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Figure 1 in Mosquitoes (Diptera: Culicidae) in oviposition traps set in forest fragments of a semideciduous seasonal forest, Atlantic Forest domain, in the state of Rio Grande do Sul, Brazil
Figure 1. Location of three fragments of a semideciduous seasonal forest in the northwestern region of the state of Rio Grande do Sul, Brazil. URB: forest fragment located in the urban area of the city of Panambi-RS. RUR: forest fragment located in the rural area close to the urban area of Panambi-RS. NAT: forest fragment located in the rural area far from urban area of the city of Pejuçara-RS. / Ubicación de tres fragmentos de un bosque estacional semideciduo en la región noroeste del estado de Rio Grande do Sul, Brasil. URB: fragmento de bosque ubicado en el casco urbano de la ciudad de Panambi-RS. RUR: fragmento de bosque ubicado en el área rural cercana al área urbana de Panambi-RS. NAT: fragmento de bosque ubicado en el área rural alejada del área urbana de la ciudad de Pejuçara-RS.
Figure 2 in Mosquitoes (Diptera: Culicidae) in oviposition traps set in forest fragments of a semideciduous seasonal forest, Atlantic Forest domain, in the state of Rio Grande do Sul, Brazil
Figure 2. Cluster analysis (Morisita–Horn index) of the mosquitoes collected in oviposition traps in three fragments of a semideciduous seasonal forest in the northwestern region of the state of Rio Grande do Sul, Brazil. / Análisis de conglomerados (Índice Morisita-Horn) de los mosquitos recolectados en trampas de oviposición en tres fragmentos de un bosque estacional semideciduo en la región noroeste del estado de Rio Grande do Sul, Brasil.
Figure 3 in Composition and seasonal variation of epigeic arthropods in field margins of NW Portugal
Figure 3. Mean abundance per pitfall for each guild in spring and autumn. Seasons were compared using a Kruskal–Wallis test followed by a Dunn's post hoc test (P <0.05). Bars represent means ± standard deviation. Distinct letters indicate statistical differences.
Figure 1. a in Composition and seasonal variation of epigeic arthropods in field margins of NW Portugal
Figure 1. a) Mean abundance per pitfall in autumn and spring. Seasons were compared using a Mann–Whitney U test; b) mean group richness per pitfall in autumn and spring. Seasons were compared using a Mann–Whitney U test. Bars represent means ± standard deviation. Distinct letters between seasons indicate statistical differences (P <0.001).
Figure 2 in Composition and seasonal variation of epigeic arthropods in field margins of NW Portugal
Figure 2. Nonmetric multidimensional scaling (nMDS) ordination in 2 dimen- sions computed for the 4 sites in spring and autumn. Lines group fields with a similarity of 35% or higher based on a group average cluster analysis. The value of stress is represented.
Figure 6 in Seasonal variations of abundance and live/dead compositions of copepods in Mersin Bay, northeastern Levantine Sea (eastern Mediterranean)
Figure 6. Percentage of dead copepods at the coastal and open water stations (a), and the percentage of dead copepods at 0–100 and 100–195 m at the open water station (b).
Figure 5 in Seasonal variations of abundance and live/dead compositions of copepods in Mersin Bay, northeastern Levantine Sea (eastern Mediterranean)
Figure 5. Cluster diagram of abundance data sets of monthly sampling based on the Bray– Curtis similarity matrix (1 represents coastal station, 2 represents open water station).
Figure 2 in Nesting activity of sea turtles, Caretta caretta (Linnaeus, 1758) and Chelonia mydas (Linnaeus, 1758) (Reptilia, Cheloniidae), at Patara Beach (Antalya, Turkey) over four nesting seasons
Figure 2. Population trend of sea turtles expressed in number of nests at Patara Beach over 20 seasons (given in Table 3).
Figure 1 in Nesting activity of sea turtles, Caretta caretta (Linnaeus, 1758) and Chelonia mydas (Linnaeus, 1758) (Reptilia, Cheloniidae), at Patara Beach (Antalya, Turkey) over four nesting seasons
Figure 1. Temporal distribution of nests in four nesting seasons (2010, 2012, 2013, and 2014) at Patara Beach.
Figure 3 in Seasonal and ontogenetic diet shift of two sympatric cyprinid fish species from the temperate Karamenderes River, Çanakkale, Turkey
Figure 3. Relationship between prey specific abundance and the frequency of occurrence of the food categories in B. oligolepis (upper) and S. cii (lower) diets based on Costello's method. Bac: Bacillariophyceae, Cya: Cyanophyceae, Fun: fungi, Chl: Chlorophyceae, Ins: Insecta, Zyg: Zygnomophyceae, Oli: Oligochaeta, 1: Byrophyta, 2: Bryozoa, 3: Xantophyceae, 4: Amphipoda, 5: zooplankton.
