Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
4,243
datasets available to search
ShareScore release 0.7.1
Dataset results
4,243 results for “seasonality”
Fig. 1 in Integrative taxonomy of the seasonally polyphenic scorpionfly Panorpa liui Hua, 1997 (Mecoptera: Panorpidae)
Fig. 1 Geographic distribution of the four color morphs for Panorpa liui. Population ID provided in Table S1
Fig. 3 in Integrative taxonomy of the seasonally polyphenic scorpionfly Panorpa liui Hua, 1997 (Mecoptera: Panorpidae)
Fig. 3 Variation of the male genitalia of Panorpa liui, ventral views. a–c Yellow morph. d, h Deep black morph. e–g Black morph. bst, basal stalk; gcx, gonocoxite; gs, gonostylus; hv, hypovalve; vv, ventral valve; scale bars = 0.5 mm
FIGURE 4. Argythamnia estacionalis. A in New species of Argythamnia (Euphorbiaceae) restricted to Seasonal Forest of Brazil, with morphological and phylogenetic support
FIGURE 4. Argythamnia estacionalis. A. Flowering branch; B. Adaxial surface of the leaf; C. Detail of adaxial surface of the leaf glabrescent; D. Abaxial surface of the leaf; E. Leaf pubescence on the abaxial surface; F. Pistillate specimen; G. Staminate specimen; H. Staminate flower; I. Anthophore (sepals and petals removed for image capture); J. Pistillate flower. (A, H, I. W.W. Thomas 12361 (CEPEC); B–F, J. M.M. Ornelas 59 (HUEFS); G. M.M. Ornelas 65 (HUEFS)). Illustration by Marilane Luz.
FIGURE 5 in New species of Argythamnia (Euphorbiaceae) restricted to Seasonal Forest of Brazil, with morphological and phylogenetic support
FIGURE 5. Habitat and morphological characteristics of Argythamnia estacionalis. A. Fragment of Seasonally Dry Tropical Forest and Woodlands (SDTFW) in Itambé, Bahia, Brazil; B. Habit of Argythamnia estacionalis; C. Adaxial surface of the leaf; D. Abaxial surface of the leaf; E. Staminate specimen; F. Pistillate specimen. Figure assembled by Márcia M. Ornelas. Voucher specimens: C, D, F, M.M. Ornelas 59 (HUEFS); E. M.M. Ornelas 66 (HUEFS).
FIGURE 6 in New species of Argythamnia (Euphorbiaceae) restricted to Seasonal Forest of Brazil, with morphological and phylogenetic support
FIGURE 6. Geographic distribution of Argythamnia estacionalis in southern Bahia and northeastern Minas Gerais, Brazil.
FIGURE 3 in New species of Argythamnia (Euphorbiaceae) restricted to Seasonal Forest of Brazil, with morphological and phylogenetic support
FIGURE 3. Pollen morphology of the Argythamnia species studied here with SEM. A. Optical section and polar view of A. estacionalis. B. Optical section and polar view of A. desertorum. C. Optical section and polar view of A. simoniana. D. Optical section of the equatorial view of A. estacionalis. E. Optical section of the equatorial view of A. desertorum. F. Optical section of the equatorial view of A. simoniana. Scale bars = 10 μm.
FIGURE 1 in New species of Argythamnia (Euphorbiaceae) restricted to Seasonal Forest of Brazil, with morphological and phylogenetic support
FIGURE 1. Phylogenetic reconstruction presenting the positioning of Argythamnia estacionalis in relation to the other species of the genus.
FIGURE 2 in New species of Argythamnia (Euphorbiaceae) restricted to Seasonal Forest of Brazil, with morphological and phylogenetic support
FIGURE 2. Pollen morphology of the studied species of Argythamnia (Euphorbiaceae) (L.M.). A. & D. Argythamnia estacionalis; B. & E. Argythamnia desertorum; C. & F. Argythamnia simoniana. A–C optical section, polar view; D–E optical section, equatorial view. Scale bars = 10 μm.
Figure 3 in Microcrustacean community structure is shaped by seasonality in a Brazilian semiarid reservoir
Figure 3. Biplot of the first two axes of the redundancy analysis (RDA) for the environmental variables vs microcrustacean community of the Canoas Reservoir. (a) dry season; (b) rainy season. WT – water temperature; pH – ionic hydrogen potential; OD – dissolved oxygen; EC – electrical conductivity; PLUV – pluviosity.
