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.
8,782
datasets available to search
ShareScore release 0.9.0
Dataset results
8,782 results for “Natural History”
Fig. 5. Biguembia flavibrunnea n in Revisiting Biguembia Szumik, 1997 (Embioptera: Archembiidae): New species, phylogeny and natural history
Fig. 5. Biguembia flavibrunnea n. sp. (immature stages, A–G). A- egg mass; B- egg; C- first instar (dorsal view); D- second instar (dorsal view); E third instar (dorsal view), female and male; F- fourth instar (dorsal view), female and male; G-fifth instar (dorsal view), female and male.
Fig. 8. Biguembia pulchra n in Revisiting Biguembia Szumik, 1997 (Embioptera: Archembiidae): New species, phylogeny and natural history
Fig. 8. Biguembia pulchra n. sp. (paratype female, A–G). A- habitus (dorsal view); B- habitus (ventral view); C- head (dorsal view); D- head (ventral view); Esternites 8–9 (ventral view); F- terminalia (dorsal view); G- terminalia (ventral view).
Fig. 1 in Revisiting Biguembia Szumik, 1997 (Embioptera: Archembiidae): New species, phylogeny and natural history
Fig. 1. Optimal tree obtained using implied weighting under four different concavity values (8–12). First value is the combined Bremer support and second value is the symmetric resampling. Values between brackets reports negative values for the groups of reference tree that are absent from the trees obtained from symmetric resampling.
Fig. 2. Biguembia flavibrunnea n in Revisiting Biguembia Szumik, 1997 (Embioptera: Archembiidae): New species, phylogeny and natural history
Fig. 2. Biguembia flavibrunnea n. sp. (holotype male, A–I). A- habitus (dorsal view); B- habitus (ventral view); C- head (dorsal view); D- head (ventral view); E forewing (dorsal view); F- hind wing (dorsal view); G- hind basitarsus with medial bladder (ventral view); H- terminalia (dorsal view); I- terminalia (ventral view).
Fig. 4. Biguembia flavibrunnea n in Revisiting Biguembia Szumik, 1997 (Embioptera: Archembiidae): New species, phylogeny and natural history
Fig. 4. Biguembia flavibrunnea n. sp. (paratype female, A–G). A- habitus (dorsal view); B- habitus (ventral view); C- head (dorsal view); D- head (ventral view); E sternites 8–9 (ventral view); F- terminalia (dorsal view); G- terminalia (ventral view).
Fig. 3. Biguembia flavibrunnea n in Revisiting Biguembia Szumik, 1997 (Embioptera: Archembiidae): New species, phylogeny and natural history
Fig. 3. Biguembia flavibrunnea n. sp. (holotype male, A–E). A- head (dorsal view); B- mentum and submentum (ventral view); C- 10Lp1 (dorsal view); Dterminalia (dorsal view); E- terminalia (ventral view).
Fig. 6. Biguembia pulchra n in Revisiting Biguembia Szumik, 1997 (Embioptera: Archembiidae): New species, phylogeny and natural history
Fig. 6. Biguembia pulchra n. sp. (holotype male, A–I). A- habitus (dorsal view); B- habitus (ventral view); C- head (dorsal view); D- head (dorsal view); E forewing (dorsal view); F- hind wing (dorsal view); G- hind basitarsus with medial bladder (ventral view); H- terminalia (dorsal view); I- terminalia (ventral view).