Figure 5 in Seasonal and ontogenetic diet shift of two sympatric cyprinid fish species from the temperate Karamenderes River, Çanakkale, Turkey
Figure 5. The relationships between fish total body length (TL), gut content weight (GCW), and fish body weight (W) in S. cii. The full circles indicate GCW and the empty circles indicate W.
Figure 4 in Seasonal and ontogenetic diet shift of two sympatric cyprinid fish species from the temperate Karamenderes River, Çanakkale, Turkey
Figure 4. Percent abundance (gray columns) and frequency (white columns) of B. oligolepis (upper) and S. cii (lower) gut contents.
Figure 2 in Seasonal changes in Tawny Owl (Strix aluco) diet in an oak forest in Eastern Ukraine
Figure 2. Proportion of prey groups in Tawny Owl pellets in different seasons. Note break of y axis between 10% and 50%. Abbreviations for seasons: WS – Winter–spring, ES – Early summer, LS – Late summer and early autumn, LA – Late autumn.
Figure 2 in Seasonal and ontogenetic diet shift of two sympatric cyprinid fish species from the temperate Karamenderes River, Çanakkale, Turkey
Figure 2. The relationships between the total lengths and the gut lengths of two species. Empty circles indicate Squalius cii and full circles indicate Barbus oligolepis.
Figure 3 in Seasonal hormones, female reproductive tract changes, and some field observations on breeding activities of the small Indian mongoose (Herpestes javanicus) from its native range of Potohar Plateau, Pakistan
Figure 3. Light microscopic (hematoxylin and eosin stained) sections (40×) of the ovaries of female small Indian mongoose (Herpestes javanicus) from the Potohar Plateau, Pakistan: A) showing 3 Graafian follicles indicative of the state of preovulation during February 2013; B) events of early gestation period during March 2013, corpus luteum of moderate size and reddish yellow, antrum being a bit convoluted in structure rather than being complete; C) events of late gestation period during April 2013, whereby corpora lutea are seen as the most prominent structures; D) showing lactation phase of the species with no corpora lutea or ripe follicles during June 2013. (*P.F.: primary follicle; S.F.: secondary follicle; C.L.: corpus luteum; G.F.: Graafian follicle; Pr. F.: primordial follicle).
Figure 4. A in Seasonal hormones, female reproductive tract changes, and some field observations on breeding activities of the small Indian mongoose (Herpestes javanicus) from its native range of Potohar Plateau, Pakistan
Figure 4. A) Foot prints of small Indian mongoose established around its burrow, B) Especially designed mesh trap for live capturing of the species, C) Placental Scars, D) Developing embryos inside the uteri of female mongoose exposed after dissection, E) A vigilant mongoose, F) Small Indian mongoose and her pups caught in a live trap
Figure 2 in Seasonal hormones, female reproductive tract changes, and some field observations on breeding activities of the small Indian mongoose (Herpestes javanicus) from its native range of Potohar Plateau, Pakistan
Figure 2. Levels (mIU/mL) of follicle stimulating hormone (FSH) and luteinizing hormone (LH) in plasma samples of small Indian mongoose females (Herpestes javanicus) trapped on the Potohar Plateau. LH levels show 2 peaks (1 in September 2012 and 1 in March 2013).
Figure 3 in Seasonal pattern of population dynamics, spawning activities, and diet composition of sardine (Sardina pilchardus Walbaum) in the eastern Adriatic Sea
Figure 3. Alternations of the mean monthly gonadosomatic index (GSI) and values of gonad masses (Wg, g) in sardines collected by commercial purse seiners during 2013 (February–November 2013) on Croatian fishing grounds.
Fig. 2 in Seasonal population abundance of the assembly of solitary wasps and bees (Hymenoptera) according to land-use in Maranhão state, Brazil
Fig. 2. Abundance of solitary bees according to land-use (a), month (b) and interactions between land-use and month (c). Repeated measures ANOVA followed by post hoc Fisher LSD tests (P <0.05). Means ± SE are given.
Fig. 1 in Seasonal population abundance of the assembly of solitary wasps and bees (Hymenoptera) according to land-use in Maranhão state, Brazil
Fig. 1. Abundance of solitary wasps according to land-use (a), month (b) and interaction between land-use and month (c). Repeated measures ANOVA followed by post hoc Fisher LSD tests (P <0.05). Means ± SE are given.
ScienceDex guides
Understand access before you commit
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.