Figure 2 in Microcrustacean community structure is shaped by seasonality in a Brazilian semiarid reservoir
Figure 2. Biplot of the first two components of the principal component analysis (PCA) for the environmental variables of the Canoas Reservoir. WT – water temperature; pH – ionic hydrogen potential; OD – dissolved oxygen; EC – electrical conductivity; PLUV – pluviosity.
Figure 1. A in Microcrustacean community structure is shaped by seasonality in a Brazilian semiarid reservoir
Figure 1. A – Limits of the municipality of Assaré, state of Ceará; B – data collection points in Canoas Reservoir.
FIGURE 5 in Seasonal Fluctuation In The Population Of Harmonia Axyridis (Pallas, 1773) (Coleoptera: Coccinellidae) And Co-Occurrence With Other Coccinellids In The Federal District Of Brazil
FIGURE 5: Diversity profile of coccinellid communities collect- ed among organic vegetable crops in two regions of the Federal District.
FIGURE 1 in Seasonal Fluctuation In The Population Of Harmonia Axyridis (Pallas, 1773) (Coleoptera: Coccinellidae) And Co-Occurrence With Other Coccinellids In The Federal District Of Brazil
FIGURE 1: Coloration patterns of Harmonia axyridis collected in the region of the Federal District, Brazil. The scale bar above the photos of the specimens corresponds to 4 mm.
FIGURE 4 in Seasonal Fluctuation In The Population Of Harmonia Axyridis (Pallas, 1773) (Coleoptera: Coccinellidae) And Co-Occurrence With Other Coccinellids In The Federal District Of Brazil
FIGURE 4: Estimated richness of species or genera of the coccinellid community through rarefaction curves in vegetable crops in two regions of the Federal District.
FIGURE 3 in Seasonal Fluctuation In The Population Of Harmonia Axyridis (Pallas, 1773) (Coleoptera: Coccinellidae) And Co-Occurrence With Other Coccinellids In The Federal District Of Brazil
FIGURE 3: Seasonal variation in the population of Harmonia axyridis and other coccinellid (Cycloneda sanguinea, Hippodamia convergens, Eriopis connexa, Scymnus spp. Azya luteipes, Hyperaspis festiva, Olla v-nigrum and Psyllobora sp.) collected in an area of vegetable intercropping in organic systems from February 2009 to January 2010 in Taguatinga, Federal District.
FIGURE 2 in Seasonal Fluctuation In The Population Of Harmonia Axyridis (Pallas, 1773) (Coleoptera: Coccinellidae) And Co-Occurrence With Other Coccinellids In The Federal District Of Brazil
FIGURE 2: Seasonal pattern of rainfall distribution and variation in mean maximum and minimum temperatures in the Federal District, (A) 2008 and (B) 2009.
FIG. 2 in Spatial, Seasonal, and Sexual Variation in the Diet of Graptemys flavimaculata, a Threatened Turtle of the Pascagoula River System, Mississippi, USA
FIG. 2. Diets of male and female Graptemys flavimaculata from the Leaf (LR) and lower Pascagoula Rivers (PR) by season (Spring—dark gray, Summer—black, Fall—light gray). Prey items are sorted alphabetically with minor items not included.
FIG. 1 in Spatial, Seasonal, and Sexual Variation in the Diet of Graptemys flavimaculata, a Threatened Turtle of the Pascagoula River System, Mississippi, USA
FIG. 1. Percent molluscivory of male and female Graptemys flavimaculata from the Leaf River (LR) and the lower Pascagoula River (PR).
FIG. 3. Cumulative rainfall for coastal southeast Texas. Note that the 2011 field season experienced only 54.8 in Nest Attendance Patterns in the American Alligator (Alligator mississippiensis)
FIG. 3. Cumulative rainfall for coastal southeast Texas. Note that the 2011 field season experienced only 54.8% of the normal rainfall through the first nine months of the year, while the 2012 season has much higher rainfall (71% above normal). This time frame covers the entire breeding, nesting, and incubation periods for alligators, and nest attendance patterns were not different between years despite drastic difference in climatic conditions.
FIG. 3 in Plasma Vitellogenin and Testosterone in Diamond-backed Terrapins (Malaclemys terrapin) during the Nesting Season in Coastal New Jersey
FIG. 3. Plasma testosterone (A) and vitellogenin (B) concentrations in relation to midline plastron length in Diamond-backed Terrapins captured during early (June; green triangles), middle (early July; blue squares), and late (late July–early August; red circles) nesting season at the Cape May Peninsula, New Jersey and the Hackensack Meadowlands, New Jersey.
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.