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Figure 2 in Seasonal pattern of population dynamics, spawning activities, and diet composition of sardine (Sardina pilchardus Walbaum) in the eastern Adriatic Sea
Figure 2. Monthly oscillation of the mean sardine length (TL, cm) collected by commercial purse seiners during 2013 (February–November 2013) on Croatian fishing grounds.
Figure 1 in Seasonal pattern of population dynamics, spawning activities, and diet composition of sardine (Sardina pilchardus Walbaum) in the eastern Adriatic Sea
Figure 1. Study area, eastern Adriatic Sea with marked Croatian fishing ground (dark gray) where the samples from the commercial purse seiners were taken during 2013 (February–November 2013).
Figure 4 in Seasonal pattern of population dynamics, spawning activities, and diet composition of sardine (Sardina pilchardus Walbaum) in the eastern Adriatic Sea
Figure 4. Seasonal oscillations (winter: December to February; spring: March to May; summer: June to September; autumn: October to November) of allometric coefficient (b), condition index (Ka), and fullness index (%Jr) of sardines collected by commercial purse seiners during 2013 (February–November 2013) on Croatian fishing grounds.
Figure 1 in Diel and seasonal activity of ground dwelling spiders (Araneae) in a sandy grassland habitat
Figure 1. Diel activity of the dominant ground dwelling spider families of sandy grassland. The number of individuals collected at consecutive pitfall checking (for example: spiders collected at 1200 hours were active between 0900 and 1200 hours).
Figure 2 in Diel and seasonal activity of ground dwelling spiders (Araneae) in a sandy grassland habitat
Figure 2. Correspondence analysis of diel activity of the dominant spider families in the sandy grassland habitat.
Figure 1. Seasonal trawl sampling track lines during 2014–2015 in Spatiotemporal and bioecological distribution of four commercial Mullid species in an ultraoligotrophic Mediterranean gulf
Figure 1. Seasonal trawl sampling track lines during 2014–2015 (blue; spring 2014, green; summer 2014; red; autumn 2014 and magenta; winter 2015), and two miles border for prohibition of the fishery, red line and 12 miles border, blue line, and fixed depths are in the order of the shallowest to the deepest bottom depths from the coast to open water seaward in each of regions (R 1 -R 3) (a), and the study area showing the different bottom types from the acoustical track lines by the echosounder during 2014–2015 (b) (from Garuti and Mutlu, 2021).
Fig. 5. A in Temporal dynamics of fruit-feeding butterflies (Lepidoptera: Nymphalidae) in two habitats in a seasonal Brazilian environment
Fig. 5. A) Temporal variation in Nymphalidae species richness captured in the dry and wet seasons and in the 2 transitional periods between those seasons, wet to dry (T.wd) and dry to wet (T.dw), in savanna (Cerrado sensu stricto, ss) and gallery forest habitats in the Fazenda Água Limpa and the Reserva Ecológica do Roncador, Brasília, DF. The rarefaction curves compare the 4 climatic periods—dry (black triangles) and wet (black circles) seasons, and the transitional periods from wet to dry (T.wd, white circles) and from dry to wet (T.dw, white triangles)—in B) gallery forest and C) savanna separately.
Figure 5 in Comparison of microplankton heterotrophic-photoautotrophic balance based on the content of ATP and chlorophyll a in the plankton of the northern area of the Black Sea during the autumn and spring seasons
Figure 5. Distribution of microplankton HPI in the surface waters of the Crimean coastal waters and deep-water northern part of the Black Sea at April 2017.
Figure 2 in Comparison of microplankton heterotrophic-photoautotrophic balance based on the content of ATP and chlorophyll a in the plankton of the northern area of the Black Sea during the autumn and spring seasons
Figure 2. Distribution of microplankton chlorophyll a and ATP concentrations in the Crimean coastal waters and deepwater northern part of the Black Sea at April 2017.
Figure 1 in Peculiarities of seasonal dynamics of net primary production and its microzooplankton grazing in the coastal waters of the Black Sea (Sevastopol region)
Figure 1. Map of the sampling stations: 1—the exit from the Quarantine Bay (St.1); 2—Sevastopol Bay (St. 2).
Fig. 1. a in Spatial and seasonal patterns in fish assemblage in Córrego Rico, upper Paraná River basin
Fig. 1. a) Map of SouthAmerica with Brazil location. b) Córrego Rico basin in São Paulo State. c) Córrego Rico basin (Modified from a figure by L. A. Amaral - unpublished) with the samples stretches.
Fig. 2 in Spatial and seasonal patterns in fish assemblage in Córrego Rico, upper Paraná River basin
Fig. 2. Non-metric multidimensional scaling (NMDS) ordination of environmental variables data from Córrego Rico stretches. a) All samples (stretches - S1 to S7; month and year of sample - mmyy): b) Samples divided in rainy (R) and dry (D) seasons (stretches - S1 to S7).
Fig. 1 in Rainfall as a driver of seasonality in parasitism
Fig. 1. Relationship between rainfall measured two months prior to parasitological sampling (Rt-2) and (a) strongyle nematode egg and (b) lungworm larval counts. Dashed lines represent territorial males and solid lines represent bachelor males. Lines are predicted values (with 95% confidence intervals) from linear mixed models. Points represent raw data (triangles = territorial males, circles = bachelor males).
Fig. 1 in Seasonal Variations in the Assembly of Dung Beetles (Coleoptera: Geotrupidae and Scarabaeidae) Attracted to Macaque Feces in Temperate Forests in Japan
Fig. 1. Map of the study sites in Japan.
Fig. 38 in Habitat and seasonal activity patterns of the terrestrial isopods (Isopoda: Oniscidea) of Belgium
Fig. 38. Corrected number of observations per two-month period for Porcellionides pruinosus (N = 58).
FIGURE 3 in A new species of Anthurium Schott (Araceae) in a seasonal semideciduous forest in Espírito Santo State, Brazil
FIGURE 3. Type locality of A. cachoeirense. Adapted from Brasil (2007).
Sample-specific data from "The Influence of Seasonal Variation in Wild Pig Diet on Impacts to a Subtropical Agroecosystem" published in Ecosphere
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FIGURE 1 in Biogeographical identity of the Mesoamerican dominion with emphasis on seasonally dry tropical forests
FIGURE 1. Geographical extension of the Mesoamerican dominion.
Data for JGR - Drought Differently Impacts Vegetation Activity According to the Bedrock Types and Sub-seasons
<p>For peer review purposes only</p>
Monsoon-driven intra-seasonal variations in the thermal regime of a Himalayan proglacial lake
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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.