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Fig. 2 in Spatial, seasonal and ontogenetic changes in food resource use by a piscivore fish in two Pantanal lagoons, Brazil
Fig. 2. Diet composition of Plagioscion ternetzi in the lagoons Sinhá Mariana (a) and Chacororé (b), during the flood and dry periods.
Fig. 4 in Seasonal analysis of condition, biochemical and bioenergetic indices of females of Brazilian flathead, Percophis brasiliensis
Fig. 4. Seasonal variation of water content (moisture) in muscle, gonad and liver of Percophis brasiliensis.
Fig. 4 in Spatial, seasonal and ontogenetic changes in food resource use by a piscivore fish in two Pantanal lagoons, Brazil
Fig. 4. Species abundance curve of fish species at Sinhá Mariana lagoon (a = flood period and b = dry period) and Chacororé lagoon (c = flood period and d = dry period). Species within the rectangle correspond to the ten most abundant in the lagoon, in order of importance; the species out of the rectangle correspond to the most consumed by Plagioscion ternetzi.
Fig. 1 in Spatial, seasonal and ontogenetic changes in food resource use by a piscivore fish in two Pantanal lagoons, Brazil
Fig. 1. Location of the study area in the system of Chacororé-Sinhá and Mariana lagoons, Pantanal Matogrossense, Mato Grosso State, Brazil.
Fig. 2 in Resource use by the facultative lepidophage Roeboides affinis (Günther, 1868): a comparison of size classes, seasons and environment types related to impoundment
Fig. 2. Medians of percentage volume of scales consumed by Roeboides affinis in the upper Tocantins river, from 1995 to 2000, in: (a) different environmental types (Lotic, n = 38, vs. Lentic, n = 52); (b) seasons (Dry, n = 25, vs. Wet, n = 68); (c) size classes 1 (n = 12), 2 (n = 38), 3 (n = 26), 4 (n = 9) and 5 (n = 5) and (d) different post-impoundment phases (Filling, n = 9, vs. Operation, n = 2) in lentic sites.
Fig. 1 in Resource use by the facultative lepidophage Roeboides affinis (Günther, 1868): a comparison of size classes, seasons and environment types related to impoundment
Fig. 1. CA ordination of 155 individuals of Roeboides affinis of two groups formed by five size classes (Group1, n = 33, and Group 2, n = 22) according to the consumption of food items (volumetric proportions) in the upper Tocantins River in two environment types (Lotic, n = 61, vs. Lentic, n = 94) related to its impoundment by the Serra da Mesa Hydroelectric Dam, from 1995 to 2000.
Fig. 1 in Seasonal Diet Differences Of The Common Toad Bufo Bufo (Linnaeus, 1758) In Ukrainian Roztochia (Western Ukraine)
Fig. 1. Sampling sites in Ukrainian Roztochia: - Roztochia Nature Reserve (49.913734, 23.759444), - Yavorivskyi National Nature Park (49.974459, 23.820374), - location of Ukrainian Roztochia.
Fig. 2 in Seasonal Diet Differences Of The Common Toad Bufo Bufo (Linnaeus, 1758) In Ukrainian Roztochia (Western Ukraine)
Fig. 2. Seasonal composition of herpetobiotic invertebrate taxa in the forest research area of Ukrainian Roztochia.