Data from: Catastrophic storms, forest disturbance, and the natural history of Swainson's warbler
<p>The core breeding range of Swainson's warbler (<em>Limnothlypis swainsonii</em>) overlaps a zone of exceptionally high tornado frequency in southeastern North America. The importance of tornadoes in creating breeding habitat for this globally rare warbler and other disturbance-dependent species has been largely overlooked. This paper estimates tornado frequency (1950–2021) and forest disturbance in the 240 counties and parishes in which breeding was documented from 1988 to 2014. The frequency of destructive tornadoes (EF1-EF5) varied 6-fold across the breeding range with a peak in the Gulf Coast states. Counties from east Texas to Alabama experienced the lowest median return interval of 5.4 years per 1000 km<sup>2</sup>, resulting in approximately 2477 ha of forest damage per 1000 km<sup>2</sup> per century, based on current forestland cover. Tornadoes were significantly less frequent north and east of the core breeding range, with return intervals increasing to 9.1 years per 1000 km<sup>2</sup> for breeding counties on the Atlantic coastal plain, 10.2 years per 1000 km<sup>2</sup> in the Ozark Mountains, and 32.3 years per 1000 km<sup>2</sup> in the Appalachian Mountains. Breeding counties within 150 km of the coastline from east Texas to North Carolina are also subjected to the highest frequency of hurricanes in the Western Hemisphere. Hurricanes often cause massive forest damage but archived meteorological and forestry data are insufficient to estimate the aggregate extent of forest disturbance in breeding counties. Nevertheless, the combined impact of tornadoes and hurricanes in the pre-Anthropogenic era was likely sufficient to produce a dynamic mosaic of early-successional forest crucial for the breeding ecology of Swainson's warbler. To ensure the long-term survival of this rare warbler, it is advisable to develop habitat management plans that incorporate remote sensing data on early-successional forest generated by catastrophic storms as well as anthropogenic activities.</p> <p>This dataset comprises a catalog of 1717 song recordings of male Swainson's warblers (<em>Limnothlypis swainsonii</em>) on breeding territories in the southeastern United States. Songs were recorded from 1988 to 2014. The spreadsheet includes song recording field number (GRG), state, county or parish, date, latitude, and longitude. Breeding territories were located in 240 counties and parishes, which served as the geographic template for storm data analysis. Geographic coordinates were plotted in Fig 1 of "Catastrophic storms, forest disturbance, and the natural history of Swainson's warbler" (doi.org/10.1002/ece3.11099). Questions or inquiries regarding the dataset can be directed to the author. </p>
FIGURE 16. A in Description of new species of Pseudogaurax Malloch (Diptera: Chloropidae) from Brazil, with notes on natural history
FIGURE 16. A. Web of Cyclosa sp., black arrow showing Pseudogaurax cyclosa sp. nov. puparium and gray arrow showing the camouflaged Cyclosa spider. B. Adult female spider Cryptachaea migrans (Keyserling) with egg sac. C. Cocoon with many pupae of Hylesia Hübner moth on the wall of an abandoned building. D. Larval case of Cicinnus sp. (Mimallonidae) containing a dead pupa infected with an entomophagous fungi.
FIGURE 15. Pseudogaurax unilineatus Hall, puparium. A. Dorsal view. B. Posterior half, dorsal view. C. Posterior spiracle, dorsal view. D in Description of new species of Pseudogaurax Malloch (Diptera: Chloropidae) from Brazil, with notes on natural history
FIGURE 15. Pseudogaurax unilineatus Hall, puparium. A. Dorsal view. B. Posterior half, dorsal view. C. Posterior spiracle, dorsal view. D. Detail of tegument, dorsal view. Scale bars: A = 500 µm; B, D = 100 µm; C = 50 µm.
FIGURE 14. Pseudogaurax species. A in Description of new species of Pseudogaurax Malloch (Diptera: Chloropidae) from Brazil, with notes on natural history
FIGURE 14. Pseudogaurax species. A. Pseudogaurax flaviscutellatus Marques, Riccardi & Ale-Rocha, 2022, head, lateral view. B–F. Thorax, dorsal view. B. Pseudogaurax alvinae sp. nov. C. Pseudogaurax amazonica sp. nov. D. Pseudogaurax cyclosa sp. nov. and Pseudogaurax braoculatus sp. nov. E. Pseudogaurax primavera sp. nov. F. Pseudogaurax wheeleri sp. nov.
