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805 results for “Black Sea”
Fig. 2 in Linear Transect Surveys Of Abundance And Density Of Cetaceans In The Area Near The Dzharylgach Island In The North-Western Black Sea
Fig. 2. Linear transect survey of cetaceans near the Dzharylgach Island in 2017 (lt, linear transect survey encounters; vis, additional visual observations).
Fig. 1 in Linear Transect Surveys Of Abundance And Density Of Cetaceans In The Area Near The Dzharylgach Island In The North-Western Black Sea
Fig. 1. Linear transect survey of cetaceans near the Dzharylgach Island in 2016 (lt, linear transect survey encounters; vis, additional visual observations).
Fig. 2 in Abundance And Summer Distribution Of A Local Stock Of Black Sea Bottlenose Dolphins, Tursiops Truncatus (Cetacea, Delphinidae), In Coastal Waters Near Sudak (Ukraine, Crimea)
Fig. 2. Sightings of bottlenose dolphins near Sudak in 2011–2012. Sightings are indicated by circles of different size, depending on the group size category; sightings during the line transect survey (LTS) on August 4, 2012, are marked as filled circles, and other sightings (non LTS) are marked as empty circles. The LTS transects are shown as a zigzag line, and the LTS area is bordered by a contour line.
Fig. 1 in Conchological Variability Of Anadara Inaequivalvis (Bivalvia, Arcidae) In The Black-Azov Sea Basin
Fig. 1. Localities in the Black Sea and the Sea of Azov where the samples were collected: 1 — Cordon "Morskoj", the Black Sea Biosphere Reserve (BSBR), Gola Prystan District, Kherson Region, Ukraine (46°07´54˝ N, 32°13´39˝ E, 2011 and 2012, coll. V. V. Anistratenko and O. Yu. Anistratenko); 2 — Fedotova Spit in the vicinity of Kirillovka settlement, Akimovka District, Zaporizhzhya Region, Ukraine (46°19´40˝ N, 35°20´03˝ E, 2005, 2006, 2012, coll. V. V. Anistratenko, O. Yu. Anistratenko and I. A. Khaliman); 3 — Yurkino settlement, Lenino District, Crimea, Ukraine (45°25´24˝ N, 36°33´15˝ E, October 12, 2003, coll. V. V. Anistratenko and O. Yu. Anistratenko); 4 — Pichory village, Galy District, Abkhazia (42°26´57˝ N, 41°32´30˝ E, June 22, 1989, coll. V. V. Anistratenko); 5 — Chakvy settlement, Adzharia (41°44´05˝ N, 41°43´57˝ E, June 21, 1989, coll. V. V. Anistratenko).
Fig. 4. A in Conchological Variability Of Anadara Inaequivalvis (Bivalvia, Arcidae) In The Black-Azov Sea Basin
Fig. 4. A ratio of basic types of the shell shape in A. inaequivalvis from the Black Sea and the Sea of Azov. Enumerated forms correspond to those in the text discussed; the first symbol specifies an absolute number of valves in the sample, the second symbol means a percentage share of this form in the sample.
Fig. 6 in Conchological Variability Of Anadara Inaequivalvis (Bivalvia, Arcidae) In The Black-Azov Sea Basin
Fig. 6. Morphology of the shell A. inaequivalvis from the Black-Azov Sea Basin: A, B — left valve with wellsculptured radial ribs (Caucasus coast near Pichory village, Abkhazia); C–F — inequivalvity in adult shells: C, D — specimen from the Sea of Azov, Fedotova Spit, E, F — specimen from the Black Sea, cape Opuk. Arrows indicate the line of valves occlusion.
Fig. 3 in Conchological Variability Of Anadara Inaequivalvis (Bivalvia, Arcidae) In The Black-Azov Sea Basin
Fig. 3. Basic forms of the shell shape i. e. commissural opening in A. inaequivalvis from the Black Sea and the Sea of Azov. A, B — form 1; C, D — form 2; E, F — form 3; G, H — form 4; I, J — form 5; K, L — form 6. All specimens — from the BSBR. Numeration is selected arbitrarily, explanations see in the text.
Fig. 2 in Conchological Variability Of Anadara Inaequivalvis (Bivalvia, Arcidae) In The Black-Azov Sea Basin
Fig. 2. Shells of A. inaequivalvis from the Black Sea (G–L) and the Sea of Azov (А–F): А–F — specimens from the northwestern part of the Sea of Azov (Fedotova Spit); G–L — specimens from the northwestern part of the Black Sea (Cordon "Morskoj", the BSBR). A, C, E, G, I, K — inner side of the valves; B, D, F, H, J, L — outer side of the same specimens.
Fig. 5 in Conchological Variability Of Anadara Inaequivalvis (Bivalvia, Arcidae) In The Black-Azov Sea Basin
Fig. 5. Morphological ranges of basic types of the shell shape in A. inaequivalvis from the Black-Azov Sea Basin. Outlines of the shell commissural opening are given in the same scale. The form 4 is defined as initial for all other modifications presented.
