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Figure 5 from: Ferreira GS, Almeida dos Santos DA, Lopes EV (2019) Richness, abundance and microhabitat use by Ardeidae (Aves: Pelecaniformes) during one seasonal cycle in the floodplain lakesof the lower Amazon River. Zoologia 36: 1-10. https://doi.org/10.3897/zoologia.36.e30475
Figure 5 Regression analysis of the macrofauna richness and density as function of the number of storm wave events (SWE) and wave height, respectively. The pink dots represent each dependent (marine debris on ghost crab burrow) and independent variables (distance from urban settlements). Blue shaded area indicates 95% confidence intervals and pink line is the distribution of residuals. Blue line is the regression straight. Only significant (p < 0.05) predictors were considered in the effects plot.
Figure 2 from: Ferreira GS, Almeida dos Santos DA, Lopes EV (2019) Richness, abundance and microhabitat use by Ardeidae (Aves: Pelecaniformes) during one seasonal cycle in the floodplain lakesof the lower Amazon River. Zoologia 36: 1-10. https://doi.org/10.3897/zoologia.36.e30475
Figure 2 Sampling design for macrofauna collection in the intertidal zone. Each station included three pooled samplings per strata (upper, middle and lower) of the intertidal zone as sampling unit.
Figure 1 from: Ferreira GS, Almeida dos Santos DA, Lopes EV (2019) Richness, abundance and microhabitat use by Ardeidae (Aves: Pelecaniformes) during one seasonal cycle in the floodplain lakesof the lower Amazon River. Zoologia 36: 1-10. https://doi.org/10.3897/zoologia.36.e30475
Figure 1 Map of the study area showing Grussaí Beach and Manguinhos Beach, in northern Rio de Janeiro, Brazil.
Water vapor in the tropical tropopause layer to reproduce seasonal cycles in Wang et al paper
<p>This dataset contains the data needed to reproduce the tropical tropopause layer water vapor seasonal cycles in this paper. </p>
Figure 11 in Soldier flies (Diptera: Stratiomyidae) on semideciduous seasonal forest fragments, with a list of species for São Paulo State, Brazil, and two new records of species for the country
Figure 11 Species accumulation curve and performance of the richness estimators of the Stratiomyidae collected at Reserva Ecológica e Biológica Augusto Ruschi, Sertãozinho, São Paulo, Brazil, from May 2010 to December 2011 and in September 2014.
Figure 10 in Soldier flies (Diptera: Stratiomyidae) on semideciduous seasonal forest fragments, with a list of species for São Paulo State, Brazil, and two new records of species for the country
Figure 10 Climate and seasonal data of soldier flies collected using white roof Malaise traps at the Reserva Ecológica e Biológica de Sertãozinho, São Paulo, Brazil.
Figure 7 in Soldier flies (Diptera: Stratiomyidae) on semideciduous seasonal forest fragments, with a list of species for São Paulo State, Brazil, and two new records of species for the country
Figure 7 Stratiomyids from the Reserva Ecológica e Biológica Augusto Ruschi, Sertãozinho, São Paulo, Brazil. (a) Chloromelas sp. 1, male; (b) Myxosargus sp. 1, male; (c) Myxosargus sp. 2, male; (d) Eidalimus sp. 1, male; (e) Manotes sp. 1, male; (f) Panacris lucida, male; (g) Popanomyia sp. 1, female; (h) Psephiocera sp. 1, female; (i) Strobilapsis sp. 1, female. Scale bar, 1 mm.
Figure 6 in Soldier flies (Diptera: Stratiomyidae) on semideciduous seasonal forest fragments, with a list of species for São Paulo State, Brazil, and two new records of species for the country
Figure 6 Stratiomyids from the Reserva Ecológica e Biológica Augusto Ruschi, Sertãozinho, São Paulo, Brazil. (a) Merosargus nebulifer James, 1971 in James & McFadden, 1971, male; (b) M. opaliger Lindner, 1931, female. (c) M. tripartitus James, 1971 in James & McFadden, 1971, female; (d) Microchrysa bicolor (Wiedemann, 1830), female; (e) Pteticus testaceus (Fabricius, 1805), male; (f) Sargus fasciatus Fabricius, 1805, male; (g) S. thoracicus Macquart, 1834, male; (h) S. thoracicus, female; (i) Sargus sp. 1, male; (j) Sargus sp. 1, female; (k) Sargus sp. 2, female; (l) Glariopsis sp. 1, female. Scale bar, 1 mm.