FIGURE 13 in Description of new species of Pseudogaurax Malloch (Diptera: Chloropidae) from Brazil, with notes on natural history
FIGURE 13. Pseudogaurax wheeleri sp. nov., holotype male terminalia. A. Posterodorsal view. B. Lateral view. C. Ventral view. Scale bars: 100 µm.
FIGURE 12 in Description of new species of Pseudogaurax Malloch (Diptera: Chloropidae) from Brazil, with notes on natural history
FIGURE 12. Pseudogaurax wheeleri sp. nov., holotype male. A. Habitus, dorsal view. B. Habitus, lateral view. C. Abdomen, dorsal view. D. Head, frontal view. E. Hind tibia, posterior view. Scale bars: 0.5 mm.
FIGURE 11 in Description of new species of Pseudogaurax Malloch (Diptera: Chloropidae) from Brazil, with notes on natural history
FIGURE 11. Pseudogaurax primavera sp. nov. A–C. Holotype male terminalia. A. Posterodorsal view. B. Lateral view. C. Ventral view. D–E. Paratype female terminalia, terminal portion. D. Dorsal view. E. Ventral view. Abbreviations: cer = cercus; ep = epandrium; epi = epiproct; hyp = hypandrium; hypo = hypoproct; phal = phallus; phap = phallapodeme; pgt = postgonite; S = sternite; sur = surstylus; T = tergite. Scale bars: 100 µm.
FIGURE 9 in Description of new species of Pseudogaurax Malloch (Diptera: Chloropidae) from Brazil, with notes on natural history
FIGURE 9. Pseudogaurax cyclosa sp. nov., puparium. A. Posterior half, dorsal view. B. Posterior spiracle, dorsal view. C. Detail of tegument, dorsal view. D. Creeping area, ventral view. E. Posterior half, ventral view. F. Posterior spiracle, ventral view. Scale bars: 100 µm.
FIGURE 10 in Description of new species of Pseudogaurax Malloch (Diptera: Chloropidae) from Brazil, with notes on natural history
FIGURE 10. Pseudogaurax primavera sp. nov., holotype male. A. Habitus, dorsal view. B. Habitus, lateral view. C. Head, frontal view. D. Abdomen, dorsal view. E. Hind tibia, posterior view. Scale bars: 0.5 mm.
FIGURE 7 in Description of new species of Pseudogaurax Malloch (Diptera: Chloropidae) from Brazil, with notes on natural history
FIGURE 7. Pseudogaurax cyclosa sp. nov., holotype male. A. Head and thorax, dorsal view. B. Habitus, lateral view. C. Head, frontal view. D. Abdomen, dorsal view. E. Hind tibia, posterior view. Scale bars: 0.5 mm.
FIGURE 8 in Description of new species of Pseudogaurax Malloch (Diptera: Chloropidae) from Brazil, with notes on natural history
FIGURE 8. Pseudogaurax cyclosa sp. nov., holotype male terminalia. A. Posterodorsal view. B. Lateral view. C. Ventral view. Abbreviations: cer = cercus; ep = epandrium; hyp = hypandrium; phal = phallus; phap = phallapodeme; pgt = postgonite; sur = surstylus. Scale bars: 250 µm.
FIGURE 6 in Description of new species of Pseudogaurax Malloch (Diptera: Chloropidae) from Brazil, with notes on natural history
FIGURE 6. Pseudogaurax braoculatus sp. nov., holotype male terminalia. A. Posterodorsal view. B. Lateral view. C. Ventral view. Abbreviations: cer = cercus; ep = epandrium; hyp = hypandrium; phal = phallus; phap = phallapodeme; pgt = postgonite; sur = surstylus. Scale bars: 100 µm.
FIGURE 5 in Description of new species of Pseudogaurax Malloch (Diptera: Chloropidae) from Brazil, with notes on natural history
FIGURE 5. Pseudogaurax braoculatus sp. nov., holotype male. A. Habitus, dorsal view. B. Habitus, lateral view. C. Head, frontal view. D. Abdomen, dorsal view. E. Hind tibia, posterior view. Scale bars: 0.5 mm.
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.