Fig. 1 in New Prey Fishes In Diet Of Black Sea Bottlenose Dolphins, Tursiops Truncatus (Mammalia, Cetacea)
Fig. 1. Localities of sampling the stomach contents of Black Sea bottlenose dolphins: I — Kalamita Gulf, II — Feodosiya Gulf, III — Kerch Strait; K — Yalta (by Kleinenberg, 1938) and visual observations of bottlenose dolphins hunting on mullet: 1(?) — Tendra Spit (the certain locality is not identified), 2 — Uret Cape, 3 — Okunevka, 4 — Sevastopol, 5 — Meganom Cape, 6 — Karadag Nature Reserve, 7 — Chauda Cape, 8 — Opuk Cape, 9 — Ak-Burun Cape.
Fig. 3 in Differences In Skull Size Of Harbour Porpoises, Phocoena Phocoena (Cetacea), In The Sea Of Azov And The Black Sea: Evidence For Different Morphotypes And Populations
Fig. 3. The skull measurements of the harbour porpoises from the Sea of Azov and the Black Sea: 1 — zygomatic width vs rostrum width at the mid-point; 2 — parietal width vs rostrum width at the mid-point.
Fig. 4 in Differences In Skull Size Of Harbour Porpoises, Phocoena Phocoena (Cetacea), In The Sea Of Azov And The Black Sea: Evidence For Different Morphotypes And Populations
Fig. 4. Черепа морских свиней, Phocoena phocoena relicta, из Азовского и Чёрного морей, вид сверху: 1 — Азовское море, самец; 2 — Азовское море, самка; 3 — Чёрное море, самец; 4 — Чёрное море, самка. Фото М. П. Чоповди.
Fig. 2 in Differences In Skull Size Of Harbour Porpoises, Phocoena Phocoena (Cetacea), In The Sea Of Azov And The Black Sea: Evidence For Different Morphotypes And Populations
Fig. 2. Skull proportions of the harbour porpoises from the Sea of Azov and the Black Sea (mean ± standard deviation is presented as the box, upper and lower limits as the lines): 1 — zygomatic width as the CBL percentage; 2 — rostrum width at the mid-point as the CBL percentage.
Figs 1–3 in New Species And New Records Of Ichneumon Wasps From The Eastern Mediterranean And The Black Sea Regions (Hymenoptera: Ichneumonidae)
Figs 1–3. Holotype specimen of Casinaria onyx sp. n., 1 = lateral habitus, 2 = head, frontal view, 3 = propodeum, dorsal view
Fig. 5 in Ostracodes (Crustacea, Ostracoda) In The Rocky Nearshore Water Area Of Zmiiniy Island (Black Sea)
Fig. 5. The non-metric multidimensional scaling (nMDS) analysis of ostracodes species abundance in the sample from different substrates in Zmiiniy Island.
Fig. 4 in Distribution Of Sibling Species Yellow-Legged Gull, Larus Michahellis And Caspian Gull, Larus Cachinnans (Charadriiformes, Laridae), On The Black Sea Coast
Fig. 4. Settlements of Larus cachinnans (circles) and Larus michahellis (triangles) in the northern part of the Black Sea. Yellow figures — the species was determined by means of the analysis of mitochondrial DNA, red ones — by means of the analysis of museum specimens or photos of alive birds. According to Belik, 2018; Klein, Buchheim, 1997; Kuzikov, 2021; Liebers et al., 2004; Mnatsekanov et al., 1992; Sikorsky, 2016; Siokhin et al., 2000; Til'ba, Filipov, 2016; Tsvelykh, 2016, 2018 and data from this study.
Fig. 4 in Spatial Heterogeneity Of Steppe Bird Community In The Azov-Black Sea Enclave Of The European Dry-Steppe Zone (Southern Ukraine)
Fig. 4. Distribution of steppe dominants, co-dominants and rare steppe species (Black Book of Ukraine, 2009) by subregions of the dry-steppe enclave: * the largest areas in most count squares are covered by large bodies of water (seas and their bays, limans, the Dnipro floodplain).
Fig. 2 in Ostracodes (Crustacea, Ostracoda) In The Rocky Nearshore Water Area Of Zmiiniy Island (Black Sea)
Fig. 2. The percentages of ostracodes in average density of meiobenthos at the different type of substrate from Zmiiniy Island.
Fig. 1 in Spatial Heterogeneity Of Steppe Bird Community In The Azov-Black Sea Enclave Of The European Dry-Steppe Zone (Southern Ukraine)
Fig. 1. Division of the Azov-Black Sea dry-steppe enclave into count squares of 10x10 km and subregions: 1 — RB Prychornomoria, 2 — Lower Dnipro, 3 — LB Prychornomoria, 4 — N Prysyvashshia, 5 — NW Pryazovia, 6 — Syvash, 7 — Western Crimea, 8 — Central Crimea, 9 —Kerch Peninsula, 10 — Foothills.
Fig. 5 in Distribution Of Sibling Species Yellow-Legged Gull, Larus Michahellis And Caspian Gull, Larus Cachinnans (Charadriiformes, Laridae), On The Black Sea Coast
Fig. 5. Breeding ranges of Larus michahellis (orange) and Larus cachinnans (red) on the Black sea and Sea of Azov coasts.
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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.