal tropical to subtropical waters of the Indian Ocean and W Pacific, Ocean.
FIGURE 1 in Pectinariidae (Annelida, Polychaeta) from the coastal waters of China, with description of new species and new records
FIGURE 1. Map illustrating the distribution of species of Amphictene in the coastal waters of China
Data from: Structure of the rare archaeal biosphere and seasonal dynamics of active ecotypes in surface coastal waters
Marine Archaea are important players among microbial plankton and significantly contribute to biogeochemical cycles, but details regarding their community structure and long-term seasonal activity and dynamics remain largely unexplored. In this study, we monitored the inter-annual archaeal community composition of abundant and rare biospheres in northwestern Mediterranean Sea surface waters by pyrosequencing 16S rDNA and rRNA. A detailed analysis of the rare biosphere structure showed that the rare archaeal community was composed of three distinct fractions. One contained the rare Archaea that became abundant at different times within the same ecosystem; these cells were typically not dormant, and we hypothesize that they represent a local seed bank that is specific and essential for ecosystem functioning through cycling seasonal environmental conditions. The second fraction contained cells that were uncommon in public databases and not active, consisting of aliens to the studied ecosystem and representing a non-local seed bank of potential colonizers. The third fraction contained Archaea that were always rare but actively growing; their affiliation and seasonal dynamics were similar to the abundant microbes and could not be considered a seed bank. We also showed that the major archaeal groups, Thaumarchaeota Marine Group-I (MGI) and Euryarchaeota Group-II.B (MGII.B) in winter and Euryarchaeota Group-II.A (MGII.A) in summer, contained different ecotypes with varying activities. Our findings suggest that archaeal diversity could be associated with distinct metabolisms or life strategies, and that the rare archaeal biosphere is composed of a complex assortment of organisms with distinct histories that affect their potential for growth.
Seagrass as carbon holder in Waleo coastal waters, North Sulawesi, Indonesia
<p>Artikel Bioflux</p>
Figure 3 in The impact of atmospheric precipitation (rainfalls) on the sea-surface microlayer in the Sevastopol coastal waters (Crimea, The Black Sea)
Figure 3. Effect of rainfalling on the pH value in SML from Yugnaya Bay. I – the pH value in rain-water; II- a shortterm effect on the pH value in SML after rainfall; III - seasonal background the pH value in SML.
Figure 2 in The impact of atmospheric precipitation (rainfalls) on the sea-surface microlayer in the Sevastopol coastal waters (Crimea, The Black Sea)
Figure 2. Seasonal distribution of precipitation level (mm/month) and mean monthly temperature during 2016 (A) and 2013 (B).
Figure 1 in The impact of atmospheric precipitation (rainfalls) on the sea-surface microlayer in the Sevastopol coastal waters (Crimea, The Black Sea)
Figure 1. The location of sampling stations at Sevastopol Bay (1), Yugnaya Bay (2) and Kazachya Bay (3) and Mariculture farms (M).
Figure 2 in Distribution and abundance of dinoflagellates from the coastal waters of Karachi, Pakistan, northern part of the Arabian Sea
Figure 2. Phytoplankton cell abundance (cellx103L-l) and dinoflagellates percentage (%) recorded from offshore and nearshore waters along the Sindh coast of Pakistan. A-B: Manora Island and Mubarak Village offshore waters; C-D: Manora Island and Mubarak Village nearshore waters.
Figure 1 in Distribution and abundance of dinoflagellates from the coastal waters of Karachi, Pakistan, northern part of the Arabian Sea
Figure 1. Map of the Karachi coast showing location in the coastal and near-shore waters off of Manora Island (MI-1; 10m contour line and MI-2; 50m contour line) and Mubarak Village (MV-1; 10 m contour line and MV-2; 50 m contour line).
Fig. 3. Pleuronema setigerum after protargol impregnation. A, C, D in Taxonomy of four scuticociliates (Protozoa: Ciliophora) from coastal waters of South Korea
Fig. 3. Pleuronema setigerum after protargol impregnation. A, C, D. Ventral views showing infraciliature and nuclear apparatus, arrows denote micronuclei. B. Dorsal view showing somatic kineties and nuclear apparatus, arrow denotes a micronucleus. CC, caudal cilia; Ma, macronucleus; M1, 3, membranelles 1, 3; M2a, anterior part of membranelle 2; M2b, posterior part of membranelle 2; PM, paroral membrane; PK; preoral kineties; SK, somatic kineties. Scale bar = 30 μm.
Fig. 4. Schizocalyptra aeschtae after protargol impregnation. A, B. Ventral and dorsal view showing a in Taxonomy of four scuticociliates (Protozoa: Ciliophora) from coastal waters of South Korea
Fig. 4. Schizocalyptra aeschtae after protargol impregnation. A, B. Ventral and dorsal view showing a typical morphology arrows denote fragments of paroral membrane. Note the band-like structure of the macronuclear nodules. C. ventral view of the oral apparatus, showing membranelle 3 consisting of three ciliary rows. D, E. Macronuclear nodules. Ma, macronucleus; M1, 3, membranelles 1, 3; M2a, anterior part of membranelle 2; M2b, posterior part of membranelle 2; PM, paroral membrane. Scale bars = 50 μm.
Fig. 2. Pleuronema grolierei after protargol impregnation. A, C. Ventral views showing a typical body shape and infraciliature. B. Dorsal view showing somatic kineties. D. Nuclear apparatus, arrow denotes a in Taxonomy of four scuticociliates (Protozoa: Ciliophora) from coastal waters of South Korea
Fig. 2. Pleuronema grolierei after protargol impregnation. A, C. Ventral views showing a typical body shape and infraciliature. B. Dorsal view showing somatic kineties. D. Nuclear apparatus, arrow denotes a micronucleus. CC, caudal cilia; Ma, macronucleus; M1, 3, membranelles 1, 3; M2a, anterior part of membranelle 2; M2b, posterior part of membranelle 2; PM, paroral membrane; PK; preoral kineties; PoK, postoral kinety; SK, somatic kineties. Scale bar = 30 μm.
Figure 5 from: Dorado-Roncancio J, Gaviria S, Bernal-De La Torre L, Ahrens MJ (2019) A new species of Bestiolina (Crustacea, Copepoda, Calanoida, Paracalanidae) from coastal waters of the Colombian Pacific, including a worldwide key for the identification of the species. ZooKeys 846: 1-18. https://doi.org/10.3897/zookeys.846.31497
Figure 5 Male of Bestiolinasarae sp. n. A Habitus, lateral view B leg 5. Scales bars: 0.1 mm (A); 0.01 mm (B).
Figure 2 from: Dorado-Roncancio J, Gaviria S, Bernal-De La Torre L, Ahrens MJ (2019) A new species of Bestiolina (Crustacea, Copepoda, Calanoida, Paracalanidae) from coastal waters of the Colombian Pacific, including a worldwide key for the identification of the species. ZooKeys 846: 1-18. https://doi.org/10.3897/zookeys.846.31497
Figure 2 Female Holotype of Bestiolinasarae sp. n. A habitus, dorsal view and digital photograph B rostrum C posterolateral margins of fifth pedigerous somite, lateral view D second and third urosomites and anal somite with caudal rami E caudal rami and setae. Scales bar: 0.1 mm (A, D); 0.01 mm (B, E); 0.05 mm (C).
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.