Figure 3 in Soldier flies (Diptera: Stratiomyidae) on semideciduous seasonal forest fragments, with a list of species for São Paulo State, Brazil, and two new records of species for the country
Figure 3 Stratiomyids from the Reserva Ecológica e Biológica Augusto Ruschi, Sertãozinho, São Paulo, Brazil. (a) Heteracanthia ruficornis Macquart, 1850, female; (b) Oplachantha sp. 1, male; (c) Oplachantha sp. 1, female; (d) Barbiellinia sp. 1, male; (e) Chiromyza sp. 1, male; (f) Chiromyza sp. 1, female; (g) Cyphomyia aurifrons Wiedemann, 1830, male; (h) C. aurifrons, female; (i) C. gracilicornis Gerstaecker, 1857, male; (j) C. gracilicornis, female; (k) C. leucocephala Wiedemann, 1819, female; (l) Cyphomyia sp. 1, male. Scale bar, 1 mm.
Figure 1 in Soldier flies (Diptera: Stratiomyidae) on semideciduous seasonal forest fragments, with a list of species for São Paulo State, Brazil, and two new records of species for the country
Figure 1 Map of the area of study, with limits of all municipalities of the state of São Paulo.(a) Limits of the municipality of Sertãozinho and studied area; (b) Satellite image of the Reserva Ecológica e Biológica Augusto Ruschi, with head office and research buildings outlined in white, larger fragments outlined in red, and numbers 1 and 2 represent the areas of sampling.
Figure 2 in Soldier flies (Diptera: Stratiomyidae) on semideciduous seasonal forest fragments, with a list of species for São Paulo State, Brazil, and two new records of species for the country
Figure 2 Sampling sites at the Reserva Ecológica e Biológica Augusto Ruschi, Sertãozinho, São Paulo, Brazil. (a-c) Areas near an artificial lake, fragment 2; (d) Bottle traps set up in the field; (e) Black roof Malaise trap; (f) White roof Malaise trap.
Figure 2 in Seasonality and distribution of Coleoptera families (Arthropoda, Insecta) in the Cerrado of Central Brazil
Figure 2. Average number of Coleoptera specimens and families collected using a light trap in an area of cerrado sensu stricto in Planaltina/DF in the dry period (April to September) and in the rainy period (October to March) between the years 2015 and 2016. Bars followed by different letters, for the number of species (capital letters) and for the number of families (lowercase letters), differ significantly by Wilcoxon-Mann Whitney U test (p <0.01).
Figure 3 in Seasonality and distribution of Coleoptera families (Arthropoda, Insecta) in the Cerrado of Central Brazil
Figure 3. Monthly average temperature and relative air humidity, monthly accumulated precipitation from June 2015 to May 2016, and climatological normal values for the period 1974-2013 (monthly accumulated precipitation) in Planaltina/DF, Brazil.
Fig. 1 in Trophic roles of scavenger beetles in relation to decomposition stages and seasons
Fig. 1. Mean abundance (±SE) of necrophilous beetles per decomposition stages and seasons. (A) Cadavers (c). (B) Traps (st). F, Fresh; B, Bloated; ACD, Active Decay; ADD, Advanced Decay; R, Remains.
Figure 2 in Seasonal distribution of Trachurus mediterraneus (Steindachner, 1868) in the Golden Horn Estuary, İstanbul
Figure 2. Monthly changes in A) water temperature, B) salinity, C) dissolved oxygen, D) chlorophyll a in surface waters, and E) Secchi disk depths as turbidity parameters in sampling stations.
Figure 3 in Biological diversity and seasonal variation of mesozooplankton in the southeastern Black Sea coastal ecosystem
Figure 3. The variation in total mesozooplankton abundance and temperature with respect to years (SST: sea surface temperature).
Figure 5 in Seasonal composition and population density of zooplankton in Lake Karaboğaz from the Kızılırmak Delta (Samsun, Turkey)
Figure 5. Canonical correspondence ordination of the zooplankton samples collected at 6 different stations and associated environmental parameters. Biplots of the species (occurrence frequency of>63%) and the environmental parameters. A = Coronatella rectangula, B = Chydorus sphaericus, C = Colurella adriatica, D = Keratella quadrata, E = Lecane closterocerca, F = Lecane luna, G = Notholca acuminata, H = Polyarthra vulgaris, J = Brachionus calyciflorus, K = Colurella obtusa, L = Cephalodella ventripes, and M = Lepadella quadricarinata.
Figure 4 in Seasonal variation of small mammals in the diet of the barn owl (Tyto alba) in the Drinos River valley, southern Albania
Figure 4. Seasonal variation in biomass (%) of small mammal species in the diet of barn owls in the Drinos valley.
0 in Seasonal variation of small mammals in the diet of the barn owl (Tyto alba) in the Drinos River valley, southern Albania
0% Autumn (F%) W nter (F%) Spr ng (F%) Summer (F%) Figure 3. Seasonal variation in frequency (%) of small mammal species in the diet of barn owls in the Drinos valley.
Figure 5 in Spider assemblages and dynamics on a seasonal island in the Pripyat River, Belarus
Figure 5. Activity density dynamics of dominants Oedothorax retusus and Pardosa prativaga in the period of 30 April to 30 May, 2006 and 2007 data combined with number of samples of the 2 study years averaged. The mean number of specimens (□) with arms of standard deviation values.
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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.