Fig. 8 in Abundance And Seasonal Migration Of Gulls (Laridae) On The Lithuanian Baltic Sea Coast
Fig. 8. Dynamics of the Lesser back-backed Gull, Herring Gull and Great black-backed Gull spring migration (5-days averages)
Fig. 7 in Abundance And Seasonal Migration Of Gulls (Laridae) On The Lithuanian Baltic Sea Coast
Fig. 7. Dynamics of the Little Gull, Black-headed Gull and Common Gull spring migration (5-days averages)
Fig. 6 in Abundance And Seasonal Migration Of Gulls (Laridae) On The Lithuanian Baltic Sea Coast
Fig. 6. Annual intensity dynamics of the Great black-backed Gull (Larus marinus) spring migration on the Lithuanian Baltic Sea coast
Fig. 2 in Abundance And Seasonal Migration Of Gulls (Laridae) On The Lithuanian Baltic Sea Coast
Fig. 2. Annual intensity dynamics of the Black-headed Gull (Larus ridibundus) spring migration on the Lithuanian Baltic Sea coast
Fig. 3 in Abundance And Seasonal Migration Of Gulls (Laridae) On The Lithuanian Baltic Sea Coast
Fig. 3. Annual intensity dynamics of the Common Gull (Larus canus) spring migration on the Lithuanian Baltic Sea coast
Fig. 4 in Abundance And Seasonal Migration Of Gulls (Laridae) On The Lithuanian Baltic Sea Coast
Fig. 4. Annual intensity dynamics of the Lesser black-backed Gull (Larus fuscus) spring migration on the Lithuanian Baltic Sea coast
Fig. 1 in Abundance And Seasonal Migration Of Gulls (Laridae) On The Lithuanian Baltic Sea Coast
Fig. 1. Annual intensity dynamics of the Little Gull (Larus minutus) spring migration on the Lithuanian Baltic Sea coast
Fig. 5 in Abundance And Seasonal Migration Of Gulls (Laridae) On The Lithuanian Baltic Sea Coast
Fig. 5. Annual intensity dynamics of the Herring Gull (Larus argentatus) spring migration on the Lithuanian Baltic Sea coast
Fig. 1 in Seasonal Changes In Zooplankton Community Of The Daugava River
Fig. 1. Water discharge and level recorded dur- Fig. 2. Water temperature recorded during the ing the study period (according to information study period (according to information provided provided by the company "Latvian Environment, by the company "Latvian Environment, Geology Geology and Meteorology Centre"). and Meteorology Centre").
Fig. 3 in Seasonal Changes In Zooplankton Community Of The Daugava River
Fig. 3. Abundance of zooplankton taxonomic Fig. 5. The share (in percentage terms) of taxo- groups and Shannon-Wiener index in the Dau- nomic groups in the Daugava River zooplankton gava River during different seasons. abundance during different seasons.
Рис. 3. Схема миграций виΑов рыб, участвующих в современной Αинамике ихтиофауны на территории НТТ: 1 — разΛивы; 2 — намывы. Черным цветом обозначены направΛения миграций из реки Туманной; красным — из оз. Хасан и РазΛивов; синим — с мест зимовки в реках южного Приморья; зеΛеным — сезонные миграции из южных морей Fig. 3. Scheme of migration of fish species involved in the modern dynamics of ichthyofauna on the territory of LRT: 1 — spills; 2 — alluvial. Black color indicates the direction of migration from the Tumannaya river; red — from lake Khasan and spills; blue — from wintering places in the rivers of southern Primorye; green — seasonal migration from the south seas in Transboundary Migration And The Local Constraints In The Dynamic Of Fish Fauna In The Lower Reaches Of Tumannaya River
Рис. 3. Схема миграций виΑов рыб, участвующих в современной Αинамике ихтиофауны на территории НТТ: 1 — разΛивы; 2 — намывы. Черным цветом обозначены направΛения миграций из реки Туманной; красным — из оз. Хасан и РазΛивов; синим — с мест зимовки в реках южного Приморья; зеΛеным — сезонные миграции из южных морей Fig. 3. Scheme of migration of fish species involved in the modern dynamics of ichthyofauna on the territory of LRT: 1 — spills; 2 — alluvial. Black color indicates the direction of migration from the Tumannaya river; red — from lake Khasan and spills; blue — from wintering places in the rivers of southern Primorye; green — seasonal migration from the south seas
FIGURE 3 in Trap-nesting bees and wasps (Hymenoptera, Aculeata) in a Semidecidual Seasonal Forest fragment, southern Brazil
FIGURE 3: Phenology of most common trap-nesting Aculeata in Parque Estadual São Camilo (Palotina, Paraná), (A) from September 2014 to March 2014, (B) from October 2014 to March 2015.
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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)
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.